A polynomial optimization method with reduced-order weighting and zero-solution avoidance achieves roughly three orders of magnitude better accuracy in angles-only initial relative orbit determination than baseline approaches.
Initial Orbit Determination of Periodic Orbits in the Earth-Moon System with Ground-based Optical Observations
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Robust Angles-Only Initial Relative Orbit Determination Using Polynomial Optimization
A polynomial optimization method with reduced-order weighting and zero-solution avoidance achieves roughly three orders of magnitude better accuracy in angles-only initial relative orbit determination than baseline approaches.