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DC fault parameter sensitivity analysis

机译:直流故障参数灵敏度分析

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摘要

At present High Voltage Direct Current (HVDC) Voltage Source Converters (VSC) are susceptible dc faults leading to extreme currents. The fault current cannot be controlled by the converter switching flows in the anti-parallel diodes. Protection devices are, therefore, required to operate with sufficient speed to avoid device failure. A method is introduced to calculate the critical time for protection to operate. Using this method it is then shown how the critical time may be extended by way of optimization of passive system components. In order to perform this optimization a new post-fault (when the converter gating signals are inhibited) model of the Modular Multi-Level (MMC) converter is introduced which drastically reduces simulation time, allowing high resolution parameter sweeps to be performed. The model is validated and is shown to produce fault characteristics similar to that of a conventional switched model.
机译:目前,高压直流(HVDC)电压源转换器(VSC)易感直流断层,导致极端电流。故障电流不能由反平行二极管中的转换器切换流控制。因此,需要以足够的速度操作保护装置以避免设备故障。引入了一种方法来计算保护操作的临界时间。使用该方法,然后示出了如何通过无源系统组件的优化来扩展临界时间。为了执行该优化,引入了模块化多级(MMC)转换器的模型的新故障(当禁止转换器门控信号时),其急剧减少模拟时间,允许执行高分辨率参数扫描。该模型被验证,并被示出产生类似于传统交换模型的故障特性。

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