Analysis of airframe/engine interactions - An integrated control perspectiveTechniques for the analysis of the dynamic interactions between airframe/engine dynamical systems are presented. Critical coupling terms are developed that determine the significance of these interactions with regard to the closed loop stability and performance of the feedback systems. A conceptual model is first used to indicate the potential sources of the coupling, how the coupling manifests itself, and how the magnitudes of these critical coupling terms are used to quantify the effects of the airframe/engine interactions. A case study is also presented involving an unstable airframe with thrust vectoring for attitude control. It is shown for this system with classical, decentralized control laws that there is little airframe/engine interaction, and the stability and performance with those control laws is not affected. Implications of parameter uncertainty in the coupling dynamics is also discussed, and effects of these parameter variations are also demonstrated to be small for this vehicle configuration.
Document ID
19900053502
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Schmidt, David K. (Arizona State Univ. Tempe, AZ, United States)
Schierman, John D. (Arizona State University Tempe, United States)
Garg, Sanjay (NASA Lewis Research Center; Sverdrup Technology, Inc. Cleveland, OH, United States)