Responsibilities
• Define the technical vision, architecture, and development roadmap for autonomy capabilities that combine RF sensing, perception, state estimation, sensor fusion, decision logic, guidance, navigation, and vehicle control.
• Lead the development and maturation of advanced radar and RF signal processing algorithms, including waveform design, adaptive beamforming, direction finding, target detection and tracking, clutter mitigation, electronic protection, and sensor performance optimization.
• Serve as the senior technical authority for autonomy and RF system performance, leading high consequence trade studies, requirements decisions, architecture reviews, algorithm reviews, and technical risk resolution across the full system lifecycle.
• Establish and govern end to end simulation, modeling, and verification approaches, including RF scene generation, electronic attack and protection modeling, sensor models, 6 degree of freedom vehicle simulation, Monte Carlo analysis, software in the loop, hardware in the loop, and field test correlation.
• Lead cross functional technical integration across autonomy, software, RF hardware, avionics, embedded computing, vehicle systems, flight sciences, systems engineering, test, and manufacturing to ensure subsystem performance supports mission level autonomy outcomes.
• Translate mission and vehicle needs into rigorous technical requirements, performance budgets, interface definitions, algorithm specifications, verification plans, and measurable success criteria.
• Guide the technical development of real time algorithm implementations in MATLAB, Python, C, C++, and DSP environments, balancing performance, compute resources, latency, reliability, integration constraints, and operational needs.
• Lead technical engagement with customers, partners, suppliers, and executive stakeholders, communicating technical strategy, performance evidence, maturity, risks, tradeoffs, test outcomes, and recommended decisions.
• Build organizational capability by mentoring engineers, establishing technical standards, recruiting specialized talent, and raising the quality of algorithm development, systems engineering, modeling, verification, and test practices.
• Influence investment decisions, technical proposals, and growth initiatives by defining differentiated autonomy and RF capabilities, assessing technical feasibility, shaping solution architectures, and supporting customer facing technical engagements.
Requirements
• Bachelor’s degree in Electrical Engineering, Computer Engineering, Aerospace Engineering, Applied Mathematics, Physics, Computer Science, or a related technical discipline.
• 15 or more years of professional experience in autonomy, radar, RF sensing, signal processing, guidance and navigation, sensor fusion, aerospace systems, robotics, or related complex technical fields.
• Demonstrated technical leadership for the architecture, development, integration, and fielding of advanced autonomous, RF sensing, radar, electronic warfare, avionics, aerospace, or defense systems.
• Expert knowledge of radar and RF signal processing, including waveform design, adaptive processing, beamforming, direction finding, target detection and tracking, clutter modeling, interference mitigation, and performance assessment.
• Experience developing and validating algorithms through high fidelity end to end simulation, including sensor models, RF environmental models, vehicle dynamics, 6 degree of freedom simulation, and operationally representative scenarios.
• Demonstrated experience translating mission needs into system and subsystem requirements, performance allocations, interface definitions, algorithm specifications, verification plans, and test objectives.
• Substantial hands on experience with MATLAB and Python, along with experience developing or transitioning algorithms into C, C++, real time DSP, embedded computing, or hardware accelerated environments.
• Experience leading technical teams, mentoring engineers, driving design reviews, and resolving complex cross functional technical issues involving software, hardware, systems engineering, simulation, integration, and test.
• Strong communication skills and demonstrated ability to influence senior technical leaders, program leaders, external customers, and executive stakeholders through clear technical recommendations and evidence based decisions.
• Ability to obtain and maintain a U.S. government security clearance.
• Master’s degree or PhD in Electrical Engineering, Computer Engineering, Aerospace Engineering, Applied Mathematics, Physics, or a related technical field, with emphasis in radar, RF systems, signal processing, control systems, autonomy, estimation, or optimization.
• Experience leading radar seeker, RF sensing, autonomy, guidance, navigation, or electronic warfare capability development from early research through system design, critical design review, qualification, test, and production or op
Job description
Shield AI is a venture-backed defense-tech company with the mission of protecting service members and civilians with intelligent systems. Its products include Hivemind autonomy software, V-BAT and X-BAT aircraft, and Aechelon simulation and synthetic reality technologies. With offices and facilities across the U.S., Europe, the Middle East, and Asia-Pacific, Shield AI’s technology actively supports operations worldwide. For more information, visit www.shield.ai. Follow Shield AI on LinkedIn, X, Instagram, and YouTube.
