Fault diagnosis of linear electric generators for thermoacoustic machines

A. Rossi, F. Immovilli, C. Bianchini, A. Bellini, G. Serra
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引用次数: 2

Abstract

Energy generation and its optimal use are key issues nowadays. In this framework the use of cogeneration (CHP) or trigeneration (CHCP) is an attractive solution towards higher system efficiency. Traditional thermal machines are used as a prime mover in a CHP/CHCP plant. Recently novel technologies were investigated for prime mover and cooler. Among them thermoacoustics is attractive as it allows to embed a prime mover, a cooler and an alternator in a single machine. Moreover, it features reduced maintenance cost as it requires no moving parts but the electric alternator. The design of an efficient electric alternator is one of the major challenge, as it must convert into electricity a small linear displacement of the mover at high frequency. The latter is a critical item in terms of diagnostics also. Here the fault diagnosis of a thermoacoustic generator is investigated, where the major defects are ageing or fatigue of the spring used to center and sustain the mover of electric generator. The fault diagnosis is based on the non invasive analysis of electric signals at the generator terminal. The paper also deals with post fault strategies.
热声电机线性发电机的故障诊断
能源的产生及其优化利用是当今的关键问题。在这个框架下,使用热电联产(CHP)或三电联产(CHCP)是提高系统效率的一个有吸引力的解决方案。传统的热机被用作热电联产/热电联产电厂的原动机。近年来研究了原动机和冷却器的新技术。其中热声学很有吸引力,因为它允许在一台机器中嵌入原动机、冷却器和交流发电机。此外,它不需要任何活动部件,只需要交流发电机,因此降低了维护成本。设计一个高效的交流发电机是一个主要的挑战,因为它必须转换成电能的小线性位移的动机在高频率。后者在诊断方面也是一个关键项目。本文对热声发电机的故障诊断进行了研究,其中主要的故障是用于定心和支撑发电机的弹簧的老化或疲劳。故障诊断是基于对发电机终端电信号的无创分析。本文还讨论了故障后策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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