843: RUSSIA’S INNOVATION: CONVERTING AIR DEFENCE ASSETS INTO OFFENSIVE FIREPOWER

 

Russia is increasingly finding new ways to expand its ballistic-missile arsenal without relying entirely on purpose-built systems such as the Iskander-M. According to Ukraine’s Defence Intelligence Directorate (DIU), Russia has modified up to 17 S-400 launchers to fire RM-48U missiles against ground targets.

The modified launchers have reportedly been organised into five specialised missile groups deployed in Russia’s Bryansk and Rostov regions. Their emergence highlights a broader Russian effort to turn existing air-defence hardware and missile stocks into additional offensive capabilities.

At first glance, 17 launchers may seem relatively small. But their significance lies less in the number than in what they represent: Russia is creating another layer of ballistic strike capacity by repurposing weapons and equipment originally intended for air defence.

 

From Interceptor to Strike Missile

The RM-48U is essentially a ground-attack adaptation of missiles from the 48N6 family associated with the S-300 and S-400 air-defence systems. Instead of intercepting aircraft or other aerial targets, these missiles can now hit ground targets.

The conversion gives Russia a way to extract additional military value from an existing inventory. Older air-defence missiles that might otherwise remain in storage, require expensive maintenance or reach the end of their service life can potentially be refurbished and adapted for a different role.

The concept itself is not entirely new. Russia has previously used S-300 and S-400 air-defence missiles in ground-attack roles. What matters about the RM-48U development is the apparent effort to institutionalise that conversion rather than rely on improvised battlefield use. Ukrainian officials have confirmed the existence of specially modified S-400 launchers intended for these missiles.

Ukrainian intelligence assesses that the RM-48U is substantially cheaper than the purpose-built 9M723 ballistic missiles used by the Iskander-M system. Russia is also reported to hold a stockpile of roughly 400 RM-48U missiles.

 

A Cost-Effective Advantage

The most obvious advantage is cost, which makes the RM-48U attractive for sustained missile campaigns. Ukraine’s Defence Intelligence says Russia is using RM-48U missiles partly because they are significantly cheaper than the 9M723 ballistic missiles employed by the Iskander-M system. Ukrainian intelligence estimates Russia held around 400 RM-48Us in mid-2026, while production reportedly continued at roughly 50 missiles per month, with more than 480 planned for production during 2026.

A country conducting large-scale strikes does not need to attack every target with its most expensive or scarce missile. Purpose-built ballistic missiles such as the Iskander’s 9M723 are valuable assets, and using them against every target would place greater pressure on Russia’s stockpile and production capacity.

The RM-48U provides another option. Russia can therefore use a mixed arsenal: more capable or expensive missiles for some targets while employing converted air-defence missiles for others. The result is a larger pool of weapons that can contribute to a ballistic strike campaign.

 

Seventeen Launchers

The figure of 17 does not mean that the number of missiles is limited to 17. A launcher can fire, reload, and fire again. The real limitations are more likely to be missile availability, reload procedures, logistics, supply chain, and operational tempo rather than the headline figure of 17 launchers.

Russia reportedly possesses around 400 RM-48U missiles, making the size and replenishment of the missile stockpile more important for understanding the programme’s potential scale than the number of launchers.

If production and employment rates continue to rise, the missile stockpile becomes the key factor. Russia is simultaneously working to replenish that stockpile, meaning the conversion programme is not necessarily limited to older missiles already sitting in warehouses.

The modified launchers have reportedly been grouped into five specialised missile units positioned in Bryansk and Rostov oblasts, locations that provide practical reach toward Ukrainian territory.

 

Scalability with Existing Ecosystem

Another advantage is the existing launcher architecture. Russia already operates the S-400 system at scale. Its military-industrial sector can manufacture new launchers and modernise existing equipment. Ukrainian intelligence has identified Almaz-Antey and MKB Fakel among the principal companies associated with the S-400 system. In contrast, the Avangard Moscow Machine-Building Plant and AviaTek in Vyatka are identified as manufacturers of RM-48U missiles.

This means Moscow does not have to create an entirely new missile-launching ecosystem. The basic architecture already exists: launch vehicles, transport and handling equipment, personnel, logistics and command structures associated with the S-400 family. Modifying selected launchers to support the ground-attack mission can therefore be considerably more straightforward than developing a completely new operational missile system.

