Field AI  is transforming how robots interact with the real world. We are building risk-aware, reliable, and field-ready AI systems that address the most complex challenges in robotics, unlocking the full potential of embodied intelligence. We go beyond typical data-driven approaches or pure transformer-based architectures, and are charting a new course, with already-globally-deployed solutions delivering real-world results and rapidly improving models through real-field applications. 
 
 
 
 
 Field AI is seeking a rigorous and innovative Mission Autonomy Software Engineer to play a vital role in the development of highly advanced robotic and AI systems by designing and implementing intelligent decision-making frameworks. Your contribution is essential to advancing our autonomous robotic platforms and delivering cutting-edge AI-driven solutions to customers. This is a unique career opportunity to join a rapidly growing company and contribute to the success of enterprise clients in a dynamic, fast-paced environment.
What You Will Get To Do
• Mission Autonomy Framework Development and Optimization
• Design and implement state machines and behavior trees to enable intelligent decision-making in complex robotic systems. Optimize mission autonomy algorithms to ensure real-time performance and robustness in diverse settings and environments.
• Mission Autonomy Framework Unit Testing
• Develop and execute unit tests for mission autonomy modules to validate correctness, reliability, and efficiency.
• Ensure rigorous software verification through automated and manual testing approaches.
• Mission Autonomy Framework Simulation Testing
• Integrate and test mission autonomy frameworks in simulation environments to validate behavior before deployment in the real world.
• Utilize simulation tools to identify potential issues and refine decision-making logic.
• Software Modularization for LLM Interface
• Develop a modular software architecture to enable LLM-based mission definition via natural language prompts.
• Ensure seamless integration between autonomy frameworks and language-based mission design interfaces.
What Will Set You Apart
• Proficiency in C++ programming
• Experience with simulation environments (e.g., Gazebo, Isaac Sim)
• Experience with LLM-based decision-making frameworks in robotic systems