Full-Time
Space systems research, design, and advisory
$95.2k - $165.5k/yr
No H1B Sponsorship
El Segundo, CA, USA
In Person
On-site at El Segundo, CA; occasional travel up to 10%.
US Citizenship, US Top Secret Clearance Required
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The Aerospace Corporation helps national security space programs through technical and scientific research, development, and advisory services. It provides engineering and acquisition management support to the Air Force, other Defense Department agencies, and civilian agencies. Its work covers launch system design and analysis, engineering, development, implications, and application, helping programs go from concept to tested systems. The company differentiates itself by focusing specifically on government space programs, offering independent technical expertise and mission-focused advisory services with a long history dating back to 1960, rather than competing primarily as a commercial contractor. Its goal is to enable reliable and secure space capabilities for national security by informing and guiding government programs from research through deployment.
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Headquarters
El Segundo, California
Founded
1960
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Health Insurance
Paid Vacation
Paid Sick Leave
Paid Holidays
401(k) Retirement Plan
401(k) Company Match
Flexible Spending Account
Relocation Assistance
Professional Development Budget
AI in space: how autonomy is reshaping the final frontier. In January 2026, an artificial intelligence (AI) tool analyzed nearly 100 million Hubble Space Telescope images and identified more than 800 cosmic anomalies that had remained hidden for potentially 35 years - completing the search in just two and a half days. That kind of discovery marks a turning point for AI in space. The technology is becoming an active layer of mission support - helping spacecraft navigate, satellites monitor their own health, crews receive support, and scientists uncover patterns that were previously out of reach. This article explores where AI is already transforming space operations, what opportunities and risks it creates for the industry, and what these changes demand from the engineers responsible for building safe, secure, and mission-ready systems. Spacecraft autonomy and deep space exploration. In deep-space missions, autonomy does not replace human expertise - it extends it. As spacecraft operate farther from Earth, AI can help teams manage distance, delay, and uncertainty by enabling systems to respond more intelligently between ground commands. Autonomous navigation. NASA's Perseverance rover, which has been exploring Mars since 2021, is already demonstrating that shift. Its driving is now 88% autonomous, using onboard computer vision to identify hazards and navigate without constant ground input. Earlier this year, it went further, completing the first Mars drives planned end-to-end by generative AI, with no human route planners creating the waypoints. That same shift is shaping other missions, too. The European Space Agency's (ESA's) Hera spacecraft is designed to autonomously navigate around the Didymos-Dimorphos asteroid system, using visual tracking, lidar-based altimeter readings, inertial sensors, and star-tracker measurements to understand its position and operate safely in a complex, low-gravity environment. Astronaut assistants. As missions move farther from Earth, crews will need AI support inside the spacecraft, too. Communication delays and blackouts can make real-time medical or operational help from Earth difficult when immediate guidance is needed. Google and NASA's Crew Medical Officer Digital Assistant (CMO-DA) addresses that challenge directly. The multimodal AI system is trained on spaceflight medical literature to help crews diagnose and treat symptoms without physician contact. AI-enabled crew support is also advancing through robotics. On the International Space Station (ISS), Stanford researchers used machine learning to improve motion planning for Astrobee, NASA's free-flying robotic assistant, reducing autonomous movement planning time by 50-60%. Spacecraft health. Mega-constellations make manual satellite health monitoring impossible at scale. With the satellite count projected to grow from roughly 15,000 today to 100,000 by 2030, operators need AI systems that can analyze telemetry, flag anomalies, predict component failures, and assess fuel margins before issues disrupt operations. In April, The Aerospace Corporation and Google Public Sector announced a proof-of-concept AI tool for constellation operations designed to handle the high-velocity demands of modern space domain awareness while helping on-call engineers to "focus their expertise where it matters most," according to Kevin Bell, senior vice president of Aerospace's Engineering and Technology Group. Space-Based data processing and discovery. A growing data bottleneck. As the number of satellites in orbit increases, space missions are producing more data than traditional ground-based workflows can process quickly. NASA's Earth observation archive has already crossed 100 petabytes (PB) and is projected to reach 320 PB by 2030, while Europe's Copernicus program holds more than 78 PB. At that scale, the challenge is not just collecting data - it is moving, filtering, and interpreting it fast enough to support time-sensitive use cases like disaster response and large-scale scientific discovery. AI at the edge. Prithvi predicted burn scar impacts from the Gifford Fire near Los Angeles (August 17, 2025). (Photo/Courtesy: NASA) One solution is edge computing: By running edge AI directly on satellites and connecting it with cloud-to-edge workflows on the ground, space systems can process data closer to where it is collected instead of routing everything back to Earth for analysis. In May, researchers from Adelaide University, ESA's Φ-lab, and Thales Alenia Space deployed NASA and IBM's Prithvi geospatial AI foundation model into orbit, validating it aboard the ISS and the Kanyini satellite. By supporting tasks like flood mapping, cloud detection, burn scar identification, and disaster monitoring onboard, Prithvi helps move satellite