Monday, August 10, 2026

HAL To Build 12 New Su-30MKIs At Nashik Plant By 2029


Hindustan Aeronautics Limited has revived production of the Su‑30MKI fighter jet at its Nashik facility, marking a significant development in India’s combat aviation sector. Twelve new aircraft are planned for delivery by 2029, with the first expected to roll out between 2027 and 2028.

According to a report in The Economic Times, the Nashik facility, which has long been associated with the licensed production of Russian‑origin fighters, has already manufactured 222 Su‑30MKIs for the Indian Air Force.

In December 2024, a contract worth ₹11,000 crore was signed for twelve additional jets to replace aircraft lost in accidents. These new fighters will incorporate more than fifty percent indigenous content, reflecting India’s push for greater self‑reliance in defence manufacturing.

The revival of production is accompanied by plans for a comprehensive upgrade of the existing Su‑30MKI fleet. This upgrade, estimated at ₹60,000 crore, is expected to be executed with support from the Defence Research and Development Organisation and contributions from private industry.

The scale of investment underscores the importance of the Su‑30MKI as the backbone of India’s air combat capability.

The modernisation project is likely to be carried out in two phases. The first phase will introduce new avionics and radars, addressing long‑standing concerns about detection ranges in older aircraft. A new indigenous radar is expected to significantly enhance the ability to detect and engage targets at extended distances.

The first phase will also include the installation of a new electronic warfare system, designed to jam incoming threats and improve survivability in contested environments.

The second phase will focus on flight control systems, ensuring that the aircraft remain agile and responsive in modern combat scenarios. Alongside these upgrades, the jets are set to receive new infrared search‑and‑track systems, which will improve their ability to detect and engage targets without relying solely on radar. This capability is particularly valuable in stealth‑dominated battlefields, where passive detection methods can provide a tactical edge.

The combination of new production and extensive upgrades represents a dual strategy. On one hand, the Indian Air Force will replenish its fleet with twelve new aircraft built with a high level of indigenous content.

On the other, the existing fleet will be modernised to “Super Sukhoi” standards, ensuring relevance against advanced regional threats.

This revival also highlights HAL’s evolving role. The Nashik facility, while continuing to produce Russian‑origin fighters, is simultaneously engaged in manufacturing indigenous light combat aircraft. 

This dual capability reflects India’s broader defence industrial trajectory, balancing licensed production with indigenous innovation.

The Su‑30MKI upgrade program is expected to align the aircraft with modern network‑centric warfare requirements. Enhanced detection, electronic warfare resilience, and advanced flight control systems will ensure that the aircraft remain effective well into the next decade.

Agencies


India Accelerates Naval Expansion With 200 Indigenous Warships And Future Technologies


India is accelerating its naval expansion with the ambitious goal of operating nearly 200 warships by 2035, a move driven by China’s growing Indo-Pacific presence and Pakistan’s modernising fleet.

The expansion is anchored in indigenous shipbuilding under the Aatmanirbhar Bharat initiative and enhanced by future technologies such as AI, unmanned systems, and network-centric warfare.

The Indian Navy is undergoing one of the largest fleet expansions in its history. Its long-term vision is to operate close to 200 warships and submarines, a significant increase from the current strength of around 150 vessels. This expansion is not only numerical but qualitative, focusing on stealth, firepower, and multi-domain readiness.

China’s naval dominance, with more than 370 warships including carriers and advanced submarines, has intensified India’s urgency. Pakistan’s acquisition of eight Hangor-class submarines from China, equipped with air-independent propulsion for extended underwater endurance, further complicates India’s maritime security environment. These developments have compelled India to accelerate shipbuilding and commissioning cycles.

Recent inductions such as the Project 17A stealth frigates INS Mahendragiri and INS Dunagiri, along with shallow-water anti-submarine warfare crafts like INS Malvan and INS Anjadip, highlight India’s focus on both blue-water and coastal defence.

The Navy is commissioning a new warship or submarine every six weeks, with 15 vessels planned for induction in 2026 alone. This pace is unprecedented in Indian naval history.

Indigenous shipbuilding lies at the heart of this expansion. The Indian Naval Indigenisation Plan, launched in 2015, is structured around three pillars: float, move, and fight.

Over 90 per cent of hull systems and 60 per cent of propulsion systems are already indigenised, while combat systems are steadily progressing toward self-reliance. Collaboration with DRDO, IITs, private industry, and shipyards such as Mazagon Dock, Garden Reach, and Cochin Shipyard has created a robust ecosystem for naval production.

India’s submarine fleet is also being modernised under Project 75I and Project 77, which aim to deliver advanced conventional and nuclear-powered submarines.

These will complement surface combatants and aircraft carriers, ensuring persistent sea control and deterrence across the Indian Ocean. Maritime aviation, unmanned systems, and forward bases in the Andaman and Nicobar Islands and Lakshadweep are being integrated into this network-centric force structure.

Future technologies will play a decisive role. Artificial intelligence is being incorporated into combat management systems, enhancing threat detection and decision-making. Unmanned surface and underwater vehicles are being developed to extend surveillance and strike capabilities.

Network-centric warfare will allow distributed fleets to operate cohesively, maximising India’s geographic advantage in monitoring chokepoints and safeguarding Sea Lines of Communication.

India’s naval expansion also has a humanitarian dimension. As a regional first responder, the Navy has escorted hundreds of merchant vessels through high-risk zones such as the Red Sea and continues anti-piracy patrols in the Indian Ocean. A larger fleet will strengthen India’s ability to project stability and provide disaster relief across the region.

