NASA NTRS · 20030004787
String Stability of a Linear Formation Flight Control System
Abstract
String stability analysis of an autonomous formation flight system was performed using linear and nonlinear simulations. String stability is a measure of how position errors propagate from one vehicle to another in a cascaded system. In the formation flight system considered here, each i(sup th) aircraft uses information from itself and the preceding ((i-1)(sup th)) aircraft to track a commanded relative position. A possible solution for meeting performance requirements with such a system is to allow string instability. This paper explores two results of string instability and outlines analysis techniques for string unstable systems. The three analysis techniques presented here are: linear, nonlinear formation performance, and ride quality. The linear technique was developed from a worst-case scenario and could be applied to the design of a string unstable controller. The nonlinear formation performance and ride quality analysis techniques both use nonlinear formation simulation. Three of the four formation-controller gain-sets analyzed in this paper were limited more by ride quality than by performance. Formations of up to seven aircraft in a cascaded formation could be used in the presence of light gusts with this string unstable system.
Keep this discovery
Explore connections, maps & timelines
Allen, Michael J., Ryan, Jack, Hanson, Curtis E., Parle, James F.. 2002-08-01. String Stability of a Linear Formation Flight Control System. https://ntrs.nasa.gov/citations/20030004787
Cite the original work for its findings. Save a collection to share your selection of sources.