This is an important feature of Russia’s wartime adaptation. Rather than treating its enormous legacy inventory as obsolete, Moscow is looking for ways to turn existing stocks into new capabilities.

 

Augmentation of Missile Capability and Capacity

The RM-48U should not be viewed as a replacement for the Iskander-M. Russia still prioritises production of 9M723 missiles for Iskander-M, and Ukrainian Defence Intelligence has reported that Russia can produce more than 200 cruise and ballistic missiles of various types per month. Its estimates put monthly 9M723 production at around 60 missiles, with July production reportedly reaching 65.

The more logical interpretation is that Russia is attempting to expand the depth of its ballistic arsenal. A military does not necessarily need one weapon system to perform every task. It can be more effective to create several overlapping categories of missiles, each with different costs, capabilities and levels of availability.

The RM-48U fits neatly into that strategy. Instead of allowing older 48N6-family missiles to remain stranded in storage, Russia can convert them into offensive weapons. Instead of consuming an Iskander missile for every ballistic-strike requirement, Russian forces can draw on a second pool of missiles. And instead of developing an entirely new launcher, they can modify part of an existing S-400 infrastructure. The result is additional capacity without requiring every element of the system to be newly developed.

 

A Broader Look at the Russian Adaptation

The conversion of S-400 launchers illustrates a broader feature of Russia’s war effort: the attempt to squeeze additional combat value from existing inventories while expanding new production. The strategic importance of the RM-48U programme is therefore not simply that Russia has 17 modified launchers. It is that Russia appears to be building a second echelon of ballistic strike capability.

The missiles may be cheaper than Iskanders, the launchers are derived from an existing system, the missile stockpile is substantial, and production is continuing. The same basic concept could potentially be applied to large inventories of older air-defence weapons.

For Ukraine, this complicates defence against Russian missile attacks. The more diverse Russia’s strike arsenal becomes, the harder it is to predict which missile types will be used in a particular attack and how rapidly Russia can replenish weapons after a major strike.

 

Concluding Thought

The RM-48U programme should be seen not as Russia giving up on the Iskander, but as an attempt to expand its ballistic-missile stock. Instead of keeping the air-defence systems, Moscow is turning them into an offensive reserve. Although the 17 altered launchers are the obvious aspect of this initiative, the more significant point is the fundamental principle that when missiles already in existence can be refurbished and then combined with the modified launchers and used against ground targets, weapons which were originally intended to defend Russia’s airspace can be made into a further source of offensive capability.

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Disclaimer:

Information and data included in the blog are for educational & non-commercial purposes only and have been carefully adapted, excerpted, or edited from reliable and accurate sources. All copyrighted material belongs to the respective owners and is provided only for wider dissemination.

 

References: –

1. Defence Express, “Russia has up to 17 S-400 launchers adapted to fire RM-48U missiles at Ukraine”, 27 Aug 26.

2.Center for Strategic and International Studies, “S-400 Triumf. Missile Threat” 06 Jul 26.

3.Dotsenko, A, “Kyiv under S-400 fire: How Russia has turned air defence missiles into a weapon of terror and why they keep coming”, Ukrainska Pravda, 09 Aug 26.

4.Ukrainska Pravda, “Ukraine’s Defence Intelligence provides Ukrainska Pravda with data on Russia’s missile stockpiles and production rates”, 20 Aug 26.

5.Critical Threats Project, “Russian offensive campaign assessment”, American Enterprise Institute, 20 Aug 26.

6.Bronk, J, “Analysis of Russia’s use of converted surface-to-air missiles as an additional ballistic-strike capability”, Royal United Services Institute (RUSI), 2026.

678: PROJECT KUSHA: INDIA’S INDIGENOUS SKY SHIELD

 

My Article published on “The EurasianTimes” website on 10 Jun 25.

 

 

On June 8, 2025, the Defence Research and Development Organisation (DRDO) chief announced that Project Kusha is equivalent to Russia’s S-500 and surpasses the S-400 in capabilities. This positions it as a “game-changer” for India’s air defence. It is designed to counter stealth jets, drones, aircraft, and Mach 7 anti-ship ballistic missiles with an 80–90% interception success rate.

Project Kusha is an ambitious Indigenous long-range air defence system being developed by the DRDO. It is also known as the Extended Range Air Defence System (ERADS) or Precision-Guided Long-Range Surface-to-Air Missile (PGLRSAM). Project Kusha bridges the gap between the 80 km MR-SAM and 400 km S-400, integrating with systems like Akash and Barak-8.