What you'll do:
• Define the technical vision, architecture, and development roadmap for autonomy capabilities that combine RF sensing, perception, state estimation, sensor fusion, decision logic, guidance, navigation, and vehicle control.
• Lead the development and maturation of advanced radar and RF signal processing algorithms, including waveform design, adaptive beamforming, direction finding, target detection and tracking, clutter mitigation, electronic protection, and sensor performance optimization.
• Serve as the senior technical authority for autonomy and RF system performance, leading high consequence trade studies, requirements decisions, architecture reviews, algorithm reviews, and technical risk resolution across the full system lifecycle.
• Establish and govern end to end simulation, modeling, and verification approaches, including RF scene generation, electronic attack and protection modeling, sensor models, 6 degree of freedom vehicle simulation, Monte Carlo analysis, software in the loop, hardware in the loop, and field test correlation.
• Lead cross functional technical integration across autonomy, software, RF hardware, avionics, embedded computing, vehicle systems, flight sciences, systems engineering, test, and manufacturing to ensure subsystem performance supports mission level autonomy outcomes.
• Translate mission and vehicle needs into rigorous technical requirements, performance budgets, interface definitions, algorithm specifications, verification plans, and measurable success criteria.
• Guide the technical development of real time algorithm implementations in MATLAB, Python, C, C++, and DSP environments, balancing performance, compute resources, latency, reliability, integration constraints, and operational needs.
• Lead technical engagement with customers, partners, suppliers, and executive stakeholders, communicating technical strategy, performance evidence, maturity, risks, tradeoffs, test outcomes, and recommended decisions.
• Build organizational capability by mentoring engineers, establishing technical standards, recruiting specialized talent, and raising the quality of algorithm development, systems engineering, modeling, verification, and test practices.
• Influence investment decisions, technical proposals, and growth initiatives by defining differentiated autonomy and RF capabilities, assessing technical feasibility, shaping solution architectures, and supporting customer facing technical engagements.
Required qualifications:
• Bachelor’s degree in Electrical Engineering, Computer Engineering, Aerospace Engineering, Applied Mathematics, Physics, Computer Science, or a related technical discipline.
• 15 or more years of professional experience in autonomy, radar, RF sensing, signal processing, guidance and navigation, sensor fusion, aerospace systems, robotics, or related complex technical fields.
• Demonstrated technical leadership for the architecture, development, integration, and fielding of advanced autonomous, RF sensing, radar, electronic warfare, avionics, aerospace, or defense systems.
• Expert knowledge of radar and RF signal processing, including waveform design, adaptive processing, beamforming, direction finding, target detection and tracking, clutter modeling, interference mitigation, and performance assessment.
• Experience developing and validating algorithms through high fidelity end to end simulation, including sensor models, RF environmental models, vehicle dynamics, 6 degree of freedom simulation, and operationally representative scenarios.
• Demonstrated experience translating mission needs into system and subsystem requirements, performance allocations, interface definitions, algorithm specifications, verification plans, and test objectives.
• Substantial hands on experience with MATLAB and Python, along with experience developing or transitioning algorithms into C, C++, real time DSP, embedded computing, or hardware accelerated environments.
• Experience leading technical teams, mentoring engineers, driving design reviews, and resolving complex cross functional technical issues involving software, hardware, systems engineering, simulation, integration, and test.
• Strong communication skills and demonstrated ability to influence senior technical leaders, program leaders, external customers, and executive stakeholders through clear technical recommendations and evidence based decisions.
• Ability to obtain and maintain a U.S. government security clearance.
Preferred qualifications:
• Master’s degree or PhD in Electrical Engineering, Computer Engineering, Aerospace Engineering, Applied Mathematics, Physics, or a related technical field, with emphasis in radar, RF systems, signal processing, control systems, autonomy, estimation, or optimization.
• Experience leading radar seeker, RF sensing, autonomy, guidance, navigation, or electronic warfare capability development from early research through system design, critical design review, qualification, test, and production or operational deployment.
• Expertise in advanced adaptive signal processing techniques, including space time adaptive processing, adaptive beamforming, optimal estimation, multi sensor tracking, waveform optimization, mismatched filtering, cognitive sensing, or machine learning enabled signal processing.
• Experience with electronic warfare and electronic protection algorithm development, including interference modeling, jam
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