Optical Sensing and Instrumentation
Optical transient detection, interferometry, ladar, test planning, and instrument support for programs that require robust measurement and system-level understanding.
Los Angeles, California, USA
Engineering and physics services for advanced optical instruments, observatory systems, and scientific data pipelines.
Astrometric Scientific supports scientific, aerospace, and government missions with experience across optical sensing systems, automated observatories, and high-performance data-processing pipelines. Our work includes synthetic tracking, optical transient detection, GPU-accelerated image processing, interferometry, ladar, CMOS detector characterization & calibration, instrumentation support, reporting workflows for demanding technical programs, and high-performance compute solutions for space-based optical systems.
Astrometric Scientific, LLC provides engineering and physics services for optical systems, scientific imaging, space-domain awareness, and observatory operations. The company supports scientific, aerospace, and government missions involving advanced sensing systems, automated data collection, image analysis, calibration, and mission-focused reporting workflows.
Experience includes asteroid discovery and reporting to the IAU Minor Planet Center using synthetic tracking, satellite detection and tracking in MEO, GEO, and cislunar regimes, optical transient detection, GPU-accelerated image processing, interferometric systems, ladar, CMOS detector characterization and calibration, scientific instrumentation support, and end-to-end automation of observatory hardware and software workflows.
Astrometric Scientific develops and evaluates compute solutions for optical systems operating in space and on the ground, including detection algorithms, performance modeling, calibration methods, and high-throughput data-processing pipelines. The company also provides technical advisory services to the U.S. Government and mission partners in optical sensing, observatory operations, and aerospace instrumentation.
Optical transient detection, interferometry, ladar, test planning, and instrument support for programs that require robust measurement and system-level understanding.
Automated observatory construction, hardware integration, operations workflows, and reporting pipelines for reliable end-to-end mission support.
Motion-compensated integration, detection pipelines, and analysis methods for faint-object discovery in low-signal, high-background, or otherwise challenging imaging conditions.
Precision position estimation, orbit estimation workflows, and asteroid discovery reporting prepared for IAU Minor Planet Center submission.
High-throughput image calibration, filtering, registration, search, and detection pipelines tuned for scientific, aerospace, and compute-intensive sensing applications.
CMOS detector characterization, calibration planning, and performance assessment for imaging systems where detector behavior affects measurement quality.
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