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Design and evaluation of a protection algorithm for a wind turbine generator based on the fault-generated symmetrical components

机译:基于故障生成对称组件的风力涡轮发电机保护算法的设计与评价

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A protection relay for a wind turbine generator (WTG) based on the fault-generated symmetrical components is proposed in the paper. At stage 1, the relay uses the magnitude of the positive-sequence component in the fault current to distinguish faults on a parallel WTG, connected to the same feeder, or on an adjacent feeder from those on the connected feeder, on the collection bus, at an inter-tie or at a grid. For the former faults, the relay should remain stable and inoperative whilst the instantaneous or delayed tripping is required for the latter faults. At stage 2, the fault type is first evaluated using the relationships of the fault-generated symmetrical components. Then, the magnitude of the positive-sequence component in the fault current is used again to decide on either instantaneous or delayed operation. The operating performance of the relay is then verified using various fault scenarios modelled using EMTP-RV. The scenarios involve changes in the position and type of fault, and the faulted phases. Results confirm that the relay can successfully distinguish between faults that require an instantaneous, delayed or non-operation response.
机译:提出了一种基于故障产生的对称部件的风力涡轮发电机(WTG)的保护继电器。在第1阶段,继电器使用故障电流中的正序分量的大小来区分并行WTG上的故障,连接到同一进给器,或在相邻的馈线上,在收集总线上,在互连或网格处。对于前者的故障,继电器应保持稳定和不起作用,同时瞬时或延迟跳闸是后一种故障所需的。在第2阶段,首先使用故障生成的对称组件的关系进行评估故障类型。然后,再次使用故障电流中的正序列分量的幅度来决定瞬时或延迟操作。然后使用使用EMTP-RV建模的各种故障场景验证继电器的操作性能。方案涉及故障的位置和类型的变化以及故障阶段。结果确认继电器可以成功区分需要瞬时,延迟或非操作响应的故障。

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