Robotics Software Engineer (Fleet Management)

Summary

The Robotics Software Engineer will design and develop algorithms for robotic fleet management, including task assignment, routing, and multi-robot coordination. The role involves building simulation environments and analyzing telemetry data using Python, C++, or C# to optimize large-scale robotic systems.

Brief Summary:

Join a dynamic team as a Robotics Software Engineer, focusing on advanced fleet management algorithms to enhance efficiency and scalability in robotic systems. This role offers the opportunity to develop innovative solutions in a cutting-edge environment.

Responsibilities:

  • Design and develop algorithms for robotic fleet management, including task assignment, scheduling, routing, and resource allocation.
  • Build and maintain simulation and testing environments to evaluate fleet strategies and validate system performance.
  • Develop strategies to improve multi-robot coordination, traffic management, and mission dispatching in dynamic operational environments.
  • Analyze robot telemetry and operational data to identify system bottlenecks and drive continuous improvement.
  • Collaborate with cross-functional teams to ensure the reliable deployment, integration, and operational performance of fleet management solutions.
  • Document system designs and stay up to date with advancements in robotics, multi-agent systems, and logistics optimization.
  • Develop scalable software components and services that integrate with robotic systems using modern communication frameworks.

Requirements:

  • Master’s or Ph.D. degree in Computer Science, Robotics, Operations Research, Electrical Engineering, or a related field, with experience in robotics, optimization, or large-scale distributed systems.
  • Strong background in algorithms, optimization, and operations research, including scheduling, routing, and graph-based methods.
  • Proficiency in Python, C++, or C#, with experience developing scalable and maintainable software systems.
  • Experience developing algorithms for multi-agent systems, path planning, robotic coordination, and task allocation.
  • Familiarity with real-time systems, control theory, and optimization methods.
  • Strong data analysis skills, including analyzing robot telemetry, operational logs, and system performance metrics.
  • Experience working with robotic fleets or large-scale logistics and automation systems, including simulation and operational experimentation.
  • Proven ability to translate research or algorithmic innovation into practical production systems; publications or research contributions are a plus.


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