A comparative study of the reliability of the power electronics in grid connected small wind turbine systems

M. Arifujjaman, M. Iqbal, J. Quaicoe
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引用次数: 28

Abstract

This work presents a reliability analysis of the Power Conditioning System (PCS) for both the Permanent Magnet Generator (PMG) and Wound Rotor Induction Generator (WRIG)-based small wind turbine generation systems. The PCS for grid connection of the PMG-based system requires a rectifier, boost converter and a grid-tie inverter, while the WRIG-based system employs a rectifier, a chopper and an external resistor in the rotor side with the stator directly connected to the grid. Reliability of the PCS is analyzed for the worst case scenario of maximum conversion losses at a predetermined wind speed. The analysis reveals that the Mean Time Between Failures (MTBF) of the PCS of a WRIG-based small wind turbine is much higher than the MTBF of the PCS of a PMG-based small wind turbine. The investigation is extended to identify the least reliable component within the PCS for both systems. It is shown that the inverter has the dominant effect on the system reliability for the PMG-based system, while the rectifier is the least reliable for the WRIG-based system. This research indicates that the WRIG-based small wind turbine with a simple PCS is a much better option for small wind energy conversion system.
并网小型风力发电机组电力电子可靠性比较研究
本文对基于永磁发电机(PMG)和绕线转子感应发电机(WRIG)的小型风力发电系统的功率调节系统(PCS)进行了可靠性分析。基于永磁调速器的系统的并网PCS需要整流器、升压变换器和并网逆变器,而基于微电网的系统采用整流器、斩波器和转子侧的外置电阻,定子直接与电网相连。分析了在给定风速下最大转换损失的最坏情况下PCS的可靠性。分析表明,基于微电网的小型风力发电机组机组的平均无故障时间(MTBF)远高于基于永磁涡流发电机组机组的平均无故障时间。调查扩展到确定两个系统中PCS中最不可靠的组件。结果表明,逆变器对永磁同步电机系统的可靠性影响最大,而整流器对永磁同步电机系统的可靠性影响最小。该研究表明,基于微电网的小型风力发电机组与简单的PCS是小型风能转换系统的一个更好的选择。
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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