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Designed inputs for detection and isolation of failures in the state transition matrices of dynamic systems

机译:设计用于检测和隔离动态系统状态转换矩阵中的故障的输入

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A new failure detection and isolation algorithm is presented for linear time-invariant deterministic systems. In particular, the technique exploits the system inputs to distinguish between a change in the state transition matrix and actuator failures, including output equivalent events. It is assumed that a failure has been detected previously by some other method, such as by a failure detection filter. Previous methods that attempted to isolate changes in the state transition matrix did not use the input in any way and required explicit knowledge of the changed parameter values (e.g., the multiple model method). The designed input method presented in this paper requires only the knowledge of the null spaces of the changed parameter matrices, not of the explicit values of the changed parameters. This feature allows the failure detection and isolation (FDI) algorithm based on designed inputs to isolate partially unknown changes in the state transition matrix, a distinct advantage over other methods in terms of computational efficiency. Detailed design procedures are accompanied by an example that illustrates the input design method. The example uses designed inputs to distinguish between changes in the state transition parameters of an AFTI/F-16 model from nearly output equivalent actuator calibration errors.
机译:针对线性时不变确定性系统,提出了一种新的故障检测与隔离算法。特别地,该技术利用系统输入来区分状态转换矩阵的变化和执行器故障,包括输出等效事件。假定先前已通过某种其他方法(例如,通过故障检测过滤器)检测到故障。试图隔离状态转换矩阵中的更改的先前方法没有以任何方式使用输入,并且需要对更改后的参数值有明确的了解(例如,多模型方法)。本文介绍的设计输入法仅需要了解已更改参数矩阵的零空间,而无需了解已更改参数的显式值。此功能允许基于设计输入的故障检测和隔离(FDI)算法可以隔离状态转换矩阵中的部分未知更改,这在计算效率方面优于其他方法。详细的设计过程随附一个示例,该示例说明了输入设计方法。该示例使用设计的输入来区分AFTI / F-16模型的状态转换参数的变化与几乎输出的等效执行器校准误差。

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