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An IGBT based current flow controller for use in meshed HVDC grids

机译:用于网状HVDC电网的基于IGBT的电流控制器

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The continuous installation of offshore wind farms in the North Sea area in the past few years has resulted in the installation of numerous point to point HVDC links. As a result, the idea of forming Multi-Terminal Direct Current (MTDC) grids by interconnecting these links emerged along with its challenges. Power (current) flow control is one of few challenges that need to be solved to realize reliable operations of these MTDC grids. This paper presents an IGBT based Current Flow Controller (CFC) for power flow and current limiting applications in MTDC grids. Moreover, two control strategies based on PID controllers and a Hysteresis band Current Control (HCC) technique are proposed for the CFC. The theory of operation and control of the CFC are demonstrated. Key features of the proposed controller including the balancing of cable currents, limiting of cable current, current nulling and automatic switching mode detection and changing are discussed. A MTDC grid is simulated using MATLAB/SIMULINK software to evaluate the steady state and dynamic performance of the proposed CFC topology. Furthermore, low power prototype is built for a CFC to experimentally validate its performance under steady state and sudden load change condition. Simulation and experimental studies indicate fast dynamic response and precise results. The proposed controller offers a promising solution for power flow control challenges in MTDC.
机译:过去几年中,北海地区海上风电场的持续安装导致安装了许多点对点HVDC链路。结果,通过互连这些链接来形成多端子直流(MTDC)网格的想法随着其挑战而出现。功率(电流)流量控制是实现这些MTDC电网可靠运行所需要解决的少数挑战之一。本文提出了一种基于IGBT的电流控制器(CFC),用于MTDC电网中的功率流和电流限制应用。此外,针对CFC,提出了两种基于PID控制器和迟滞带电流控制(HCC)技术的控制策略。阐述了CFC的运行和控制原理。讨论了所提出的控制器的关键特性,包括电缆电流的平衡,电缆电流的限制,电流归零以及自动开关模式检测和更改。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,以通过实验验证其在稳态和负载突然变化条件下的性能。仿真和实验研究表明快速的动态响应和精确的结果。拟议的控制器为MTDC中的功率流控制挑战提供了有希望的解决方案。

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