Coordinated Control of Multi-Degree-of Freedom Fuel Systems

This paper identifies potential performance benefits and computational costs of applying advanced multivariable control theory concepts to coordinate the control of a general multi-degree-of-freedom fuel system. The control variables are injection duration and pressure. The focus is on the design of...

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Veröffentlicht in:SAE transactions 1997-01, Vol.106, p.65-75
Hauptverfasser: Anakwa, Winfred K. N., Lukich, Michael S., Barnes, Travis E.
Format: Artikel
Sprache:eng
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Zusammenfassung:This paper identifies potential performance benefits and computational costs of applying advanced multivariable control theory concepts to coordinate the control of a general multi-degree-of-freedom fuel system. The control variables are injection duration and pressure. The focus is on the design of a robust multi-input multi-output controller using Hinfinity and mu synthesis methodology to coordinate the control of injection duration and pressure; reduce overshoots and system sensitivity to parameter variations caused by component aging. Model reduction techniques are used to reduce the order of the H-infinity controller to make it practically implementable. Computer simulation is used to test the robust performance of a generic engine and fuel system model controlled by the reduced order H-infinity controller and a traditional proportional plus integral controller.
ISSN:0096-736X
2577-1531