Software Engineer I, Spacecraft Simulation (New Grad)

True AnomalyLong Beach, CA
$80,000Hybrid

About The Position

Software is the central nervous system for True Anomaly's engineering and product thesis. Software bridges the gap between military objectives, theoretical physics, and the human and autonomous control of spacecraft and ground systems. True Anomaly is seeking an entry-level Spacecraft Simulation Software Engineer to help build and extend our spacecraft, constellation modeling, and simulation software with a focus on multi-physics, high-fidelity simulation. This is a great opportunity for a recent graduate or early-career engineer to grow within a fast-paced, interdisciplinary team. You will learn from experienced engineers as you help develop algorithms for modeling complex coupled physics including 6-degree-of-freedom (6DOF) rigid body dynamics, thermal systems, attitude dynamics and control, power systems, propulsion, and their interactions. You'll contribute to the simulation infrastructure that enables engineers to design spacecraft, validate control algorithms, analyze system performance, and predict mission outcomes with high confidence.

Requirements

  • Bachelor's degree in aerospace engineering, mechanical engineering, computer science, physics, a similar discipline, or equivalent practical experience
  • Exposure to C++ (or a similar compiled language) through coursework, internships, personal projects, or research; familiarity with Python is a plus
  • Foundational understanding of object-oriented software development practices, software testing practices, data structures and algorithms, and software design patterns
  • Eagerness to learn quickly, ask questions, and take on new challenges with support from the team
  • Excellent problem-solving skills and attention to detail
  • U.S. Citizen and eligible for DoD Secret or TS/SCI clearance

Nice To Haves

  • Internship, co-op, research, or project experience with physics-based modeling and simulation (i.e., modeling spacecraft dynamics, thermal systems, or control algorithms)
  • Coursework or project exposure to numerical methods
  • Familiarity with spacecraft subsystems: Attitude determination and control systems (ADCS), Guidance, navigation, and control (GNC), Thermal control systems, Electric power systems (EPS), Propulsion systems
  • Understanding of coordinate frames and transformations (ECI, ECEF, body frame, etc.)
  • Exposure to quaternion mathematics and rotation representations
  • Introductory knowledge of orbital mechanics and perturbation forces
  • Awareness of model validation, verification, and uncertainty quantification concepts
  • Experience with version control systems (Git); exposure to CI/CD pipelines a plus

Responsibilities

  • Write well-structured, efficient code using modern C++ (C++ 17 / C++ 20), with attention to performance and maintainability, guided by code reviews and team standards
  • Contribute to multi-physics simulation libraries for spacecraft systems modeling, including: 6DOF rigid body dynamics with environmental perturbations (gravity gradient, solar radiation pressure, atmospheric drag, magnetic torques), Thermal modeling including conduction, radiation, and solar heating, Attitude dynamics and control system simulation, Propulsion system modeling (thrusters, tanks, mass properties), Power generation and distribution (solar arrays, batteries, loads), Sensor and actuator models (reaction wheels, star trackers, gyros, magnetometers, thrusters)
  • Help implement coupled physics algorithms that capture interactions between subsystems (thermal-structural, power-thermal, propulsion-dynamics, etc.), with guidance from senior engineers
  • Assist in developing and testing time-stepping algorithms, solvers, and integration schemes for real-time and faster-than-real-time simulation
  • Help maintain libraries that provide APIs in multiple languages (Python, C++) to other applications within True Anomaly
  • Collaborate with other internal teams who leverage our simulation APIs to plan and execute missions, develop algorithms for spacecraft operation, and perform trade-space analyses
  • Participate in code reviews, architectural discussions, and sprint planning sessions, learning and applying our software quality standards and delivery practices

Benefits

  • Potential to convert to regular employment based on performance and business need
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