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Technical Assessment of Load Commutation Switch in Hybrid HVDC Breaker

机译:混合高压直流断路器负荷换向开关的技术评估

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The development of a large-scale high-voltage direct current (HVDC) power grid requires a reliable, fast, and low-loss circuit breaker. The load commutation switch (LCS) is an essential part of ABB's 1200-MW hybrid HVDC breaker concept, which builds up a low-loss conducting path for the load current. The technical requirements for the LCS are expressed in this paper by studying the operation principle of the hybrid HVDC breaker. The voltage stress over the LCS is determined based on a dc grid with 320 and 2 kA rated voltage and current. A system model of the hybrid HVDC breaker is developed in PSCAD/EMTDC to study the design criteria for snubber circuit and arrester blocks. It is observed that conventional snubber circuits are not suitable for a bidirectional LCS as the current of snubber capacitors prevent the fast interruption action. A modified snubber circuit is proposed in this paper along with two more alternatives for the LCS to overcome this problem. Moreover, the power loss model for a semiconductor device is discussed in this paper based on the 4.5-kV StakPak IGBT. The model is used to calculate the conduction power losses for different LCS topologies. Ultimately, a matrix of 3 3 IGBT modules is selected to provide a reliable LCS design which can handle several internal fault cases with no interruption of operation. A full-scale prototype has been constructed and tested in ABB HVDC Center, Ludvika, Sweden. The experimental test results are also included in the paper in order to verify the calculation and simulation study.
机译:大规模高压直流(HVDC)电网的发展需要可靠,快速且低损耗的断路器。负载换向开关(LCS)是ABB 1200 MW混合HVDC断路器概念的重要组成部分,该概念为负载电流建立了低损耗传导路径。通过研究混合高压直流断路器的工作原理,提出了LCS的技术要求。 LCS上的电压应力是基于具有320和2kA额定电压和电流的直流电网确定的。在PSCAD / EMTDC中开发了混合HVDC断路器的系统模型,以研究缓冲电路和避雷器模块的设计标准。可以看出,传统的缓冲电路不适用于双向LCS,因为缓冲电容器的电流会阻止快速中断动作。本文提出了一种改进的缓冲电路以及用于LCS的两个其他替代方案,以克服这一问题。此外,本文还讨论了基于4.5kV StakPak IGBT的半导体器件的功率损耗模型。该模型用于计算不同LCS拓扑的传导功率损耗。最终,选择了一个由3 3个IGBT模块组成的矩阵,以提供可靠的LCS设计,该设计可以处理多个内部故障情况而不会中断操作。已在瑞典路德维卡(Ludvika)的ABB高压直流输电中心建造并测试了一个完整的原型。实验测试结果也包括在本文中,以验证计算和仿真研究。

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