Gain-Scheduled Fault Tolerance Control Under False Identification
Author(s) -
Jong-Yeob Shin
Publication year - 2005
Publication title -
aiaa guidance, navigation, and control conference and exhibit
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2005-5940
Subject(s) - identification (biology) , computer science , fault tolerance , control (management) , automatic gain control , reliability engineering , control theory (sociology) , artificial intelligence , engineering , computer network , distributed computing , bandwidth (computing) , botany , biology , amplifier
An active fault tolerant control (FTC) law is generally sensitive to false identification since the control gain is reconfigured for fault occurrence. In the conventional FTC law design procedure, dynamic variations due to false identification are not considered. In this paper, an FTC synthesis method is developed in order to consider possible variations of closed-loop dynamics under false identification into the control design procedure. An active FTC synthesis problem is formulated into an LMI optimization problem to minimize the upper bound of the induced-L2 norm which can represent the worst-case performance degradation due to false identification. The developed synthesis method is applied for control of the longitudinal motions of FASER (Free-flying Airplane for Subscale Experimental Research). The designed FTC law of the airplane is simulated for pitch angle command tracking under a false identification case.
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