Challenges remain, including reliance on imported specialised steel, fragmented supply chains, and technological gaps in sensors and propulsion. However, targeted investments, international collaboration, and a clear roadmap toward full self-reliance by 2047 are addressing these obstacles.

This expansion is not about matching China ship-for-ship but about building sufficient, networked combat power to secure India’s maritime interests. By 2035, India aims to field a balanced fleet of over 200 warships and submarines, capable of safeguarding trade routes, deterring adversaries, and asserting its role as a leading maritime power in the Indo-Pacific.

Agencies


A New Era In Defence Strategy: Why Is India Should Bet Big On Laser Weapons?

L&T TEJASTRA Directed Energy Weapon

Modern warfare is evolving rapidly, and India is now preparing to embrace one of the most transformative technologies in defence: laser weapons. Facing increasing drone threats and the need for precision air defence, India is formally committing to directed-energy systems as part of its long-term military strategy. This marks a decisive shift in how such weapons will be deployed in combat.

The Laser Weapon System (LaWS) was first tested aboard the USS Ponce amphibious transport dock during an operational demonstration in the Gulf in November 2014. That test proved the viability of high-energy lasers in disabling drones and small boats. India, learning from these demonstrations, is now accelerating its own efforts to integrate similar systems into its armed forces.

The Indian Army has formally committed to its Enduring High Energy Laser (EHEL) program, which represents a significant step forward in the deployment of laser weapons.

This program is designed to provide scalable, mobile, and battlefield-ready directed-energy systems capable of neutralising drones, rockets, and potentially even cruise missiles. The commitment signals India’s recognition that conventional missile-based air defence alone may not be sufficient against swarming drone attacks and hypersonic threats.

India’s decision to bet big on laser weapons is therefore not just about technological ambition but about strategic necessity. Directed-energy systems offer several advantages: they provide near-instantaneous engagement, virtually unlimited ammunition as long as power is available, and reduced logistical burdens compared to conventional missiles. They also promise cost-effective defence against low-cost threats like drones, which can overwhelm traditional systems.

The Pentagon’s move to make directed-energy weapons a permanent part of the US arsenal has set a precedent, and India is now following suit. By investing in indigenous laser weapon programs, India aims to strengthen its air defence, protect its naval assets, and prepare for future conflicts where speed, precision, and adaptability will be decisive.

India’s Directed Energy Weapons Program: Capabilities, Milestones, And Roadmap

India’s embrace of directed-energy technology is a clear signal that the future battlefield will be shaped by lasers. Would you like me to expand further on India’s own indigenous projects such as DURGA-II, Surya Laser, or the Sahastra Shakti initiative, to show how they align with this global trend.

Strategic Roadmap

India’s directed energy weapons program is advancing through a structured roadmap led by DRDO and industry partners such as Larsen & Toubro. The TEJASTRA initiative outlines phased development, beginning with 10–20 kW class lasers for tactical counter-drone roles, scaling up to 50–100 kW systems for cruise missile defence, and eventually surpassing 100 kW for strategic applications. These systems are designed to integrate into layered air defence networks, offering speed-of-light engagements and reduced reliance on conventional interceptors.

Microwave And Laser Prototypes

DRDO’s Microwave Directed Energy Weapon, developed at MTRDC, has already demonstrated effectiveness against drone swarms at ranges of 1 km, with plans to extend to 5 km. Operating in the S-band frequency with peak power output of 450 MW, prototypes have successfully neutralised quadcopters like DJI Phantom drones. Demonstrations at the EWCI 2026 conference in Bengaluru showcased India’s growing capability, with trials underway in diverse terrains such as deserts and valleys to validate operational performance.

Strategic Importance And Challenges

India’s DEW program is vital for countering asymmetric threats, particularly drone swarms and cruise missiles. It aligns with the Atmanirbhar Bharat vision, reducing dependence on foreign suppliers while positioning India alongside global leaders like the US, China, and Israel. However, challenges remain in power generation, thermal management, and atmospheric effects, requiring innovations in beam control and adaptive optics. By 2028, India aims to field tactical DEWs, with strategic-class systems envisioned for the 2030s, marking a decisive step in strengthening national defence.

IDN (With Agency Inputs)


Aerostem Technology Successfully Tests Indigenous Swarm Drone System


Aerostem Technology has successfully conducted trials of its indigenous swarm drone system, marking a significant step in India’s unmanned aerial warfare capabilities.

The tests validated autonomous coordination, resilience under jamming, and precision strike potential, positioning Aerostem among the few firms globally to demonstrate operational swarm intelligence.

Aerostem Technology announced the completion of successful swarm drone trials, showcasing a coordinated deployment of multiple autonomous aerial vehicles functioning as a single integrated system. The demonstration involved dozens of drones flying in formation, executing surveillance and simulated strike missions across a designated test area.

The swarm was designed to operate under a decentralised architecture, ensuring that even if individual drones lost connectivity or suffered technical failures, the mission continued seamlessly.

This resilience was achieved through distributed intelligence algorithms that allowed drones to communicate with each other in real time, maintaining formation and task execution without constant human intervention.

The trials highlighted the system’s ability to withstand electronic warfare conditions. Aerostem’s swarm drones were tested against simulated jamming environments, where conventional systems often fail. The drones maintained communication links through adaptive frequency hopping and encrypted mesh networking, ensuring uninterrupted mission continuity.

