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NASA NTRS · Conference Paper

Identification and dual adaptive control of a turbojet engine

Published 2019-07-12 From Legacy CDMS 2 authors

Attribution

This is the abstract and citation. Full text lives at NASA NTRS — we link out rather than host. All credit to the authors and Legacy CDMS.

Abstract

Verbatim from NASA NTRS. Not paraphrased, not summarized.

The objective of this paper is to utilize the design methods of modern control theory to realize a dual-adaptive feedback control unit for a highly nonlinear single spool airbreathing turbojet engine. Using a very detailed and accurate simulation of the nonlinear engine as the data source, linear operating point models of unspecified dimension are identified. Feedback control laws are designed at each operating point for a prespecified set of sampling rates using sampled-data output regulator theory. The control system sampling rate is determined by an adaptive sampling algorithm in correspondence with turbojet engine performance. The result is a dual-adaptive control law that is functionally dependent upon the sampling rate selected and environmental operating conditions. Simulation transients demonstrate the utility of the dual-adaptive design to improve on-board computer utilization while maintaining acceptable levels of engine performance.

Authors

  • Merrill, W. NASA Lewis Research Center
  • Leininger, G. Toledo Univ.

Citation: Merrill, W., Leininger, G. (2019). Identification and dual adaptive control of a turbojet engine. Legacy CDMS. NASA NTRS ID 19790015086. https://ntrs.nasa.gov/citations/19790015086 ↗