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首页> 外文期刊>Journal of power electronics >Reduced Switch Count Topology of Current Flow Control Apparatus for MTDC Grids
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Reduced Switch Count Topology of Current Flow Control Apparatus for MTDC Grids

机译:减少了MTDC电网电流控制设备的开关计数拓扑

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The increasing demand for high voltage DC grids resulting from the continuous installation of offshore wind farms in the North Sea has led to the concept of multi-terminal direct current (MTDC) grids, which face some challenges. Power (current) flow control is a challenge that must be addressed to realize a reliable operation of MTDC grids. This paper presents a reduced switch count topology of a current flow controller (CFC) for power flow and current limiting applications in MTDC grids. A simple control system based on hysteresis band current control is proposed for the CFC. The theory of operation and control of the CFC are demonstrated. The key features of the proposed controller, including cable current balancing, cable current limiting, and current nulling, are illustrated. An MTDC grid is simulated using MATLAB/SIMULINK software to evaluate the steady state and dynamic performance of the proposed CFC topology. Furthermore, a low power prototype is built for a CFC to experimentally validate its performance using rapid control prototyping. Simulation and experimental studies indicate the fast dynamic response and precise results of the proposed topology. Furthermore, the proposed controller offers a real solution for power flow challenges in MTDC grids.
机译:由于北海海上风电场的持续安装导致对高压直流电网的需求不断增长,导致了多端子直流(MTDC)电网的概念,该概念面临一些挑战。功率(电流)流量控制是实现MTDC电网可靠运行所必须解决的挑战。本文提出了一种用于MTDC电网中电流和电流限制应用的电流控制器(CFC)的开关数量减少的拓扑结构。提出了一种基于迟滞带电流控制的简单控制系统。阐述了CFC的运行和控制原理。说明了所建议控制器的关键功能,包括电缆电流平衡,电缆电流限制和电流清零。使用MATLAB / SIMULINK软件对MTDC网格进行了仿真,以评估所提出的CFC拓扑的稳态和动态性能。此外,还为CFC构建了低功耗原型,以使用快速控制原型通过实验验证其性能。仿真和实验研究表明,该拓扑结构具有快速的动态响应和精确的结果。此外,所提出的控制器为MTDC电网中的潮流挑战提供了一个真正的解决方案。

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