Each drone was equipped with payload flexibility, ranging from surveillance sensors to small-scale munitions. The system demonstrated rapid reconfiguration, allowing drones to switch roles mid-mission, such as shifting from reconnaissance to strike operations. This adaptability is critical for modern battlefields where threats evolve dynamically.

The swarm was controlled by a single operator, reducing manpower requirements and compressing decision cycles. Commands issued from the ground station were translated into coordinated manoeuvres by the swarm, which autonomously divided into sub-groups to engage multiple targets simultaneously. 

This capability mirrors global advances in swarm warfare, where saturation attacks overwhelm defences by striking from multiple axes.

Aerostem emphasised the indigenous nature of the technology, with over 70 per cent of components sourced domestically. The system integrates India’s Navigation with Indian Constellation (NAVIC) for precise positioning, alongside locally developed autopilot stacks and sensors such as Inertial Measurement Units and LiDAR. This aligns with India’s broader defence modernisation program, which prioritises self-reliance in critical technologies.

The drones demonstrated endurance of over thirty minutes per sortie, with rapid recharge cycles enabling sustained operations. The system was also tested for maritime applications, where drones launched from moving platforms successfully returned to dynamic launch points, a capability essential for naval deployments.

Aerostem’s achievement comes amid India’s heightened focus on unmanned systems following recent conflicts where adversaries deployed massed drones.

The Defence Research and Development Organisation (DRDO) has already initiated parallel projects under its Technology Development Fund, and Aerostem’s success strengthens the ecosystem of private firms contributing to national defence.

Industry experts noted that the trials place Aerostem in a competitive position alongside global leaders such as STM of Turkey and Chinese defence firms, which have demonstrated similar swarm capabilities.

The Indian system’s emphasis on electronic warfare resilience and indigenous sourcing adds strategic depth to its operational value.

The company confirmed that further trials will focus on expanding swarm size, integrating loitering munitions, and enhancing artificial intelligence for autonomous target classification. Operational deployment is expected within two years, subject to military evaluation and acceptance.

Agencies


Arunachal Pradesh CM Denies Chinese Encroachment, Affirms Army Safeguarding Territory


Arunachal Pradesh Chief Minister Pema Khandu has categorically rejected reports of Chinese encroachment, affirming that the Indian Army is effectively patrolling and safeguarding the state’s territory.

His statement comes amid heightened speculation and China’s repeated attempts to rename places in Arunachal Pradesh, which India has strongly dismissed as baseless.

The Chief Minister stated that there are no signs of encroachment in Arunachal Pradesh. He emphasised that the Indian Army remains fully deployed along the Line of Actual Control and continues to safeguard every inch of Indian territory. His remarks were intended to reassure the public and counter narratives suggesting otherwise.

The statement followed the Centre’s recent move to formally identify 27 locations in Arunachal Pradesh by their standard names on the official Survey of India map. This exercise was aimed at ensuring accurate recognition of these places and raising public awareness of their geographical and historical significance. It also directly counters China’s repeated attempts to assign fictitious names to Indian territory.

Among the newly identified locations are strategically significant sites such as Long Ju, which was one of the earliest flashpoints between India and China in 1959, three years before the 1962 war. Other key places include Maja village in Upper Subansiri district, Bisa village, and the mountain passes of Dzo La, Riza La and Pukur La. Thag La, the high-altitude pass where one of the opening battles of the 1962 war took place, has also been formally marked. Jairampur in Changlang district, an important logistics hub for security forces, was included as well.

Additional locations identified on the map include Sambho Sarovar, Bara Kundun, Chhota Kundun, Dhan Bari, Pritnagar, Teritnagar, Ramnagar, Jaswant Garh, Sagar, Padma, Jyotinagar, Baisakhi, Sher-e-Thapa Memorial, Chhota Ropuk, Bara Ropuk, Shivaji Nagar, Sunpura, Kamlang Nagar and Buddhamandir. These places hold both cultural and strategic importance, reinforcing India’s claim and presence in the region.

India has consistently rejected Beijing’s practice of renaming places in Arunachal Pradesh, describing such actions as vain and preposterous. New Delhi has maintained that these attempts cannot alter the undeniable reality that Arunachal Pradesh was, is, and will remain an integral part of India.

Officials have stressed that such moves by China are aimed at creating baseless narratives and cannot change ground realities.

The Chief Minister also highlighted that the Indian Army’s presence ensures that local communities remain secure. He noted that the government is attentive to concerns raised by tribal groups and local organisations, but reiterated that the Army’s vigilance leaves no room for encroachment. Reports of incursions circulating on social media were dismissed as rumours, with officials urging the public to rely on verified information.

This clarification comes at a time when India is strengthening its border infrastructure and communication networks in Arunachal Pradesh. The identification of locations on the official map is part of a broader program to assert sovereignty and enhance awareness among citizens. It also sends a clear message to Beijing that India will not tolerate attempts to undermine its territorial integrity.

The Indian Army has previously rebutted similar claims of encroachment, calling them incorrect and without basis. The latest statement by the Chief Minister reinforces the alignment between the state government and the armed forces in safeguarding national security.

Agencies


From Bhargavastra To Indrajaal: India’s Indigenous Counter-Drone Systems Strengthen Defence Against UAVs And Swarms

Indrajaal's Zombee interceptor drone intercepting drones with firepower

India has been steadily building a layered shield against the growing menace of hostile drones and swarms, Times of India reported.

As unmanned aerial systems reshape the nature of conflict, counter-drone technologies have become a critical part of modern defence planning.