data from observation to actionable intelligence in near-real time. Cosmic discovery. AI is also changing how scientists search the universe. AnomalyMatch, an AI-powered discovery tool designed to identify unusual objects in astronomical image archives, used an unsupervised neural network to scan the Hubble Legacy Archive and surface more than 800 previously undocumented objects - including gravitational lenses, galaxy mergers, and unclassified anomalies - that manual review could not have found at that scale. As missions like Euclid, the Vera C. Rubin Observatory, and the Nancy Grace Roman Space Telescope generate even larger datasets, AI-assisted discovery will become essential to the science pipeline. NASA's ExoMiner++ model is applying a similar approach to Transiting Exoplanet Survey Satellite (TESS) data, using AI to sift through brightness measurements and help scientists identify promising planet candidates more efficiently than manual review alone. The new frontier: orbital data centers. As demand for AI processing grows, companies are beginning to look at orbit as a potential answer to the power, cooling, and scaling limits facing terrestrial data centers. In January, SpaceX filed plans with the FCC for up to one million orbital data center satellites operating between 500 km and 2,000 km. The proposed architecture would rely on solar power, radiative cooling, and high-bandwidth optical links through Starlink to support AI workloads in orbit. SpaceX has framed orbital data centers to meet accelerating AI compute demand, with projections of up to 100 gigawatts of annual orbital compute additions if Starship becomes fully reusable at scale. The concept is still highly experimental. Other organizations, including ESA-backed initiatives, Axiom Space, Starcloud, and Google's Project Suncatcher, are exploring related ideas, but major barriers remain around radiation, latency, debris, servicing, cost, and commercial viability. Still, the direction is significant: What was once a speculative space concept is now being evaluated as a potential response to the power, cooling, and scale constraints facing data centers on Earth. Governance and cybersecurity. Autonomous spacecraft, orbital data centers, and AI-enabled satellite operations can improve speed and resilience, but they also introduce new risks around system access, decision authority, accountability, and trust. The answer is not to avoid AI, but to deploy it responsibly - with secure software practices, defined decision boundaries, decision logging, risk-based safety assessments, and clear human oversight. For organizations building mission-critical space systems, partners like Performance can help bring the engineering discipline, cybersecurity focus, and high-assurance practices needed to use AI safely and effectively. What comes next. The space economy reached $613 billion in 2024 and is projected to grow to $1.8 trillion by 2035. Realizing that growth will require AI systems that can operate reliably in mission-critical environments, where failure carries technical, financial, and operational consequences. Success will depend on more than AI adoption - it will depend on engineering workflows that can move faster while maintaining the discipline aerospace and defense (A&D) programs require. Performance develops mission-critical software for commercial aviation, space, and defense programs. Its AI-first workflows are built with governance and guardrails from the start, combining elite engineering talent with AI-assisted development at scale to deliver secure, certifiable systems faster - without compromising assurance. Ready to move at the speed of AI while maintaining the rigor your program demands? Performance Software Corporation 25500 N Norterra Pkwy Suite 300 Phoenix, Arizona 85085 +1 623-780-1517
Aerospace Corp., Google Public Sector deploy AI tool to cut satellite anomaly response time. The Aerospace Corp. and Google Public Sector are collaborating to modernize satellite operations using agentic AI, the companies announced. The two co-developed a proof-of-concept tool to help operators and engineers manage the growing complexity of Proliferated Low Earth Orbit constellations - networks of small satellites that enable faster communication and broader global coverage. As constellations scale from dozens to thousands of satellites, the volume and velocity of data makes it harder to catch critical signals. Engineers currently monitor separate screens tracking bus telemetry, payload status and ground network availability. When an anomaly hits, on-call staff spend critical minutes manually correlating data to determine whether an alarm is a genuine threat. Aerospace built the tool with Google Public Sector's Rapid Innovation Team on Google Cloud's Vertex AI platform. It fuses disparate telemetry streams into a single interface and moves beyond static threshold alarms toward predictive behavioral monitoring, flagging issues like a momentum wheel that oscillates only when a specific payload is active, before they escalate to component failure. The system also correlates anomalies with context such as recent payload tasks or space weather events and surfaces potential root causes. "This concept demonstrates how AI can be a critical operational partner capable of handling the high-velocity demands of modern space domain awareness, helping on-call engineers focus their expertise where it matters most," said Kevin Bell, senior vice president of Aerospace's Engineering and Technology Group. "Collaborations like this are an important part of Aerospace's ongoing work to build connections with industry and accelerate the adoption of innovative technologies to support national priorities in space." Cameron Groves, director of rapid innovation & specialist engineering at Google Public Sector, said the collaboration marks a milestone in bringing Google's AI capabilities to space operations. "This pathfinding effort demonstrates that by equipping engineers with the right data at the right time, we can help transform the operator experience from reactive firefighting to proactive problem-solving to accelerate operations," he added. "We look forward to seeing this transition from a concept into operational use."
