并网风能转换系统中电力电子变流器的可靠性比较

M. Arifujjaman, Liuchen Chang
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引用次数: 22

摘要

本文基于半导体功率损耗对并网永磁发电机型风能转换系统的电力电子变流器进行了可靠性分析。所研究的功率变换器有:中间升压变换器(IBC)、中间降压变换器(IBC)、背靠背变换器(BBC)和矩阵变换器(MC)。目的是确定哪种电力电子转换器在预定风速下产生最高的平均故障间隔时间(MTBF)和半导体器件功率损耗的可靠性。鉴于此,本文采用笔者先前开发的卷筒式风力机模型,对不同风速进行发电。在此基础上,建立了风速、功率损耗与MTBF之间的关系,对电力电子变流器的可靠性进行了评价。本文提出的功率损耗模型考虑了每个变换器内半导体器件的导通和开关损耗。分析表明,与本研究中考虑的其他变流器相比,IBC的MTBF要高得多。研究扩展到确定变换器中最不可靠的组件。结果表明,逆变器对变流器的系统可靠性起主导作用。该研究表明,对于基于并网永磁发电机的风能转换系统来说,带简单整流器的IBC是一种更好的选择。
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Reliability comparison of power electronic converters used in grid-connected wind energy conversion system
This work presents a reliability analysis of the power electronic converters for a grid-connected permanent magnet generator-based wind energy conversion system based on the semi conductor power losses. The power converters examined are: the intermediate boost converter (IBC), the intermediate buck-boost converter (IBBC), the back-to-back converter (BBC) and the matrix converter (MC). The aim is to determine which power electronic converter yields the highest mean time between failures (MTBF) and reliability in terms of power losses of the semiconductor devices with a predetermined wind speed. In view of this, a furled wind turbine model developed previously by the author is used to generate power for different wind speeds. Afterwards, a relation between the wind speed, power loss and MTBF is established to evaluate the reliability of the power electronic converters. The power loss model presented in this paper has taken into account the conduction and switching losses of the semiconductor devices within each converter. The analysis reveals that MTBF of an IBC is much higher compared to the other converters considered in this research. The investigation is extended to identify the least reliable component within the converters. It is shown that the inverter has the dominant effect on the system reliability for the converters. This research indicates that IBC with a simple rectifier is a much better option for grid-connected permanent magnet generator based wind energy conversion system.
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