Job Details
NIWC - Graduate Student I - UAV/ Robotic Design, Development, and Integration Project (Task No. [contact details available in the full listing])
Req No: 2026-20457
Category: Other
Type: Student
Salary: 22.84
Close Date:
Overview
The hourly rate for this position is $22.84 per hour for Graduate Student I and is non-negotiable.
This position is open until filled
Under direction, incumbents must have course work in the discipline requested on the task order Statement of Work.
This Statement of Work outlines the need for student services in the design, development, and integration of UAV and Robotic systems. The student will apply advanced engineering principles to develop UAV and Robotic prototypes, integrate UAV systems, and conduct performance assessments. The work involves using cutting-edge tools for unmanned system design, control systems development, sensor integration, and flight and field testing.
The RESTORE project aims to research and develop UAV systems and robotics capable of performing complex missions in various operational environments. This initiative is crucial to advancing unmanned capabilities within the Navy and DOD, ensuring that the systems developed are reliable, efficient, and meet operational requirements. The student will work closely with a multidisciplinary team to explore innovative unmanned solutions, focusing on both hardware and software components.
Responsibilities
The student contractor shall provide analytical and technical support in the following areas as specified under individual task orders, to the work sponsor:
UAV/Robotic Design and Development:
- Assist with the conceptual and detailed design of UAV airframes using CAD software.
- Assist with the assembly, testing, and troubleshooting of UAV/Robotic prototypes.
- Contribute to the development of autonomous flight control algorithms, including path planning, obstacle avoidance, and decision-making systems.
- Support the integration of sensors and payloads into unmanned platforms, ensuring compatibility and optimized performance.
- Assist with the development and testing of unmanned systems in simulated and real-world environments, including the setup of test protocols, data collection and analysis.
- Participate in the design and implementation of ground control systems for UAV operation and monitoring.
- Aid in the development of AI-based solutions for enhancing autonomy, including machine learning techniques for real-time decision making.
- Assist in the development of communication systems for UAV-to-UAV and UAVto-ground station data transmission.
- Develop and sustain software for UAV/Robotic control and mission planning, ensuring robust and secure operation.
- Assist in ensuring UAV/Robotic compliance with relevant safety and regulatory standards.
Qualifications
Graduate Student 1: Under general direction, incumbents must be enrolled in a masters degree program related to the required discipline requested on the task order statement of work. Under general direction, incumbents must be enrolled in a masters degree program related to the required discipline requested on the task order statement of work.
Minimum Qualifications Requirements:
Graduate Level 1: Electrical Engineering, Computer Science, Aerospace Engineering, Mechanical Engineering, or related field with coursework or experience relevant to UAV design and development.
Desired Coursework and/or relevant work experience:
- UAV Design and Development
- Autonomous Systems
- Control Systems Engineering
- Robotics
- AI and Machine Learning
- Sensor Integration
- Computer Vision
- Embedded Systems
- Power Systems
Additional Qualifications Desired:
- Experience with CAD software for UAV design (e.g., SolidWorks, CATIA)
- Proficiency in programming languages such as Python, C++, or MATLAB
- Knowledge of AI/ML techniques applied to autonomy
- Familiarity with UAV simulation tools (e.g., Gazebo, ROS)
- Experience with UAV flight control systems and autopilot software (e.g., PX4, ArduPilot)
- Experience in integrating hardware and software components into UAV systems
- Experience with communication protocols for UAV systems (e.g., MAVLink)
- Strong analytical and problem-solving skills
- Ability to work independently and in team settings
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