These systems fall broadly into two categories: soft-kill and hard-kill. Each operates on distinct philosophies, yet both are essential to neutralising aerial threats.

Soft-kill systems focus on breaking the link between the drone and its operator. This is achieved through radio frequency jamming, GPS denial and spoofing, which can confuse or mislead the drone’s navigation system.

In some cases, electromagnetic pulses are used to disable drones, though this method is less common. The advantage of soft-kill lies in its ability to neutralise drones without physical destruction, often at lower cost and with reduced collateral risk.

Hard-kill systems, by contrast, rely on physical destruction. These include guns, missiles, interceptor drones and directed-energy weapons such as lasers. Hard-kill ensures complete elimination of the threat, but often at higher expense and with greater logistical complexity.

Both approaches are being pursued in parallel by India’s defence industry and the Defence Research and Development Organisation (DRDO).

India’s counter-drone capability has expanded rapidly in recent years. Indigenous systems such as Bhargavastra, Indrajaal, BEL’s D4 anti-drone system, UAV-launched precision-guided missiles and interceptor drones have been developed domestically.

These combine rockets, micro-missiles, lasers, jammers and AI-driven detection systems to provide layered defence across varied terrain and operational environments.

Bhargavastra, developed by Solar Defence and Aerospace, is a vehicle-mounted counter-swarm solution. It employs precision micro-missiles to engage drones, supported by radar, electro-optical sensors and radio frequency detectors.

This layered architecture allows it to tackle both individual UAVs and swarms, even in high-altitude regions. The system has already been demonstrated to the Indian Army, showcasing its operational readiness.

Indrajaal represents another indigenous innovation. It integrates radar, RF detection and AI analytics to deliver both soft-kill and hard-kill capabilities. Its unique feature is the Zombee interceptor drone, a quadcopter designed to physically collide with hostile drones. This racer-drone approach provides a cost-effective and agile hard-kill option, complementing traditional jamming measures.

The D4 anti-drone system, developed by DRDO and manufactured by Bharat Electronics Limited (BEL), offers both portable and vehicle-mounted configurations. It combines radar detection with RF jamming, satellite navigation denial and laser-based neutralisation. The system has already been operationally deployed, giving India a proven platform for frontline counter-drone operations.

DRDO has also advanced the UAV-Launched Precision Guided Munition (ULPGM), including the ULPGM-V3 missile. This compact weapon is capable of engaging both ground and aerial targets, including drones.

Designed with anti-jamming features and supported by an indigenous supply chain, the ULPGM is being developed in partnership with Adani Defence and Bharat Dynamics Limited. It represents a precision hard-kill option for aerial threats.

Together, these systems form the building blocks of a comprehensive counter-drone shield. Bhargavastra provides cost-effective hard-kill through micro-missiles. Indrajaal delivers AI-driven area defence with both jamming and interceptor drones.

BEL’s D4 adds portable directed-energy and electronic warfare capabilities. The ULPGM extends precision engagement against aerial threats. Collectively, they demonstrate India’s ability to keep pace with global advances in counter-drone warfare.

India’s progress mirrors developments in the West, where similar systems are being fielded to address the growing threat of UAVs and swarms. The integration of AI, directed-energy weapons and precision-guided munitions highlights the convergence of technology across nations.

For India, these indigenous systems also reflect a broader push for self-reliance in defence programs, ensuring reduced dependence on imports and greater control over critical technologies.

Agencies


Agni-4 Bridges Gap Between Mid-Range And Intercontinental Missiles, Strengthens India’s Strategic Deterrence Against China


India has successfully conducted a user trial of the nuclear-capable Agni-4 medium-range ballistic missile from Chandipur off the Odisha coast last Thursday (6-Aug-2026), Times of India reported.

The trial was carried out by the Strategic Forces Command and is considered a significant step in strengthening India’s nuclear deterrence posture under its declared no-first-use nuclear doctrine. The missile bridges a crucial gap between mid-range and intercontinental variants, thereby enhancing India’s strategic reach.

Agni-4 has a strike range of 4,000 kilometres, positioning it between the 2,000-km Agni-II/Agni-Prime and the 5,000+ km Agni-V. This makes it capable of covering regional strategic targets with ease. 

Developed by the Defence Research and Development Organisation, the missile can carry both nuclear and conventional payloads and is a vital component of India’s nuclear triad.

The missile provides India with credible deterrence as it can reach deep into major strategic centres across nearly all of mainland China. Its range also extends to parts of Southeast Asia, West Asia and Central Asia.

On the successful test, Defence Minister Rajnath Singh congratulated the Strategic Forces Command and DRDO, describing the launch as a textbook mission that reaffirmed India’s commitment to defending the nation with advanced technologies.

Agni-4 is powered by a two-stage solid-propellant system and has the capacity to carry a payload of 1,000 kilograms. It is launched from a mobile tandem launcher, which allows rapid deployment and ensures survivability against pre-emptive strikes. This mobility is a key feature of India’s missile program, enhancing operational flexibility and resilience.

One of the unique aspects of Agni-4 is its advanced re-entry heat shield. This shield is engineered to withstand extreme exterior skin temperatures exceeding 3,000°C, while ensuring that internal electronic systems and avionics remain fully functional at temperatures below 50°C. This capability is critical for maintaining missile integrity during re-entry into the atmosphere.

The missile employs an advanced guidance system and moving nozzles to maintain its trajectory and achieve high accuracy. It is accurate to less than 100 metres circular error probable over its 4,000-km flight path. Such precision minimises deviation and ensures pin-point targeting capability, even across extreme long-range distances.

