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A new protection scheme for three-levelNPC converter based DFIG using zero state control

机译:基于零状态控制的三电平NPC转换器DFIG的新保护方案

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This paper describes a new protection scheme for secure ride-through of doubly-fed induction generator (DFIG) based wind turbines (WTs) connected to a grid through a back-to-back three-level neutral point clamped (NPC) converter. The proposed scheme initiates the machine side converter (MSC) to be at zero state switching, where upper and lower switching devices are turned-off while inner switching devices are turned-on when overshoot occurs in rotor circuit during grid faults. This scheme is only applicable in multilevel converter and not in two-level converter. The scheme is compared to other recent protection scheme with dc-link chopper and the characteristic behavior of the DFIG is demonstrated using simulation results. The new scheme showed a very similar behavior with the conventional scheme and can be more preferable due to its simplicity and less component count. However, the need for the inner switching devices with about two times higher current rating will significantly increase the cost of the MSC and has to be considered
机译:本文介绍了一种新的保护方案,用于通过背靠背三电平中性点钳位(NPC)转换器与电网连接的基于双馈感应发电机(DFIG)的风力涡轮机(WTs)的安全穿越。所提出的方案使机器侧转换器(MSC)处于零状态开关状态,当电网故障期间转子电路中出现过冲时,上,下开关设备均关断,而内部开关设备导通。该方案仅适用于多级转换器,不适用于两级转换器。将该方案与其他最近使用直流链路斩波器的保护方案进行了比较,并使用仿真结果演示了DFIG的特性。新方案显示出与常规方案非常相似的行为,并且由于其简单性和更少的组件数而可能更可取。但是,对于内部开关设备的电流额定值大约需要两倍,这将大大增加MSC的成本,因此必须考虑

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