Senior Robotics Software Engineer, Perception
Los Angeles, CA·Posted 18d ago
airoboticsrust
<div class="content-intro"><p>Parallel Systems is pioneering autonomous battery-electric rail vehicles designed to transform freight transportation by shifting portions of the $900 billion U.S. trucking industry onto rail. Our innovative technology offers cleaner, safer, and more efficient logistics solutions. Join our dynamic team and help shape a smarter, greener future for global freight.</p></div><p><span data-contrast="none">Parallel Systems is seeking a Senior Robotics Software Engineer to develop the perception and sensor fusion algorithms that let our fully autonomous, battery-electric rail vehicles understand the world around them in real time. In this role, you'll design and implement geometry-based computer vision and robotics algorithms alongside ML/learned-based methods, fuse high-throughput data from lidar, camera, IMU, and GPS sensors, and validate that the resulting system runs reliably around the clock in the field. You'll work closely with ML, firmware, embedded platform, and systems engineers to take sensor selection, calibration, and real-time fusion from first principles through production deployment. If you like working close to the math, the sensors, and the real world all at once, we'd love to work with you.</span><span data-ccp-props="{"134245418":true,"134245529":true}"> </span></p> <p><strong><span data-contrast="none"><span data-ccp-parastyle="heading 3">Responsibilities</span></span></strong><span data-ccp-props="{"134233117":false,"134233118":false,"134245418":true,"134245529":true,"335559738":281,"335559739":281}"> </span></p> <ul> <li><span data-contrast="auto">Build and maintain real-time robotics software that ingests and fuses high-throughput, multi-modal sensor data from lidar, camera, IMU, GPS, and other sensors.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Implement, validate, and test real-time sensor fusion code across simulation and real-world deployments, catching regressions before they reach the field.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Perform sensor calibration (intrinsic, extrinsic, temporal) and apply a strong foundation in linear algebra, 3D geometry, and optimization (e.g., Kalman/particle filters, non-linear optimization) to state estimation problems.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="none">Design and implement geometry-based computer vision and robotics algorithms (multi-view geometry, filtering, tracking) for real-time perception; experience with ML-based approaches is a bonus.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Evaluate sensor selection and system-level tradeoffs, and define test and validation plans that prove the system can run reliably 24/7 in production.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Contribute to sensor system hardware design, including IP-rated, ruggedized enclosures and mounts built to hold up in real-world field conditions.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Build and maintain sensor pipelines for real-time sensor and video data streaming and processing.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Collaborate with ML, firmware, embedded platform, and systems engineering teams to integrate perception algorithms into the full autonomy stack.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> </ul> <p><strong><span data-contrast="none"><span data-ccp-parastyle="heading 3">What Success Looks Like:</span></span></strong><span data-ccp-props="{"134233117":false,"134233118":false,"134245418":true,"134245529":true,"335559738":281,"335559739":281}"> </span></p> <ul> <li><strong><span data-contrast="none">After 30 Days: </span></strong><span data-contrast="none">You've developed a solid understanding of our current perception architecture, sensor suite (lidar, camera, IMU, GPS), and calibration and fusion pipeline. You've reviewed the state estimation and tracking algorithms end-to-end and identified concrete opportunities to improve accuracy, robustness, or performance.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><strong><span data-contrast="none">After 60 Days: </span></strong><span data-contrast="none">You've designed and landed improvements to a sensor fusion, state estimation, or tracking algorithm, and contributed to sensor calibration procedures. You've built a proof of concept demonstrating measurable gains in accuracy or robustness.</span><span data-ccp-props="{"134233117":false,"134233118":false,"201341983":0,"335551550":1,"335551620":1,"335559737":0,"335559738":240,"335559739":240,"335559740":279}"> </span></li> <li><strong><span data-contrast="none">After 90 Days: </span></strong><span data-contrast="none">You own a perception or sensor fusion subsystem end-to-end, with an algorithm delivering measurable, validated improvements in accuracy, robustness, or real-time performance. You've contributed to sensor selection or system-level tradeoffs with clear impact on overall perception capability.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> </ul> <p><strong><span data-contrast="none"><span data-ccp-parastyle="heading 3">Basic Requirements:</span></span></strong><span data-ccp-props="{"134233117":false,"134233118":false,"134245418":true,"134245529":true,"335559738":281,"335559739":281}"> </span></p> <ul> <li><span data-contrast="none">Bachelor's or higher degree in Robotics, Computer Science, Electrical Engineering, or a related technical discipline; equivalent experience considered.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">4+ years of hands-on experience developing and deploying robotics or perception software in real-world systems.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Strong background designing and implementing geometry-based computer vision and robotics algorithms (multi-view geometry, filtering, optimization); ML-based experience is a bonus.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Proficiency in Rust and C/C++.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Experience with real-time systems handling high-throughput, multi-modal sensor data and fusion across lidar, camera, IMU, and GPS.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> </ul> <p><strong><span data-contrast="none"><span data-ccp-parastyle="heading 3">Preferred Qualifications:</span></span></strong><span data-ccp-props="{"134245418":true,"134245529":true,"335559738":160,"335559739":80}"> </span></p> <ul> <li><span data-contrast="auto">Experience implementing and testing real-time sensor fusion code, including validation methodology.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Experience with sensor calibration and/or a strong foundation in math and optimization algorithms (Kalman/particle filters, non-linear optimization, 3D geometry).</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Ability to evaluate sensor selection and system-level tradeoffs, and to define test and validation plans that prove robust, round-the-clock production operations.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Excellent communication and collaboration skills, with experience working on interdisciplinary teams.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Experience with sensor fusion, localization/SLAM, and/or online calibration.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="none">Experience with GStreamer for real-time pipeline development.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Publications in top-tier robotics conferences (e.g., ICRA, IROS, RSS, CoRL) or related journals.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Hardware experience building IP-rated, ruggedized robotic systems and designing real-world robotic platforms.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Experience with ROS2 or similar robotics middleware.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> <li><span data-contrast="auto">Background in autonomous vehicles, field robotics, or other safety-critical domains.</span><span data-ccp-props="{"134233117":false,"134233118":false,"335559738":240,"335559739":240}"> </span></li> </ul><div class="content-pay-transparency"><div class="pay-input"><div class="description"><p><span style="font-size: 12px;"><em>We are committed to providing fair and transparent compensation in accordance with applicable laws. Salary ranges are listed below and reflect the expected range for new hires in this role, based on factors such as skills, experience, qualifications, and location. Final compensation may vary and will be determined during the interview process. The target hiring range for this position is listed below.</em></span></p></div><div class="title">Target Salary Range:</div><div class="pay-range"><span>$163,000</span><span class="divider">—</span><span>$212,000 USD</span></div></div></div><div class="content-conclusion"><p><span style="font-size: 10pt;"><em>Parallel Systems is an equal opportunity employer committed to diversity in the workplace. All qualified applicants will receive consideration for employment without regard to any discriminatory factor protected by applicable federal, state or local laws. We work to build an inclusive environment in which all people can come to do their best work.</em></span></p> <p><span style="font-size: 10pt;"><em>Parallel Systems is committed to the full inclusion of all qualified individuals. As part of this commitment, Parallel Systems will ensure that persons with disabilities are provided reasonable accommodations. If reasonable accommodation is needed to participate in the job application or interview process, to perform essential job functions, and/or to receive other benefits and privileges of employment, please contact your recruiter.</em></span></p></div>