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Fault tolerant control system design with explicit consideration of performance degradation

机译:明确考虑性能下降的容错控制系统设计

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A new approach is proposed for active fault tolerant control systems (FTCS), which allows one to explicitly incorporate allowable system performance degradation in the event of partial actuator fault in the design process. The method is based on model-following and command input management techniques. The degradation in dynamic performance is accounted for through a degraded reference model. A novel method for,selecting such a model is also presented. The degradation in steady-state performance is dealt with using a command input adjustment technique. When a fault is detected by the fault detection and diagnosis (FDD) scheme, the reconfigurable controller is designed automatically using an eigenstructure assignment algorithm in an explicit model-following framework so that the dynamics of the closed-loop system follow that of the degraded reference model. In the mean time, the command input is also adjusted automatically to prevent the actuators from saturation. The proposed method has been evaluated using the lateral dynamics of an F-8 aircraft against actuator faults subject to constraints on the magnitude of actuator inputs. Very encouraging results have been obtained.
机译:提出了一种用于主动容错控制系统(FTCS)的新方法,该方法允许在设计过程中出现部分执行器故障的情况下,明确纳入允许的系统性能下降。该方法基于模型跟踪和命令输入管理技术。动态性能的下降是通过降级的参考模型解决的。还提出了一种选择这种模型的新颖方法。使用命令输入调整技术可以解决稳态性能的下降。当通过故障检测与诊断(FDD)方案检测到故障时,可重配置控制器将通过本征结构分配算法在明确的模型遵循框架中自动设计,以使闭环系统的动力学遵循降级参考的动力学模型。同时,命令输入也会自动调整以防止执行器饱和。使用F-8飞机的横向动力学对执行器故障进行评估,该方法针对执行器输入的大小受到约束,可以克服执行器故障。已经获得非常令人鼓舞的结果。

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