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Candidates need a Bachelor’s degree in electrical engineering, physics, computer science, or related field, experience in SAR digital signal processing and algorithm development, excellent teamwork and communication skills, ability to learn new concepts rapidly in a self-directed manner, high self-motivation, and proficiency in Python, C/C++, or MATLAB.
Preferred skills include an advanced degree with emphasis in radar image formation, familiarity with SAR image formation algorithms, SAR collection modes and motion compensation, deploying radar algorithms into production pipelines, modern software development practices, SAR collection geometries, SAR interferogram processing, tomographic aspects of SAR, and multi-dimensional inverse SAR optimization methods.
This information is not specified in the job description.
This information is not specified in the job description.
Applicants must be a U.S. citizen, lawful permanent resident of the U.S., protected individual as defined by 8 U.S.C. 1324b(a)(3), or eligible to obtain the required authorizations.
Provides high-resolution 3D geospatial imagery
Array Labs specializes in creating high-quality 3D imagery using a network of small satellites called radar cubesats. These satellites work together to capture images of the same area from different angles, resulting in 3D images that are significantly more detailed than other options available. The company serves various clients, including government agencies and urban planners, who need accurate imagery for tasks like mapping and disaster response. Array Labs operates on a subscription model, allowing clients to access its continuously updated imagery data. Additionally, they offer a pilot program for early access customers to help refine their product based on user feedback. Their unique satellite system enables them to capture large areas quickly, providing timely data regardless of weather or terrain conditions. The goal of Array Labs is to enhance the geospatial imaging industry by offering cost-effective and precise 3D imagery solutions.