Reliability analysis for a waste heat recovery power electronic interface applied at all-electric aircrafts

S. Saridakis, N. Papanikolaou, D. Voglitsis, E. Koutroulis, E. Tatakis, G. Christidis, I. Karatzaferis
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引用次数: 1

Abstract

Reliability is one of the most important parameters in aircrafts. In this paper, a method for the calculation of reliability (i.e. number of failures / 106 hours) of a three-phase full-bridge inverter, which is employed in the dynamic waste heat recovery system of an aircraft, is presented. The main factors for the reliability analysis that have to be considered is the topology of the inverter, the ambient temperature conditions, the power switches (type and modulation technique), and the harmonic filter. The power inverter reliability has been calculated using a software program developed under the Matlab platform, which was used to calculate the failure rate of each device of the inverter, such as the power switches, the DC-bus capacitor and the filter inductor, given the operating switching frequency value. The results indicate that at higher switching frequency levels the inverter of the DWHR system exhibits a high failure rate, thus resulting in a lower Mean Time Between Failures (MTBF).
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全电动飞机余热回收电源电子接口可靠性分析
可靠性是飞机最重要的参数之一。本文提出了一种用于飞机动态余热回收系统的三相全桥逆变器可靠性(即故障数/ 106小时)的计算方法。可靠性分析必须考虑的主要因素是逆变器的拓扑结构、环境温度条件、电源开关(类型和调制技术)以及谐波滤波器。利用Matlab平台开发的软件程序对逆变器可靠性进行计算,在给定工作开关频率值的情况下,计算逆变器中电源开关、直流母线电容、滤波电感等各器件的故障率。结果表明,在较高的开关频率水平下,DWHR系统逆变器的故障率较高,从而导致较低的平均无故障时间(MTBF)。
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