On-orbit system identification using active members
C.‐C. Jay Kuo, G.-S. Chen, Phuong Viet Pham, B. K. Wada
Abstract
C.‐C. Jay Kuo, G.-S. Chen, Phuong Viet Pham, B. K. Wada
Abstract
The capability to perform accurate on-orbit system identification for both open loop (passive) and closed loop (active) structural systems will be required for future NASA missions; especially those missions which require large precision structures. The information is required to accurately establish the dynamic characteristics of the operational structure in order to adjust the structure itself using the concepts of Adaptive Structures and/or the control system. This paper presents the test results of using Active Members in an adaptive structural system to excite a free-free structure to determine both open and closed loop dynamic characteristics.
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The capability to perform accurate on-orbit system identification for both open loop (passive) and closed loop (active) structural systems will be required for future NASA missions; especially those missions which require large precision structures. The information is required to accurately establish the dynamic characteristics of the operational structure in order to adjust the structure itself using the concepts of Adaptive Structures and/or the control system. This paper presents the test results of using Active Members in an adaptive structural system to excite a free-free structure to determine both open and closed loop dynamic characteristics.
Key concepts: Identification (biology), Computer science, Orbit (dynamics), Engineering, Aerospace engineering, Biology, Botany