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Performance of PMSG Based Variable Speed WECS with Parallel Back-to-Back Converters Using Separate Zero d-axis Current Control

机译:具有独立零背轴电流控制的并联背靠背转换器的基于PMSG的变速WECS的性能

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摘要

Permanent Magnet Synchronous Generator (PMSG) based Wind Energy Conversion System (WECS) is highly preferred these days with back-to-back converter topologies. In order to overcome the sudden converter failure problems, to reduce DC-link rating and for continuity of power supply to the grid; this paper proposes variable speed WECS using PMSG with parallel back-to-back converters with separate DC-links. In both the converter strings the generator-side converters are controlled by using separate Zero Direct-axis Current (ZDC) control with Optimal Torque Control (OTC) technique for Maximum Power Point Tracking (MPPT) and both the grid-side converters are controlled with the help of separate grid-side control. In addition, the problem of zero sequence circulating current has been taken into account. The proposed scheme is been implemented using the MATLAB environment and the overall performance of the system is evaluated through experimental studies.
机译:如今,具有背靠背转换器拓扑的基于永磁同步发电机(PMSG)的风能转换系统(WECS)受到高度青睐。为了克服突然的变频器故障问题,降低直流母线额定值并确保电网的连续供电;本文提出了采用PMSG的变速WECS,并带有带有独立直流母线的并行背靠背转换器。在两个变流器串中,发电机侧变流器均通过单独的零直流电(ZDC)控制和最优转矩控制(OTC)技术进行最大功率点跟踪(MPPT)来控制,两个电网侧变流器均通过单独的电网侧控制的帮助。另外,已经考虑了零序循环电流的问题。所提出的方案是在MATLAB环境下实现的,并且通过实验研究对系统的整体性能进行了评估。

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