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Fault-Tolerant Control for a Modular Generator–Converter Scheme for Direct-Drive Wind Turbines

机译:直驱式风力发电机的模块化发电机-变频器方案的容错控制

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A modular power electronic converter, with a cascaded H-bridge multilevel inverter, has been proposed as the grid interface for a large direct-drive wind turbine generator. The present study is to investigate the potential and requirement of fault-tolerant operation in such a system. As each module is connected to isolated generator coils, tolerance to a module or coil fault is possible if the affected module can be bypassed, whereas the control of the healthy modules can be adjusted accordingly. A boost rectifier scheme on the machine side of the power conversion stage has been developed for this purpose, featuring control of the coil current without measuring the electromotive force. A coordinated dc-link voltage controller has been developed, which can rapidly raise the dc-link voltage of the remaining modules to compensate for the loss of a module while ignoring the ripple in the dc link due to low-frequency inverter switching. The ability of the resultant system to tolerate module faults has been demonstrated on a small-scale laboratory prototype.
机译:带有级联H桥多电平逆变器的模块化电力电子转换器已被提议作为大型直接驱动式风力发电机的电网接口。本研究旨在调查这种系统中容错操作的潜力和要求。由于每个模块都连接到隔离的发电机线圈,如果可以绕开受影响的模块,则可以容忍模块或线圈故障,而可以对健康模块的控制进行相应的调整。为此,已经开发了一种在功率转换级机器侧的升压整流器方案,其特征在于无需测量电动势即可控制线圈电流。已开发出一种协作式直流链路电压控制器,该控制器可快速提高其余模块的直流链路电压,以补偿模块的损耗,同时忽略了低频逆变器开关引起的直流链路中的纹波。小型实验室原型已经证明了所得系统容忍模块故障的能力。

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