Dual Domain Robotics Autonomy

One Platform for Land & Sea

Advanced ROS2-Powered Autonomous Navigation System with Defense-Grade Sensor Fusion

Overview

Defense-Grade Autonomous Robotics Built
for Cross-Domain Operations

Our advanced autonomous robotics platform delivers a unified ROS2-based autonomy stack engineered for both terrestrial and maritime systems. By combining defense-grade sensor fusion, AI-powered navigation, and a single land–sea codebase, we eliminate fragmented development, reduce deployment timelines, and ensure reliable autonomy in GNSS-denied and complex environments. Built with battle-tested components and proven in defense deployments, our solution enables mission-ready robotics—from simulation to field operations—at speed and scale.

Our Accreditations

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Case Study

Services Offerings

6 Battle-Tested Components for
Mission-Ready Autonomy

We deliver six battle-tested capabilities that resolve your most complex robotics challenges. Each component integrates seamlessly within our ROS2-native architecture for immediate deployment.

ROS 2-Based Autonomous Navigation Stack
Modular software for perception, localization, mapping

Waypoint-Based Mission Execution Engine

Customizable navigation with real-time obstacle handling

Sensor Fusion Framework

Synchronizes GPS, IMU, DVL, LiDAR, and cameras

Real-Time Insights & Data Visualization

Interfaces with CAN, UART, UDP, TCP, Ethernet, and proprietary systems

Simulation & Deployment Toolkit

Gazebo/Unreal + Dockerized ROS2 containers

Documentation & Handover Support

Detailed ICDs and deployment handholding

Your Partner for Advanced
Autonomous Robotics Solutions

Industry Problems

The $1.2M Problem in Cross-Domain Robotics

And the Single Stack That Solves It

Cross-domain robotics programs bleed time and money due to fragmented development. Reports indicate that 85% of land-sea robotics projects miss deadlines, with teams losing over $1.2M annually to duplicated engineering, broken integrations, and autonomy failures. Here is what’s going wrong and exactly how our unified ROS2-based autonomy stack eliminates these issues.

Complex Sensor Integration Across Diverse Platforms

Robotics projects face delays of over 6 months due to sensor protocol conflicts. The core pain point is harmonizing data from DVL, IMU, GPS, LiDAR, and cameras across inconsistent protocols.

Unreliable Autonomy in Challenging Environments
Autonomy systems see a 45% failure rate in GNSS-denied zones without advanced fusion. Navigation consistently fails in murky waters, off-road terrain, and cluttered environments.

Disjointed Terrestrial & Maritime Software Stacks

Maintaining separate land and sea systems increases costs by 35% and delays deployment by 12–18 months. This forces teams to maintain two separate codebases, doubling effort and cost.

Slow Development Due to Missing Autonomy Building Blocks

Teams building from scratch take 2.3 times longer to reach deployment. Critical time is lost re-implementing waypoint navigation, obstacle avoidance, and mission logic.

Talent Gaps in Real-Time Fusion & Navigation Algorithms

A critical 85% of organizations cite sensor-fusion talent gaps as a major barrier. Limited in-house capability for adaptive planning and real-time fusion slows progress and innovation.

Our Solutions

Our ROS2-Based Autonomy Stack Delivers:

Unified Sensor Fusion Framework

Synchronizes 10+ sensor types in under 5 ms using defense-grade ROS2 pipelines, eliminating protocol conflicts and integration delays.

AI-Powered Path Planning & Inertial Fusion

Achieves 95% navigation accuracy in GNSS-denied and low-visibility scenarios, ensuring reliable autonomy in the most challenging environments.

Single Land–Sea Codebase

Cuts maintenance costs by 70% and accelerates deployment by using one unified codebase for both terrestrial and maritime platforms.

Pre-Built Navigation Modules

Deploy in weeks, not years, with modular, ready-to-use components for SLAM, waypoint navigation, and obstacle avoidance.

Full Handover Support & Engineering Training

Bridge skill gaps instantly with expert support, comprehensive documentation, and on-site enablement.

Eliminate integration delays and deploy mission-ready autonomy faster with our unified ROS2 stack.

Benefits

Strategic Outcomes & Quantifiable Results

Maritime & Terrestrial Robotics in Action

Our unified platform enables robust operations in diverse environments, serving both public
and private sectors through configurable deployments.

Government & Research

  • Coastal surveillance using USVs in GPS-denied navigation zones
  • Underground infrastructure inspection using UGVs
  • Environmental monitoring with AUVs for pollution mapping

Industrial & Commercial

  • Autonomous port logistics (ship-to-shore cargo handling)
  • Offshore energy platform inspection using USVs
  • Agricultural field analysis using terrain-ready UGVs

Technical Specifications

Core Technologies

ROS

ROS 2

NAV 2

 SLAM

AI/ML

Reinforcement Learning

Sensor Suite
LIDAR
IMU
GPS
Camera
Sonar
Radar
Tools
Gazebo
Unreal
Engine
MATLAB
Sensor Suite
MISRA
ROS

Blogs

Testimonials

Build reliable autonomy for the most demanding environments with a proven, defense-grade robotics stack.

Reach out and let's begin

Contact Form

See how our unified stack can eliminate your integration barriers and accelerate your deployment timeline.

Naveen M S

Business Head – Software & Systems Engineering

Sangram Rout

VP Delivery –
Defence Projects

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