Orbotic Systems has secured a commercial licence agreement with The Aerospace Corporation to use DiskSat technology for very low Earth orbit operations. The company plans to use the disc-shaped satellite platform to host its WIND sensor pathfinder for technical assessment and mission planning. DiskSat is a lightweight, flat satellite designed to optimise rideshare launches and enable cost-effective constellation deployment. The Aerospace Corporation successfully launched DiskSats last month, which are now demonstrating the platform's capabilities in orbit. Erik Long, Orbotic Systems' CEO, said DiskSat's geometry makes it compelling for very low Earth orbit operations. The companies will coordinate technical documentation transfer and interface planning, though specific mission timelines and launch services remain unconfirmed. Orbotic Systems focuses on space systems for mission assurance and space environment sensing.
Orbotic Systems executes commercial license for Aerospace DiskSat technology. Disksat Satellites orbiting earth Orbotic Systems has entered into a manufacturing and distribution agreement with Aerospace Corporation to commercialize DiskSats. THOUSAND OAKS, CA, UNITED STATES, February 5, 2026 /EINPresswire.com/ - Orbotic Systems Inc. (OSI) announced today that it has entered into a commercial license agreement with The Aerospace Corporation, a leader in advancing national space capabilities, for the use of its DiskSat technology. OSI plans to use the DiskSat form factor as a host spacecraft for a Very Low Earth Orbit (VLEO) sensor pathfinder, including integration studies for its WIND (Wind Ion Neutral Density) sensor. The effort is intended to support technical assessment and future mission planning related to VLEO operations. "DiskSat is a compelling host platform for VLEO operations due to its geometry and mission flexibility," said Erik T. Long, CEO of Orbotic Systems. "This license allows us to move forward with a focused pathfinder configuration and collaborate with The Aerospace Corporation on technical planning." DiskSat, developed by The Aerospace Corporation is a lightweight, compact, flat disc-shaped satellite designed for optimizing future rideshare launches. Its unconventional shape offers a variety of new possibilities for cost-effective and rapid constellation deployment, packing efficiency, and mass distribution. Following a successful launch last month, the DiskSats are now in orbit, beginning mission demonstrations that showcase the potential of this new satellite form factor. According to Deb Salvaggio, Aerospace's Director of Technology Transfer, "It has always been our plan for DiskSat to be transitioned to industry as quickly as possible. We are excited to work with Orbotic Systems as a valued partner." The parties expect to coordinate next steps including technical documentation transfer and interface planning. Specific mission timelines, launch services, and customer sponsorship are not yet finalized. About Orbotic Systems Inc. Orbotic Systems Inc. (OSI) produces space systems focused on mission assurance, on-orbit operations, and space environment sensing. OSI's work includes edge computing concepts for operational decision aids and sensors relevant to space weather and VLEO mission performance. Learn more: orboticsystems.com Media Contact: Jane Ielmini, COO, [email protected], (805) 941-1028 ext. 4 About The Aerospace Corporation: The Aerospace Corporation is a leading architect for the nation's space programs, advancing capabilities that outpace threats to the country's national security while nurturing innovative technologies to further a new era of space commercialization and exploration. Aerospace's national workforce of more than 4,800 employees provides objective technical expertise and thought leadership to solve the hardest problems in space and assure mission success for space systems and space vehicles. For more information, visit www.aerospace.org. Follow us on LinkedIn and X: @AerospaceCorp. Jane Ielmini Orbotic Systems Inc +1 805-941-1028 [email protected] Visit us on social media: LinkedIn Instagram Facebook YouTube X Legal Disclaimer: EIN Presswire provides this news content "as is" without warranty of any kind. We do not accept any responsibility or liability for the accuracy, content, images, videos, licenses, completeness, legality, or reliability of the information contained in this article. If you have any complaints or copyright issues related to this article, kindly contact the author above.
Aerospace taps Steve Shinn as VP, CFO. The Aerospace Corp. has appointed Steve Shinn as vice president and chief financial officer. Shinn brings over 25 years of experience in leading financial operations and driving enterprise transformation in government and industry. "Steve is the ideal leader as we emphasize operational excellence that maximizes our value and empowers our team to effectively deliver on our critical mission," said Aerospace President and CEO Tanya Pemberton. "He brings strategic vision, experience in day-to-day financial operations, proven transformation leadership at large-scale organizations, and a passion for space." Shinn recently served as acting chief financial officer at NASA during the presidential transition, where he oversaw all financial management and performance activities relating to NASA's programs and operations across a $25 billion-plus annual portfolio. During his 15-year career at NASA, Shinn was deputy CFO, deputy CFO for Center Operations and CFO at NASA Goddard Space Flight Center. Before NASA, he oversaw all business and project control functions and annual business planning for the Space Department at Johns Hopkins University Applied Physics Laboratory. "Over the past several years, Aerospace has undertaken a significant modernization of our business functions and financial tools," said Chief Operating Officer Kathleen Naeher. "I look forward to working with Steve as we continue this journey and integrate enterprise services across the company to support the mission."