Enhancement of Reliability in Condition Monitoring Techniques in Wind Turbines

R. Moeini, P. Weston, P. Tricoli, T. Dinh, A. McGordon, D. Hughes
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引用次数: 3

Abstract

The majority of electrical failures in wind turbines occur in the semiconductor components (IGBTs) of converters. To increase reliability and decrease the maintenance costs associated with this component, several health-monitoring methods have been proposed in the literature. Many laboratory-based tests have been conducted to detect the failure mechanisms of the IGBT in their early stages through monitoring the variations of thermo-sensitive electrical parameters. The methods are generally proposed and validated with a single-phase converter with an air-cored inductive or resistive load. However, limited work has been carried out considering limitations associated with measurement and processing of these parameters in a three-phase converter. Furthermore, looking at just variations of the module junction temperature will most likely lead to unreliable health monitoring as different failure mechanisms have their own individual effects on temperature variations of some, or all, of the electrical parameters. A reliable health monitoring system is necessary to determine whether the temperature variations are due to the presence of a premature failure or from normal converter operation. To address this issue, a temperature measurement approach should be independent from the failure mechanisms. In this paper, temperature is estimated by monitoring an electrical parameter particularly affected by different failure types. Early bond wire lift-off is detected by another electrical parameter that is sensitive to the progress of the failure. Considering two separate electrical parameters, one for estimation of temperature (switching off time) and another to detect the premature bond wire lift-off (collector emitter on-state voltage) enhance the reliability of an IGBT could increase the accuracy of the temperature estimation as well as premature failure detection.
提高风力发电机组状态监测技术的可靠性
风力涡轮机中的大多数电气故障发生在转换器的半导体组件(igbt)中。为了提高可靠性并降低与该组件相关的维护成本,文献中提出了几种健康监测方法。通过监测热敏电学参数的变化,已经进行了许多基于实验室的测试,以检测IGBT在早期阶段的失效机制。这些方法通常是在带空芯电感或电阻负载的单相变换器上提出和验证的。然而,考虑到在三相变换器中测量和处理这些参数的局限性,开展的工作有限。此外,仅仅观察模块结温的变化很可能导致不可靠的健康监测,因为不同的故障机制对某些或全部电气参数的温度变化有各自的影响。需要一个可靠的健康监测系统来确定温度变化是由于过早失效还是由于正常的转炉操作。为了解决这个问题,温度测量方法应该独立于故障机制。在本文中,通过监测一个特别受不同故障类型影响的电气参数来估计温度。通过另一个对故障进展敏感的电气参数来检测早期粘结线的脱落。考虑到两个独立的电气参数,一个用于估计温度(关断时间),另一个用于检测键合线过早脱落(集电极发射极导通电压),提高了IGBT的可靠性,可以提高温度估计和过早故障检测的准确性。
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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