Search NASA⌕ Search

NASA NTRS · 19930060876

Hybrid suboptimal control of multi-rate multi-loop sampled-data systems

Abstract

A hybrid state-space controller is developed for suboptimal digital control of multirate multiloop multivariable continuous-time systems. First, an LQR is designed for a continuous-time subsystem which has a large bandwidth and is connnected in the inner loop of the overall system. The designed LQR would optimally place the eigenvalues of a closed-loop subsystem in the common region of an open sector bounded by sector angles + or - pi/2k for k = 2 or 3 from the negative real axis and the left-hand side of a vertical line on the negative real axis in the s-plane. Then, the developed continuous-time state-feedback gain is converted into an equivalent fast-rate discrete-time state-feedback gain via a digital redesign technique (Tsai et al. 1989, Shieh et al. 1990) reviewed here. A real state reconstructor is redeveloped utilizing the fast-rate input-output data of the system of interest. The design procedure of multiloop multivariable systems using multirate samplers is shown, and a terminal homing missile system example is used to demonstrate the effectiveness of the proposed method.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Shieh, Leang S., Chen, Gwangchywan, Tsai, Jason S. H.. 1992-01-01. Hybrid suboptimal control of multi-rate multi-loop sampled-data systems. https://ntrs.nasa.gov/citations/19930060876

Cite the original work for its findings. Save a collection to share your selection of sources.