On variable-shift-based fault compensation of fuzzy controllers

N. Kamiura, M. Tomita, T. Isokawa, N. Matsui
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Abstract

In this paper we propose a fuzzy controller with the capability of compensating the influence of single stuck-at faults in membership functions. To cope with the faults in each antecedent part, the degree in a candidate regarded as a faulty function is exchanged for one of the following: 0, the degree in the next function to the candidate, and the difference between the constant and the degree in the next function to the candidate. To cope with the faults in the consequent part, several fuzzy variables are shifted, and then the fuzzy inference is executed with the membership functions representing shifted variables. Experimental results for a commercial controller show that the influence of any single fault deviating the normal deterministic output of the controller is compensated completely.
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基于变位移的模糊控制器故障补偿
本文提出了一种具有补偿隶属函数中单个卡滞故障影响的模糊控制器。为了处理每个先行部分的故障,将被视为故障函数的候选函数中的度数转换为以下一种:0,候选函数的下一个函数中的度数,以及常数与候选函数的下一个函数的度数之差。为了处理后续部分的故障,先对多个模糊变量进行位移,然后用表示位移变量的隶属度函数进行模糊推理。对商用控制器的实验结果表明,任何单个故障对控制器正常确定性输出的影响都能得到完全补偿。
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