NASA NTRS · 20220017189
The Initial Orbit Determination (IOD) Problem With Range, Range-Rate and Angles
Abstract
The Initial Orbit Determination (IOD) problem has been tacked since Laplace, Euler and Gauss in the service of determining the orbits of planets, asteroids, and comets. The measurements that established the orbit characteristics were angles over long arcs.1 The Space Age brought two new measurement types to bear: range and range-rate.2, 3 Initially these measurements were provided by radars through skin-tracking. Soon, however, transponders allowed better measurement accuracy and availability. To date, there are three types of IOD problems: angles only, range and angles, and range and range-rate. The Orion program exposed the need for an additional capability in the case of an extended loss of communication: when the measurements included antenna angles (azimuth and elevation or right-ascension and declination), range and range-rate. This paper contains the details of this new methodology. We will begin with state determination with range, range-rate and angle measurements. First the state estimate, given a sequence of these four time-synchronized measurements, will be analytically developed. Next the covariance matrix associated with this state estimate will be analytically developed. Finally, these will be verified by Monte Carlo simulations.
Keep this discovery
Explore connections, maps & timelines
Christopher D’Souza, Renato Zanetti. The Initial Orbit Determination (IOD) Problem With Range, Range-Rate and Angles. https://ntrs.nasa.gov/citations/20220017189
Cite the original work for its findings. Save a collection to share your selection of sources.