ASTRM builds unmanned integrated battlefield systems for Indian defense, combining nanoelectronics embedded processors, real-time computer vision, autonomous navigation, and secure low‑latency communications into rugged hardware that can operate across land, air, and sea.
Funding
Funding not disclosed
Founders
Product
Problem
India’s defense forces require reliable, low‑latency autonomous systems for surveillance, targeting, and engagement across land, air, and sea, but existing platforms are often fragmented, manually operated, and lack integrated advanced sensing and decision‑making capabilities.
Solution
ASTRM creates unmanned integrated battlefield systems that combine nanoelectronics, embedded hardware, and machine‑learning‑driven computer vision into cohesive autonomous platforms. These platforms operate with coordinated, low‑latency communication, enabling real‑time situational awareness and precision engagement in contested environments. By embedding advanced perception and decision algorithms directly into rugged hardware, ASTRM delivers scalable tools that can be deployed across multiple domains without the need for extensive human intervention. The integrated approach enhances deterrence by providing the armed forces with high‑performance, autonomous capabilities for surveillance, targeting, and engagement.
Target Audience
Primary customers are the Indian Army, Navy, and Air Force, as well as defense research organizations seeking integrated autonomous solutions for battlefield operations.
Features
- Nanoelectronics‑based embedded processors optimized for low power consumption and high computational throughput
- Real‑time computer‑vision pipelines for object detection, classification, and tracking in diverse battlefield conditions
- Autonomous navigation and coordination algorithms enabling synchronized operations across land, air, and maritime platforms
- Secure, low‑latency communication links for rapid data exchange and command‑and‑control among distributed unmanned assets
- Modular hardware architecture allowing rapid integration of sensors, effectors, and mission‑specific payloads