It is a critical part of India’s self-reliance initiative, “Atmanirbhar Bharat”.  The home-grown solution aims to safeguard India’s airspace from aerial threats by strengthening defences against regional threats, particularly from Pakistan and China. The project has gained attention after the May 2025 India-Pakistan conflict, where air defence systems proved vital against drones and missiles, underscoring the need for indigenous capabilities like Kusha. With a projected deployment timeline of 2028–2029, this system is poised to enhance the operational readiness of the Indian Air Force (IAF) and Indian Navy.

 

System Specifications

Interceptor Missiles. Project Kusha’s core strength lies in its three-tiered interceptor missile system, designed to neutralise various aerial threats at varying ranges. The M1 Interceptor (150 km) missile would target threats like fighter jets, drones, and cruise missiles at shorter ranges. Its compact 250 mm diameter kill vehicle, equipped with a dual-pulse solid rocket motor and thrust vector control, ensures high manoeuvrability and precision, making it ideal for tactical engagements. The M2 Interceptor (250 km) missile with an extended range can engage advanced targets, including airborne early warning and control systems (AEW&CS) and anti-ship ballistic missiles (ASBMs). It shares the M1’s 250 mm kill vehicle, optimised for agility and accuracy against mid-range threats. The M3 Interceptor (350–400 km), the longest-range missile in the system, is designed to counter larger aircraft and potentially short- and medium-range ballistic missiles (SRBMs and IRBMs). It may feature a larger 450 mm diameter kill vehicle to achieve its extended range and enhanced lethality.

Capabilities. These interceptors boast an impressive single-shot kill probability of 85%, which rises to 98.5% when two missiles are launched in salvo mode, five seconds apart. The missiles likely employ hit-to-kill (HTK) technology, relying on kinetic energy rather than explosive warheads, similar to advanced systems like the US THAAD or SM-3. Dual-seeker technology, combining radar and infrared guidance, enhances their ability to track and destroy low-radar-signature targets, such as stealth aircraft and cruise missiles.

Advanced Radar Systems. The effectiveness of Project Kusha hinges on its state-of-the-art radar systems, particularly the Long Range Battle Management Radar (LRBMR), an S-band radar with a detection range exceeding 500 km. This radar can scan 500–600 km into enemy territory, providing early warning against stealth aircraft, drones, precision-guided munitions, and ballistic missiles. The system integrates seamlessly with India’s Integrated Air Command and Control System (IACCS), enabling real-time coordination with other air defence systems, including Akash, MRSAM, and the S-400. For naval applications, the Indian Navy is developing a 6×6-meter radar for its Next Generation Destroyer, four times larger than the radar on the Visakhapatnam-class destroyer, to detect sea-skimming missiles and ASBMs with ranges up to 1,000 km.

Multi-Layered Defence Architecture. Project Kusha is designed as a multi-layered air defence system. It provides strategic and tactical cover for critical infrastructure, military bases, and urban centers. The system’s versatility allows it to counter various threats, from low-flying cruise missiles to high-altitude aircraft and limited ballistic missile threats. By integrating with India’s Ballistic Missile Defence (BMD) program, including the AD-1 and AD-2 interceptors, Project Kusha forms a robust shield against both conventional and strategic threats.

Technological Innovations. Project Kusha incorporates cutting-edge technologies to ensure operational superiority:-

    • AI-Enabled Decision Support. The system may leverage artificial intelligence to coordinate intercepts, process real-time data from satellites, radars, AWACS, and UAVs, and optimise target engagement.
    • Dual-Seeker Technology. Combining radar and infrared seekers enhances the system’s ability to track and destroy stealthy or low-observable targets.
    • Compact Design. The M1 and M2 interceptors’ 250 mm diameter kill vehicles are notably smaller than comparable systems like the US SM-2 or SM-6, showcasing DRDO’s innovative approach to missile design.

 

Comparison with Global Systems

 

S-400 Triumf (Russia). The S-400 can engage 36 targets simultaneously at a range of 400 km. Project Kusha aims to match this range with its M3 interceptor and offers better integration with India’s defence architecture, reducing reliance on foreign maintenance and support.

Patriot (USA). While the Patriot is a proven system, Kusha’s lower cost and indigenous design provide a tailored alternative for India’s needs, with potential for greater scalability.

