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Electromechanical Actuators Affected by Multiple Failures: Prognostic Method based on Spectral Analysis Techniques

机译:受多次故障影响的机电致动器:基于光谱分析技术的预后方法

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The proposal of prognostic algorithms able to identify precursors of incipient failures of primary flight command electromechanical actuators (EMA) is beneficial for the anticipation of the incoming failure: an early and correct interpretation of the failure degradation pattern, in fact, can trig an early alert of the maintenance crew, who can properly schedule the servomechanism replacement. An innovative prognostic model-based approach, able to recognize the EMA progressive degradations before his anomalous behaviors become critical, is proposed: the Fault Detection and Identification (FDI) of the considered incipient failures is performed analyzing proper system operational parameters, able to put in evidence the corresponding degradation path, by means of a numerical algorithm based on spectral analysis techniques. Subsequently, these operational parameters will be correlated with the actual EMA health condition by means of failure maps created by a reference monitoring model-based algorithm. In this work, the proposed method has been tested in case of EMA affected by combined progressive failures: in particular, partial stator single phase turn to turn short-circuit and rotor static eccentricity are considered. In order to evaluate the prognostic method, a numerical test-bench has been conceived. Results show that the method exhibit adequate robustness and a high degree of confidence in the ability to early identify an eventual malfunctioning, minimizing the risk of fake alarms or unannounced failures.
机译:能够识别初级飞行命令机电执行器(EMA)初期失败前体的预后算法的提议是有利于预期来收入的失败:事实上,对失败劣化模式的早期和正确的解释,实际上可以触及早期警报维护人员,谁可以正确安排伺服机构替代品。提出了一种创新的基于预后模型的方法,可以在他的异常行为变得关键之前识别EMA逐行降级:考虑初期故障的故障检测和识别(FDI)分析了正确的系统操作参数,能够进入证据是基于频谱分析技术的数值算法的相应劣化路径。随后,通过由基于参考监视模型的算法创建的故障映射,这些操作参数将与实际的EMA健康状况相关联。在这项工作中,在受逐步故障影响的EMA的情况下已经测试了所提出的方法:特别地,考虑部分定子单相转向转动短路和转子静电。为了评估预后方法,构思了数值测试台。结果表明,该方法表现出足够的鲁棒性和高度信心,对早期确定最终的故障,最大限度地减少假警报或未经发箱失败的风险。

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