A linear control design structure to maintain loop properties duringlimit operation in a multi-nozzle turbofan engine
Author(s) -
Duane Mattern,
Peter J. Ouzts
Publication year - 1991
Publication title -
24th joint propulsion conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.1991-1997
Subject(s) - turbofan , nozzle , loop (graph theory) , automotive engineering , computer science , control theory (sociology) , control (management) , control engineering , engineering , aerospace engineering , mathematics , artificial intelligence , combinatorics
The implementation of multi-variable control systems on turbofan engines requires the use of limit protection to maintain safe engine operation. Since a turbofan engine typically encounters limits during transient operation, the use of a limit protection scheme that modifies the feedback loop may void the desired 'guarantees' associated with linear multi-variable control design methods, necessitating considerable simulation to validate the control with limit protection. An alternative control design structure is proposed that maintains the desired linear feedback properties when certain safety limits are encountered by moving the limit protection scheme outside of the feedback loop. This proposed structure is compared to a structure with a limit protection scheme that modifies the feedback loop properties. The two design structures are compared using both linear and nonlinear simulations. The evaluation emphasizes responses where the fan surge margin limit is encountered.
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