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Development and Experimental Testing of a Health Monitoring System of Electro-Mechanical Actuators for Small Airplanes

机译:小型机电致动器健康监测系统的开发与实验测试

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This paper reports the preliminary results of the REPRISE (Reliable Electromechanical actuator for PRImary SurfacE with health monitoring) project, which aims to design a novel Electro-Mechanical Actuator (EMA) to be used on primary flight surfaces of small aircrafts. An important element of the actuator control system is a Health Monitoring (HM) module. This component is an algorithm able to detect anomalies in the device even if there is no evident loss of ability in pursuing its main function (position tracking). In particular, the project aim is to identify any degradation in the mechanical transmission elements, the ballscrew and other components such as bearings. Moreover, it is strongly advisable that the HM algorithm is based on a feature whose value can be easily computed and monitored during the actuator life. In this work, a large experimental activity has been carried out with the purpose of bringing the actuator close to failure, by progressive fault injection in overload operating conditions. A feature named Σ, that is, the mean of the RMS of the three phase currents (the input to the electric motor), is proposed as a parameter for HM. The effectiveness of this parameter in detecting the mechanical transmission degradation is experimentally tested. The degradation has been confirmed by visual inspection and screw thread profile measurements. In spite of this, the actuator is still able to perform position tracking in an effective way.
机译:本文报告了重复的初步结果(具有健康监测的主要表面的可靠机电致动器)项目,该项目旨在设计一种用于小型飞机的初级飞行面的新型机电执行器(EMA)。执行器控制系统的一个重要元素是健康监测(HM)模块。该组件是一种能够检测器件中的异常的算法,即使在追求其主要功能(位置跟踪)的能力方面没有明显丢失。特别是,项目目的是识别机械传动元件,滚珠螺钉和其他轴承的其他部件中的任何劣化。此外,强烈建议,HM算法基于在致动器寿命期间可以容易地计算和监测该特征。在这项工作中,通过在过载操作条件下通过渐进式故障注入来实现大型实验活动,使执行器接近失败。提出了名为σ的特征,即三相电流的RMS的平均值(电动机的输入),作为HM的参数。通过实验测试该参数检测机械透射劣化在检测机械透射劣化方面的有效性。通过目视检查和螺纹轮廓测量确认了降解。尽管如此,执行器仍然能够以有效的方式执行位置跟踪。

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