David’s Sling and Iron Dome (Israel). Although similar in some aspects, such as dual-seeker technology, Kusha’s M2 and M3 missiles offer longer ranges and limited BMD capabilities, unlike David’s Sling’s focus on shorter-range threats. The Iron Dome is optimised for short-range rocket interception, while Kusha targets long-range strategic threats, making it more comparable to the S-400 or Patriot.

 

Project Details & Development Journey

Approval and Funding. In May 2022, the Cabinet Committee on Security (CCS) approved the development of Project Kusha. In September 2023, the Ministry of Defence granted the Acceptance of Necessity (AoN) for procuring five IAF squadrons at an estimated cost of ₹21,700 crore (approximately US$2.6 billion). This investment reflects India’s commitment to building a self-reliant defence ecosystem that addresses modern threats.

Key Partners. The DRDO is leading the Project Kusha, with Bharat Electronics Limited (BEL) playing a pivotal role in developing critical subsystems like radars and battle management systems. The Defence Research and Development Laboratory (DRDL) is responsible for designing the interceptor missiles, while the Research Centre Imarat (RCI) focuses on advanced seeker technology. Collaboration with private industry partners is expected to accelerate development and production, aligning with India’s push for public-private partnerships in defence.

Timeline. As of May 2025, the DRDO has reportedly completed the design phase, with development of critical components underway. BEL aims to complete a prototype within 12–18 months (by November 2026–May 2027). The user trials are expected to last 12–36 months, paving the way for operational deployment by 2028–2029.

 

Strategic Significance

Self-Reliance and Cost-Effectiveness. Project Kusha is a cornerstone of India’s Atmanirbhar Bharat initiative, reducing dependence on foreign systems like the S-400, which faced delivery delays due to the Russia-Ukraine conflict. At ₹21,700 crore for five IAF squadrons, it is significantly more cost-effective than the $5.25 billion deal for five S-400 units, offering comparable capabilities tailored to India’s operational needs. This cost advantage enhances India’s ability to scale its air defence infrastructure without straining its defence budget.

Regional Deterrence.  With China and Pakistan modernising their air forces and missile arsenals, Project Kusha strengthens India’s deterrence posture. Its ability to counter stealth aircraft, cruise missiles, and ASBMs addresses emerging threats in the Indo-Pacific, particularly China’s growing naval and missile capabilities. The system’s integration with the IACCS ensures a cohesive defence network, enabling rapid response to multi-domain threats and enhancing India’s strategic autonomy.

Export Potential. Project Kusha’s advanced technology and competitive pricing position India as a potential global air defence market player. Countries seeking alternatives to Western and Russian systems may find Kusha attractive, boosting India’s defence exports and geopolitical influence. Success in this arena could elevate India’s status as a defence technology provider, complementing its exports like the BrahMos missile.

 

Challenges and Considerations

Technical Challenges. Achieving the claimed ranges with compact interceptors, particularly the 150 km M1, has raised scepticism due to its small size compared to US SM-2 or SM-6 systems. Ensuring reliability and accuracy against stealthy and hypersonic threats will require rigorous testing and validation.

Development Timeline. The 2028–2029 deployment target is ambitious, given the complexity of integrating advanced radars, AI systems, and interceptors. Delays in prototype development or user trials could push back operational readiness, as seen in past DRDO projects.

System Integration. Seamless integration with existing systems (Akash, MRSAM, S-400) and future systems (AD-1, AD-2) is essential for a cohesive air defence network. Any interoperability issues could undermine the system’s effectiveness and delay deployment.

International Competition. India will face stiff competition from established players like the US, Russia, and Israel in the global air defence market. Demonstrating technological superiority and reliability will be critical for export success and domestic adoption.

 

Future Phases

Naval Integration. The Indian Navy plans to deploy the M1 and M2 interceptors on next-generation surface combatants, such as destroyers, to counter ASBMs and other maritime threats. The enhanced naval radar system will provide 360-degree coverage, enabling early detection and interception of sea-skimming missiles. This integration underscores Project Kusha’s role in strengthening India’s maritime security, particularly in the Indo-Pacific region, where threats like China’s DF-21D “carrier-killer” missiles pose significant challenges.

Future Enhancement. Project Kusha is the first phase of a multi-phase program. Phase II aims to develop interceptors with ranges exceeding 400 km and anti-hypersonic capabilities, potentially rivalling Russia’s S-500 system. This long-term vision underscores India’s ambition to remain at the forefront of air defence technology, addressing future threats like hypersonic missiles and advanced stealth platforms.

