PS 26098HARDWAREMiscellaneousHeavy R&D

Development of a Low-Cost Precision Guidance and Smart Electronic Fuze System for a 155 mm Artillery Shell

Ministry of Defence (MoD)Yantra India Limited, Ambajhari,Nagpur
Google Search
30-Second Plain English Summary

Unguided artillery shells and rockets used by the Indian Armed Forces suffer from high circular error probable (CEP > 150m at 30 km range), requiring high ammunition expenditure and risking collateral damage, while foreign precision-guided kits cost over $30,000 per shell. Build an indigenous Low-Cost Precision Guidance and Smart Electronic Multi-Option Fuze architecture for artillery shells combining anti-jam NavIC/GPS GNSS steering, MEMS inertial navigation, aerodynamic course correction canards, and programmable multi-mode proximity/impact/delay fuzing.

5-Dimension Strategic ScorecardOverall Score: 4.1 / 5.0
Innovation
4.5 / 5
36h Feasibility
3.2 / 5
Uniqueness
3.8 / 5
Jury Appeal
4.1 / 5
Tech Depth
4.9 / 5
Recommended System Architecture Pipeline
Gun Fire Control Computer -> Inductive Fuze Setter (STANAG 4369) -> Shock-Hardened MEMS IMU + NavIC -> 6-DOF Canard Control Loop -> Multi-Option Electronic Fuze
Hardware Bill of Materials (BOM) & Cost BreakdownEstimated component unit economics in Indian Rupee (INR)
Prototype Unit Cost:99,500
ComponentSpecificationQtyEst. Cost
High-Torque Brushless Canard Actuation Servos (Set of 4)Aerospace micro-actuators with titanium canard fins for in-flight artillery trajectory correction132,000
Extreme High-G 6-DOF MEMS IMU (Analog Devices ADIS16470)Withstands 15,000 Gs setback launch acceleration inside standard 155mm gun barrels128,000
Anti-Jam GNSS Receiver with Conformal Nosecone AntennaCentimeter trajectory correction GPS/NavIC receiver with rapid post-launch signal lock19,500
Multi-Mode Electronic Fuze Sensor SuiteProximity FMCW radar doppler, impact piezo crystal, and millisecond time-delay trigger114,500
Setback-Activated Miniature Thermal Battery UnitSolid-electrolyte battery activated instantly by barrel launch shock (5-minute flight life)112,000
STM32G4 Aerospace-Grade GNC MicrocontrollerHardware math accelerator executing real-time aerodynamic roll-stabilized guidance13,500
Power Input: High-G Shock-Activated Thermal Battery (28V DC Output)
Form Factor: Standard 155 mm Artillery Shell Nosecone Thread Replacement Assembly
Architecture & Prototyping Strategy: Two-tier presentation strategy: (1) Hackathon MVP (~₹6k–₹10k) with 3D printed canard nosecone + micro-servos + MPU6050 demonstrated on model rocket / wind tunnel; (2) Defence Munitions Kit (~₹99.5k) with 15,000G rated ADIS16470 IMU, titanium canard actuators, setback thermal battery, and multi-mode electronic fuze.
Recommended Tech StackClick to search similar
Official Government Problem Description
• Problem Title Design and Development of a Precision Guidance Kit with Canard Actuation and Multi-Mode Electronic Fuze for a 155 mm Artillery Shell • Background Conventional 155 mm artillery shells rely on unguided ballistic trajectories, resulting in relatively high Circular Error Probable (CEP), particularly at long ranges. Improving strike accuracy while utilizing existing shell hardware can significantly enhance operational effectiveness, reduce ammunition consumption, and minimize collateral damage. The YIL (Yantra India Limited) possesses extensive expertise in manufacturing the mechanical hardware of 155 mm artillery shells and seeks innovative solutions to transform conventional shells into precision-guided munitions through the integration of an advanced guidance and fuze system. • Problem Statement Develop a compact, robust, and cost-effective precision guidance solution for a standard 155 mm artillery shell by integrating: • A Canard Actuation Assembly (CAA) for in-flight trajectory correction. • A Guidance,Navigation and Control (GNC) system capable of improving terminal accuracy. • A Multi-mode Electronic Fuze supporting: • Proximity Mode • Time Mode • Impact Mode • Embedded electronics and software for real-time flight control. • Power management suitable for high-g launch and flight conditions. • Communication and programming interface for fuze configuration prior to firing. The integrated system should achieve a Circular Error Probable (CEP) of 30 meters or better, while maintaining compatibility with the existing 155 mm shell design and surviving the extreme mechanical and environmental conditions experienced during artillery launch and flight. • Expected Outcome Participants should propose a complete system architecture including: • Guidance and navigation methodology. • Canard deployment and actuation mechanism. • Flight control algorithms. • Multi-mode electronic fuze design. • Sensor selection (e.g., IMU, GNSS, barometric sensor, proximity sensor, etc.). • Embedded hardware architecture. • Power supply and environmental protection strategy. • Simulation and validation methodology. • Manufacturability and cost optimization. • Desired Deliverables • System architecture document. • CAD model of the canard actuation assembly. • Electronics block diagram. • Guidance and control algorithm. • Simulation demonstrating trajectory correction. • Prototype or proof-of-concept (preferred). • Performance estimation showing the capability to achieve a CEP of ?30 m. • Constraints • Compatible with a standard 155 mm artillery shell casing. • Must withstand high launch acceleration, vibration, spin, and harsh environmental conditions. • Low Size, Weight, Power, and Cost (SWaP-C). • High reliability and safety. • Modular design suitable for future upgrades. • Skills Expected from Participants • Mechanical Design • Mechatronics • Embedded Systems • Control Systems • Guidance, Navigation & Control (GNC) • Aerospace Engineering • Electronics
AI & PPT Citation Format

Smart India Hackathon 2026 Problem Statement PS-26098: "Development of a Low-Cost Precision Guidance and Smart Electronic Fuze System for a 155 mm Artillery Shell", Ministry: Ministry of Defence (MoD). Strategy & Architecture via SIH ONE (https://sihone.pages.dev/ps/26098)

Related Problem Statements in Miscellaneous