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Fault ride-through capability enhancement based on flywheel energy storage system for wind farms connected via VSC high voltage DC transmission

机译:基于飞轮储能系统的通过VSC高压直流输电的风电场故障穿越能力增强

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摘要

This paper proposes a recovery strategy for wind energy-fed voltage source converter high voltage DC transmission systems, capable of maintaining power balance between the AC and DC sides during different AC faults. This prevents the DC link voltage rise as a result of trapped energy. This reduces the voltage and current stresses on the switching devices. Also, the strategy ensures the converters remain connected to the AC network to provide the necessary voltage support, within the converter reactive power capability. The recovery strategy is implemented by introducing a flywheel energy storage system based on induction machine in parallel with the grid side inverter. Due to the parallel combination of the grid side inverter and flywheel induction machine (FW-IM), the trapped energy in the DC link during AC faults can be eliminated; as a result of finding another path for the power of the wind turbines during AC faults. To illustrate the feasibility of the proposed HVDC system, this paper assesses its dynamic performance during steady-state and network alterations, including its response to AC side faults.
机译:本文提出了一种风能馈电电压源换流器高压直流输电系统的恢复策略,该策略能够在不同的交流故障期间保持交流侧和直流侧之间的功率平衡。这样可以防止由于捕获的能量而导致直流母线电压上升。这减少了开关装置上的电压和电流应力。此外,该策略还可以确保转换器在转换器无功功率范围内保持与交流网络的连接,以提供必要的电压支持。通过引入基于感应电机的飞轮储能系统与电网侧逆变器并联来实现恢复策略。由于电网侧逆变器和飞轮感应机(FW-IM)的并联组合,可以消除交流故障期间直流母线中捕获的能量;作为交流故障期间寻找风力涡轮机功率的另一条路径的结果。为了说明所提出的高压直流输电系统的可行性,本文评估了其在稳态和电网变化期间的动态性能,包括其对交流侧故障的响应。

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