Agni-4 uses an inertial guidance system with ring laser gyroscopes and flexseal thrust vectoring systems. These technologies enable precise orientation control during flight and guarantee high-accuracy targeting.

The defence ministry has emphasised that the missile system is equipped with modern and compact avionics with redundancy, ensuring a high level of reliability.

The successful trial of Agni-4 reinforces India’s layered missile development trajectory and strengthens its strategic defence program. It underscores India’s commitment to maintaining credible minimum deterrence while advancing indigenous missile technology to meet evolving security challenges.

Agencies


Gridbots Raptor Multispectral Imager Delivers Indigenous Harmonised Day, Night, Thermal And Laser Surveillance Capabilities


Gridbots has unveiled the Raptor, an advanced indigenous multispectral optronic imager that integrates visible, near‑infrared, thermal, and laser sensing into a single harmonised payload. It is designed for surveillance, reconnaissance, and precision targeting, offering India a domestically developed alternative to imported electro‑optical systems.

The Raptor multispectral imager from Gridbots is a harmonised sensor suite that combines day, night, thermal and laser channels into a single optical head.

It observes the same scene simultaneously in visible, near‑infrared and thermal bands, while also measuring distances with an eye‑safe 1550 nm laser. The system offers either a 2 MP or 4 MP day channel with continuous optical zoom ranging from 40X to 120X, alongside LWIR or cooled MWIR thermal channels at 640×480 or 1024×768 resolution. A selectable near‑infrared illuminator further enhances low‑light performance, making the payload versatile across varied operational environments.

Every channel is boresight harmonised to within 0.15 milliradians, with inbuilt temperature sensors driving a thermal‑drift compensation model to maintain accuracy across the full operating range.

This ensures that when a target is placed in the crosshair of the day image, the thermal channel, laser range finder and illuminator are already aligned. The system stamps range, bearing and elevation data from its onboard GPS, magnetic compass and IMU onto every frame, converting detections into geo‑referenced coordinates rather than simple pictures.

An onboard GPU powers advanced video analytics and enhancement features. These include detection, classification and multi‑object tracking, as well as haze penetration, local contrast enhancement, digital stabilisation and edge highlighting that outlines low‑contrast targets in thermal imagery.

The Raptor runs from a single 24 V DC supply, drawing between 10 W and 50 W depending on model and mode. It can be mounted on stabilised gimbals, masts, tripods, vehicle roofs or naval pedestals, offering wide deployment flexibility across land, sea and air platforms.

In addition to these core features, the Raptor family offers multiple variants tailored to mission requirements. The compact R1 model integrates an uncooled LWIR detector with 640×480 resolution, a 2 MP day channel, 40X zoom and a 5 km laser range finder. The R2 extended model upgrades to 1024×768 LWIR, a 4 MP day channel, 60X zoom and a 10 km laser.

The R5 cooled MWIR variant provides 640×480 resolution, 90X zoom and a 15 km laser, while the R8 long‑range cooled MWIR system delivers 1024×768 resolution, 120X zoom and a 20 km laser range finder. Each variant balances resolution, range and power consumption to suit specific operational demands.

The specifications highlight its adaptability to Indian defence and security needs. With harmonised multispectral channels, geo‑referenced intelligence output, and AI‑driven analytics, the Raptor is positioned as a force multiplier for surveillance, reconnaissance and targeting.

Its indigenous development aligns with India’s Atmanirbhar Bharat program, reducing reliance on imported electro‑optical payloads and ensuring cost‑effective scalability. The system’s rugged design and versatile mounting options make it equally suitable for border monitoring, coastal surveillance, disaster response and critical infrastructure protection, reinforcing India’s growing expertise in advanced optronic technologies.

Agencies


India Opens Kulasekarapattinam Spaceport To Private Operators


India’s decision to open the new small satellite launch complex at Kulasekarapattinam, Tamil Nadu, to private operators is a landmark in its space sector liberalisation.

The facility, developed by ISRO, is tailored for the SSLV and other small launch vehicles, which are increasingly vital for deploying compact constellations and responsive missions.

By inviting expressions of interest, IN‑SPACe is signalling that private firms will not only build satellites but also gain direct access to launch infrastructure — a domain traditionally reserved for government agencies.

Kulasekarapattinam’s coastal location offers a strategic advantage: launches can proceed southward over the ocean, avoiding populated areas and enabling efficient access to polar and sun‑synchronous orbits.

This is particularly valuable for Earth observation and remote sensing missions, where small satellites dominate. The complex is expected to reduce turnaround times, lower costs, and provide dedicated slots for commercial operators, complementing ISRO’s existing facilities at Sriharikota.

This move builds on India’s broader reforms since 2020, which have steadily expanded private participation in satellite manufacturing, ground stations, and now launch services.

It reflects a deliberate effort to create a full-spectrum ecosystem where industry can operate alongside ISRO, accelerating innovation and expanding India’s share of the global space economy. For start‑ups and established firms alike, managing a spaceport represents both a technical challenge and a commercial opportunity — positioning India as a competitive hub for small satellite launches in Asia.

Agencies


NIOT-MOES Demonstrates India’s First Indigenous Wave Propulsion-Based Vertical Profiling System


India has achieved another milestone in indigenous ocean observation technology with the successful demonstration of its first wave propulsion-based vertical profiling system.

The National Institute of Ocean Technology, operating under the Ministry of Earth Sciences, has validated the system during sea trials off the coast of Chennai. The platform, known by its trade name “Wire Walker,” represents a significant advancement in autonomous marine technology.