 

Conclusion

Project Kusha represents a monumental leap in India’s quest for self-reliance in defence technology. It promises to deliver a versatile, multi-layered air defence shield capable of countering diverse threats by combining advanced interceptors, long-range radars, and AI-driven systems. A cost-effective price tag and a focus on indigenous innovation strengthen India’s strategic autonomy and position the country as a potential leader in the global defence market. However, overcoming technical challenges and meeting the ambitious 2028–2029 timeline will be critical to realising its full potential. As India advances toward operational deployment, Project Kusha is a testament to its growing technological prowess and commitment to safeguarding its skies.

 

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Link to the article on the website:-

India’s Own S-500 & THAAD! DRDO Announces Project Kusha Sky Shield Program That Could Revolutionize Indian Defenses

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References and credits

To all the online sites and channels.

Pics Courtesy: Internet

Disclaimer:

Information and data included in the blog are for educational & non-commercial purposes only and have been carefully adapted, excerpted, or edited from reliable and accurate sources. All copyrighted material belongs to respective owners and is provided only for wider dissemination.

References:-

  1. Press Information Bureau (PIB), Government of India, “DRDO Chief Briefs on Indigenous Long-Range Air Defence System ‘Project Kusha’.” PIB Release, June 8, 2025.
  2. Bedi, R. (2023, September 10). India approves indigenous long-range air defence system under Project Kusha—Jane’s Defence Weekly.
  3. Bharat Electronics Limited. (2025, May 15). Annual report 2024–2025: Progress on Project Kusha.
  4. Defence Research and Development Organisation. (2024). DRDO newsletter: Advances in air defence systems.
  5. Gupta, S. (2024, December 12). Project Kusha: India’s answer to the S-400. The Times of India.
  6. Indian Ministry of Defence. (2023, September 15). Acceptance of Necessity (AoN) for Project Kusha. Press Information Bureau.
  7. Sagar, P. (2024, November 20). Project Kusha and India’s multi-layered air defence strategy. The Diplomat.
  8. Singh, R. (2025, March 15). How Project Kusha could transform India’s defence exports. India Today.
  9. The Hindu, “Project Kusha Will Be India’s Answer to S-500, Says DRDO Chief.” The Hindu Defence Correspondent, June 8, 2025.
  10. Hindustan Times, “Explained: What Is Project Kusha and Why It Is a Game-Changer for India’s Air Defence?” Hindustan Times Defence Desk, June 9, 2025.
  11. Economic Times (ET Defence), “DRDO’s Project Kusha: India’s Indigenous Answer to S-400 and THAAD.” ET Defence, May 2025.
  12. Livefist Defence, Shukla, Shiv Aroor. “India’s Kusha Air Defence System: Details, Development and Deployment Plans.” Livefist, June 2025.
  13. Business Standard, “DRDO’s Project Kusha: DRDL, BEL, RCI Key Partners in Long-Range SAM System.” Business Standard Defence, September 2023.
  14. Jane’s Defence Weekly, “India Advances Work on Multi-Layered Air Defence with Project Kusha.” Janes.com, February 2025.
  15. ORF (Observer Research Foundation), Das, Abhijit Iyer-Mitra. “Strategic Implications of India’s Long-Range Air Defence Ambitions.” ORF Occasional Paper, March 2025.
  16. Vayu Aerospace and Defence Review, “Kusha, Akash-NG, and the Future of Indian Air Defence.” Vayu Defence Review, Issue Q2 2025.
  17. South Asia Monitor, “India’s Air Defence Evolution: From Akash to Kusha.” South Asia Monitor, April 2025.

235: S-400 Air Defence System

 

 

It was great interacting with Aadi Achint on Def Talks on a very current and valid topic.

(All information is based on open sources and views expressed are personal)

 

For selective viewing please click on the links below:

  1. Introduction (Up to 2:00).
  2. Perspective on AD & S-400 (2:00 – 07:37).
  3. System Description (7:37 – 13:55).
  4. Threats it can Handle (13:55 – 16:00).
  5. US Objections & Threat of Sanctions (16:00 – 26:25).
  6. Capability Enhancement, Employment & Effect on Adversary  (26:25 – 35:00).
  7. Cost Factor and Future Systems (35:00 onwards).

 

Bottom Line

 The system is much needed and is a game changer.

 

Question

Will we ever become self reliant on defence equipment, weapons and systems?

 

Suggestions and value additions are most welcome

 

 

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