NASA NTRS · 19920056932
Differential tracking data types for accurate and efficient Mars planetary navigation
Abstract
Ways in which high-accuracy differential observations of two or more deep space vehicles can dramatically extend the power of earth-based tracking over conventional range and Doppler tracking are discussed. Two techniques - spacecraft-spacecraft differential very long baseline interferometry (S/C-S/C Delta(VLBI)) and same-beam interferometry (SBI) - are discussed. The tracking and navigation capabilities of conventional range, Doppler, and quasar-relative Delta(VLBI) are reviewed, and the S/C-S/C Delta (VLBI) and SBI types are introduced. For each data type, the formation of the observable is discussed, an error budget describing how physical error sources manifest themselves in the observable is presented, and potential applications of the technique for Space Exploration Initiative scenarios are examined. Requirements for spacecraft and ground systems needed to enable and optimize these types of observations are discussed.
Keep this discovery
Explore connections, maps & timelines
Edwards, C. D., Jr., Kahn, R. D., Folkner, W. M., Border, J. S.. 1991-01-01. Differential tracking data types for accurate and efficient Mars planetary navigation. https://ntrs.nasa.gov/citations/19920056932
Cite the original work for its findings. Save a collection to share your selection of sources.