The trials confirmed the system’s ability to profile the upper 200 metres of the water column while operating in free-drift mode. These operations were conducted over ocean depths ranging from 500 metres to 3000 metres, showcasing the versatility of the indigenous design.

From deployment to retrieval, the system consistently performed as intended, successfully collecting more than 110 vertical profiles of the 200 metre water column.

The demonstration highlighted the excellent performance, reliability, and robustness of the system. This achievement marks a major step forward in India’s capacity to develop and deploy indigenous ocean observation systems, reducing reliance on imported technologies and strengthening national capabilities in marine science and defence-related applications.

Following the successful trials, Professor Balaji Ramakrishnan, Director of NIOT, and Dr Vijaya Ravichandran, Deputy Director of NIOT, conducted a detailed review of the system’s design, performance, and trial parameters. Both officials expressed their appreciation for the achievement and congratulated the project team for their dedication and innovation.

The project was led by Mr S. Muthukumaravel, Scientist-G and Project Director, whose leadership was instrumental in guiding the team through the development and demonstration phases. His efforts, combined with the commitment of the entire team, ensured the successful delivery of this pioneering indigenous technology.

The Wire Walker system is based on wave propulsion principles, which allow it to harness the energy of ocean waves for vertical profiling without reliance on external power sources.

This makes it highly efficient for long-duration deployments, particularly in deep-sea environments where conventional profiling systems face limitations. Such technology is critical for monitoring ocean parameters including temperature, salinity, and currents, which are essential for climate studies, weather prediction, and marine resource management.

Globally, wave-propelled profiling systems are recognised as cost-effective and sustainable solutions for oceanographic research. India’s successful demonstration places it among the select group of nations capable of developing and deploying such advanced systems indigenously. This achievement also aligns with the government’s broader vision of strengthening self-reliance in strategic technologies under the Atmanirbhar Bharat initiative.

The Wire Walker will contribute significantly to India’s ocean observation programs, supporting both scientific research and operational applications such as disaster preparedness, fisheries management, and maritime security. Its ability to operate autonomously over extended periods makes it a valuable asset for continuous monitoring of the Indian Ocean region, which plays a critical role in global climate systems.

The demonstration underscores India’s growing expertise in autonomous marine platforms and highlights the role of NIOT in advancing indigenous technologies for ocean science. With this success, India is poised to expand its capabilities in ocean observation, contributing to both national priorities and international collaborations in marine research.

Agencies


India Formally Identifies 27 Strategic Locations In Arunachal Pradesh To Counter Chinese Renaming Attempts


India has taken a decisive step to counter repeated Chinese attempts at renaming places in Arunachal Pradesh by formally identifying 27 locations with their standard names on the official Survey of India map.

The announcement was made on Friday, August 7, 2026, by the Union Home Ministry, which emphasised that the move was aimed at ensuring accurate recognition and raising public awareness about these areas.

Among the places formally marked is Long Ju, situated along the Line of Actual Control. This location holds historical significance as one of the earliest flashpoints between India and China in 1959, when Chinese forces entered the area. The inclusion of Long Ju underscores India’s determination to reaffirm sovereignty over sensitive border regions.

The village of Maja, located near Long Ju in Upper Subansiri district, has also been added to the official map. Other notable inclusions are Bisa village, a strategically important high-altitude mountain pass, and passes such as Dzo La, Riza La, and Pukur La. These areas are critical for both defence and connectivity in the frontier state.

One of the most strategically significant passes, Thag La, has also been formally identified. This pass was the site of one of the opening battles between Indian and Chinese forces during the 1962 war, making its recognition symbolically important.

Jairampur in Changlang district, a vital logistics hub known as the gateway to the eastern border region, has similarly been marked, highlighting its role in supporting security force movements towards eastern Arunachal and the Myanmar frontier.

The list further includes Sambho Sarovar, a high-altitude lake, along with Bara Kundun and Chhota Kundun in Eastern Arunachal Pradesh. Several villages such as Dhan Bari, Pritnagar, Teritnagar, Ramnagar, Sagar, Padma, Jyotinagar, and Baisakhi have also been identified. Jaswant Garh, which houses the memorial of Indian martyr Jaswant Singh Rawat on the Tawang Road, has been included, reflecting the importance of commemorating national heroes.

The Sher-e-Thapa Memorial, honouring Trilok Singh Thapa, a war hero of 1962, has been formally recognised. Other places such as Chhota Ropuk, Bara Ropuk, Shivaji Nagar, Sunpura, Kamlang Nagar near the Kamlang sanctuary, and Buddhamandir have also been listed, showcasing the diversity of cultural, strategic, and natural sites in the region.

India has consistently dismissed Chinese efforts to assign what it calls “fictitious names” to Indian territory. Officials have asserted that such attempts are aimed at creating baseless narratives, but they cannot alter the undeniable reality of India’s sovereignty.

The government has also warned that these actions could derail ongoing efforts to normalise bilateral ties between the two countries.

This formal identification of locations is not only a cartographic exercise but also a strategic assertion of India’s territorial integrity. By marking these places on the Survey of India map, New Delhi has reinforced its stance against external attempts to distort historical and geographical facts, while simultaneously strengthening public awareness and national resolve.

Agencies


Quadcopter Attack Injures Three In Waziristan District


A quadcopter attack in northwest Pakistan left at least three people injured on Saturday, underscoring the growing use of drones in militant operations in the region.

