- 高雄市, 台灣 台灣
Working Location
Job Description
Responsibilities
At Hyarks, our autonomous surface vessels (USVs) work in tandem with aerial systems (UAVs) to extend sensing, communication, and operational reach in complex maritime environments. We are looking for a UAV Engineer to take full ownership of our USV–UAV coordination logic and make multi-agent operations truly bulletproof.
In this role, you will be the technical lead for the air component of our systems, bridging simulation and field reality.
Simulation & Pipeline Development: Build, stress-test, and benchmark the USV–UAV coordination pipeline in simulation; systematically identify failure modes and validate challenging edge cases.
Hardware Integration & Field Tuning: Transition software pipelines from simulation directly to physical drone hardware; tune, iterate, and validate system reliability under real-world maritime conditions.
Full-Stack Drone Autonomy: Configure flight controllers, develop robust mission logic, refine state estimation, and build reliable communication and interface layers between surface and aerial platforms.
Cross-Disciplinary Collaboration & Technical Ownership: Partner closely with controls and software engineering teams while owning technical decision-making and architectural direction for the UAV stack.
Hands-on UAV Experience: Proven track record of developing, configuring, and deploying software on physical UAV platforms (not just in simulation).
Autopilot Ecosystems: Strong hands-on experience with PX4 or ArduPilot (including configuration, PID tuning, and custom module/driver development).
Robotics & Middleware: Proficiency with ROS / ROS 2 for system integration, along with a solid grasp of flight controller architectures and MAVLink protocol communication.
Software Development: Solid programming proficiency in C++ and Python.
Simulation-to-Hardware Workflow: Experience building and working in simulation environments (e.g., Gazebo, AirSim, or similar) and successfully porting models and controllers to actual flight hardware.
Systematic Debugging: Demonstrated ability to root-cause, diagnose, and resolve reliability and fail-safe issues in autonomous systems under tight iteration cycles.
Relative Navigation & Precision Landing: Experience with vision-based relative navigation, visual servoing, or autonomous precision landing on dynamic/moving platforms.
Perception & Spatial Transforms: Hands-on experience with onboard perception pipelines and 3D coordinate frame transformations.
Multi-Agent Systems: Background in multi-robot coordination, cooperative robotics, or distributed communication schemes.
Challenging Environments: Familiarity with GNSS-denied navigation, state estimation fusion (EKF/UKF), or robust RF link management in marine/offshore environments.
優於勞基法的休假制度:入職即享有特休比例天數,重視身心平衡,鼓勵充分休息。
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