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A Modular Resonant DC–DC Converter With High Step-Down Ratio for Tapping Power From HVDC Systems

机译:具有高降压比的模块化谐振DC-DC转换器,用于从HVDC系统采用电力

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摘要

In this article, a new circuit topology of DC–DC converter for high step-down ratio is proposed. The proposed DC–DC converter can be used to tap power from high-voltage direct current (HVDC) system to feed the local loads that are located in the vicinity of HVDC transmission corridor. The proposed DC–DC converter consists of a large number of identical submodules each having one controllable switch, two diodes, and one capacitor. The operation of DC–DC converter is based on repeated charging and discharging of capacitors through a resonant circuit. Zero-current switching is achieved for all the switches used in the converter. In case of failure of one submodule, the failed submodule could be bypassed without affecting the normal operation of the HVDC tap. Equations governing the behavior of the proposed converter and the design of the components have been included in this article. The operational performance of the line commutated converter based HVDC system along with the HVDC tapping scheme with the proposed converter is investigated using a simulation model developed in PSCAD/EMTDC. The proposed circuit topology has also been verified with a down scaled experimental prototype.
机译:在本文中,提出了一种用于高降压比的DC-DC转换器的新电路拓扑。所提出的DC-DC转换器可用于从高压直流(HVDC)系统中的电源,以馈送位于HVDC传动走廊附近的本地负载。所提出的DC-DC转换器包括大量相同的子模块,每个子模块具有一个可控开关,两个二极管和一个电容器。 DC-DC转换器的操作基于通过谐振电路对电容器的重复充电和放电。为转换器中使用的所有开关实现零电流切换。在一个子模块失败的情况下,可以绕过故障的子模块,而不会影响HVDC Tap的正常操作。本文列入了管理所提出的转换器行为和组件的设计的方程。使用PSCAD / EMTDC开发的仿真模型研究了基于LINE广泛的转换器的HVDC系统以及具有所提出的转换器的HVDC攻丝方案的操作性能。建议的电路拓扑也通过了下调的实验原型来验证。

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