The incident took place in Ghwa Khwah area of Wana tehsil, located in Lower South Waziristan district of Khyber Pakhtunkhwa province. Police confirmed that the victims were swiftly transferred to the District Headquarters Hospital in Wana, where they received timely medical treatment.

The attack highlights the increasing reliance on unmanned aerial systems by militant groups operating in Waziristan. Quadcopter‑borne explosives have emerged as a new tactic, enabling attackers to bypass traditional security measures and strike with precision. This development adds a troubling dimension to Pakistan’s ongoing struggle against insurgency in its border districts.

Authorities have raised security alerts in the locality, as the incident forms part of a disturbing pattern of escalating militant activity in the Waziristan region. In recent months, both security forces and civilians have been repeatedly targeted, with roadside bombs, suicide attacks, and now drone strikes contributing to a climate of fear and instability. The porous frontier with Afghanistan and the rugged terrain of South Waziristan have long provided militants with safe havens, complicating counter‑insurgency operations.

The use of quadcopters in attacks is particularly alarming for security planners, as it demonstrates the militants’ adaptation to modern technology.

Unlike conventional improvised explosive devices, drones can be remotely piloted to strike specific targets, reducing the risk to the attackers themselves while maximising the psychological impact on local communities. Analysts warn that this trend could spread further if not countered effectively, posing new challenges for Pakistan’s security apparatus.

The Ghwa Khwah incident also underscores the vulnerability of civilian populations in conflict‑affected districts. While the three injured individuals received prompt medical care, the attack has heightened anxiety among residents already living under the shadow of violence.

The District Headquarters Hospital in Wana has often been the first point of response in such emergencies, but the frequency of attacks continues to strain local resources.

Pakistan’s military and police forces are expected to intensify surveillance and patrols in Lower South Waziristan following this latest strike. However, the persistence of militant violence suggests that the challenge remains deeply entrenched.

The adaptation of insurgent groups to new technologies such as quadcopters reflects their determination to sustain pressure on the state, even as security operations attempt to dismantle their networks.

PTI


India Reaffirms ASEAN Partnership With Act East Policy On 59th ASEAN Day


External Affairs Minister S Jaishankar extended warm greetings to ASEAN member states on the occasion of the 59th ASEAN Day, reaffirming India’s commitment to strengthening its partnership with the regional bloc.

He emphasised that the relationship continues to deepen across multiple domains, including connectivity, trade, digital linkages, resilient supply chains, defence, education, and cultural exchanges, all guided by India’s Act East Policy.

In his message on X, Jaishankar expressed confidence that India-ASEAN ties will continue to grow in both substance and ambition, contributing significantly to peace, stability, and prosperity across the wider Indo-Pacific region. His remarks followed the ASEAN Post-Ministerial Conference with India 2026, held in Manila in July, where both sides discussed ways to enhance cooperation across the Indo-Pacific.

Meanwhile, ASEAN Secretary General Kao Kim Hourn officiated the 59th ASEAN Day celebrations in Jakarta at the ASEAN Headquarters. He highlighted three milestones marking this year’s commemoration: Timor-Leste’s accession as ASEAN’s 11th Member State, the 50th anniversary of the Treaty of Amity and Cooperation in Southeast Asia, and the first year of implementation of ASEAN Vision 2045. The celebrations were held under the theme “Navigating Our Future, Together.”

The event featured pre-recorded remarks by Philippine President Ferdinand R Marcos Jr, while Indonesian Foreign Minister Sugiono delivered an ASEAN Day address. In New Delhi, the centuries-old Qutub Minar was illuminated in ASEAN’s colours, marking the first-ever projection of ASEAN’s cherished symbols onto a major national monument anywhere in the world.

The illumination was accompanied by the ASEAN anthem and attended by over 80 diplomats from ASEAN missions, alongside regular visitors to the UNESCO World Heritage site.

The Philippine Embassy in India, holding the rotating chairmanship of the ASEAN New Delhi Committee, conceptualised and organised the event. The Embassy noted that ASEAN, founded in 1967 by five nations, now brings together all 11 Southeast Asian countries, with a combined population exceeding 700 million and a GDP of over USD 4 trillion, ranking as the world’s fifth largest economy if taken as a unit.

Singapore’s High Commissioner to India, Simon Wong, also marked ASEAN Day by celebrating the illumination of the ASEAN flag on the Qutub Minar. Sharing images of the event, he underscored the close partnership between ASEAN member states and India, thanking the Philippines for its leadership in organising the commemoration.

India and ASEAN first established sectoral dialogue relations in 1992, which were elevated to a Comprehensive Strategic Partnership in 2022. Under this framework, cooperation spans trade and investment, tourism, connectivity, agriculture, energy, culture, technology, education, and people-to-people exchanges.

The 59th ASEAN Day celebrations thus symbolised not only ASEAN’s achievements but also the enduring and expanding partnership between India and the regional bloc.

ANI


US Redirects 53 Vessels, Deploys Stealth Fighters As Iran Blockade Intensifies


US Central Command has confirmed that American forces have redirected fifty‑three commercial vessels as part of the ongoing blockade against Iran.

Two ships have been disabled and two boarded during enforcement operations. More than thirty vessels were permitted safe passage for humanitarian aid deliveries, underscoring the dual nature of the blockade which combines strict interdiction with limited humanitarian allowances.

The command highlighted that sailors aboard the USS Abraham Lincoln continue to maintain F/A‑18E Super Hornets to ensure the carrier strike group remains fully mission ready. CENTCOM shared footage of maintenance activities on the flight deck, emphasising readiness to enforce the blockade.

The Abraham Lincoln is operating in the Arabian Sea, projecting sustained American naval power in the region.

CENTCOM also released imagery of a US Marine Corps F‑35C stealth fighter jet launching from the Abraham Lincoln as the carrier transited the Arabian Sea. This demonstration of advanced strike capability reinforces the message that the blockade is backed by overwhelming force. The command reiterated that as of 2 August, thirty‑five vessels had been redirected, with two disabled and two boarded, showing continuity in enforcement measures.

On Sunday, CENTCOM confirmed that thirty‑five commercial vessels were redirected, alongside the disabling of two ships and boarding of two others. The blockade, reimposed last month, continues to be enforced across regional waterways, with American forces maintaining a visible and active presence.

US Vice President JD Vance stated that Washington is working to establish a secure maritime route through the Strait of Hormuz to allow commercial shipping while maintaining pressure on Iran. He explained that Tehran has indicated willingness to permit maximum oil flow through the strait, but Washington remains sceptical of Iranian assurances. Vance stressed that the United States is attempting to maximise oil and gas exports from the region to stabilise global energy prices.

Speaking to Fox News, Vance declared that the United States has destroyed Iran’s nuclear program, dismantled its conventional military, and significantly reduced its asymmetric capabilities. He added that Washington is now assessing whether Tehran is prepared to make long‑term changes in its relationship with the United States. If not, he said, America will continue applying pressure while ensuring energy supplies remain steady for domestic benefit.

The blockade forms part of a broader strategy to constrain Iran’s regional influence and military capacity. The United States is simultaneously pursuing diplomatic channels while maintaining military dominance in the Gulf.

The Abraham Lincoln strike group, with its carrier‑borne aircraft including F/A‑18E Super Hornets and F‑35C stealth fighters, represents a formidable deterrent against Iranian escalation.

The situation in the Strait of Hormuz remains tense. While humanitarian shipments are permitted, commercial traffic faces strict scrutiny. The blockade has already redirected dozens of vessels, and enforcement actions against non‑compliant ships demonstrate Washington’s resolve. The United States continues to balance military pressure with limited humanitarian concessions, aiming to weaken Iran’s strategic position while avoiding a complete shutdown of essential supplies.

The broader conflict has implications for global energy markets. Any disruption in the Strait of Hormuz, through which a significant portion of the world’s oil supply transits, threatens to destabilise international commerce. Washington’s efforts to secure safe passage routes reflect concern over the economic consequences of prolonged confrontation.

ANI


Russia Explores Direct Railway Link To Indian Ocean Amid Maritime Disruptions


Russia has floated an ambitious idea of establishing a direct railway link to the Indian Ocean, with Deputy Prime Minister Marat Khusnullin emphasising that such a project should be explored to mitigate risks associated with maritime chokepoints.

He explained that the Bosphorus and the Strait of Hormuz present significant vulnerabilities for global trade, and alternative overland corridors could provide more secure connectivity.

Routes passing through Turkmenistan, Iran, Afghanistan, and Pakistan were highlighted as possible alignments, with any option that ensures access to India considered viable.

If realised, this would mark the first direct overland rail freight connection between Russia and India, reshaping Eurasian logistics.

The proposal comes at a time of heightened maritime instability in the Strait of Hormuz. Armed hostilities involving the United States, Israel, and Iran have disrupted shipping lanes, prompting Tehran to impose a blockade on vessels linked to its adversaries.

The Strait of Hormuz is one of the world’s most critical energy arteries, handling about a quarter of global oil trade and nearly a fifth of liquefied natural gas shipments. The blockade has amplified concerns over supply chain resilience and accelerated discussions on alternative transport corridors.

On 28 February, joint military strikes were carried out against Iran, targeting major urban centres including Tehran. In retaliation, Iran’s Islamic Revolutionary Guard Corps launched missile and drone attacks against Israeli positions and US bases across Bahrain, Jordan, Iraq, Qatar, Kuwait, the UAE, and Saudi Arabia.

These developments have intensified the urgency for countries like Russia to diversify trade routes away from contested maritime zones. A rail corridor to India would not only bypass the Strait of Hormuz but also reduce reliance on the Bosphorus, another strategic bottleneck.

Beyond international connectivity, Khusnullin also addressed Russia’s domestic economic priorities. He stressed that the construction sector requires consistent, long-term financial support to sustain growth.

According to him, the industry already has the capacity to absorb an additional one trillion roubles annually. If such funding is secured over the next five years, Russia could expand its construction capacity significantly, enabling the development of large-scale infrastructure projects such as the proposed Eurasian rail link.

The concept of a Russia–India railway corridor aligns with broader efforts to strengthen Eurasian integration. It would complement existing initiatives like the International North-South Transport Corridor and Russia’s push to expand the Northern Sea Route.

For India, such a link could enhance access to energy supplies and trade networks while reducing exposure to maritime disruptions. For Russia, it would reinforce its pivot to Asia and deepen economic ties with South Asia.

However, the feasibility of traversing politically sensitive regions such as Afghanistan and Pakistan remains uncertain, requiring careful diplomatic coordination.

The idea underscores the growing importance of resilient logistics in an era of geopolitical volatility. As maritime chokepoints face increasing risks, overland connectivity projects are gaining traction as strategic alternatives.

Whether this ambitious railway plan materialises will depend on political will, financial investment, and regional stability, but its potential impact on Eurasian trade architecture is undeniable.

ANI