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Operation and control of an insulated gate bipolar transistor-based current controlling device for power flow applications in multi-terminal high-voltage direct current grids

机译:多端高压直流电网中用于潮流应用的基于绝缘栅双极晶体管的电流控制装置的操作和控制

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摘要

One of the main problems that need to be solved to allow the realisation of multi-terminal high-voltage direct current (HVDC) transmission systems is the absence of a practical power flow control method. Industry leaders and researchers have proposed a few methods of power flow control based on either the control of converter station or the connection of new power electronic equipment to the grid. This study presents the operation and control of a three-port insulated gate bipolar transistor-based current flow control (CFC) device suitable for multi-terminal HVDC systems. Key features and functionalities of the proposed controller including the balancing of cable currents, limiting the magnitude of cable current and current nulling are demonstrated. The three-port CFC was simulated using power system computer aided design (PSCAD)/electromagnetic transient and direct current (EMTDC), network simulation software to evaluate its steady state and dynamic performance. Furthermore, low-power prototypes are implemented for a two and three-ports CFC to experimentally validate their different functionalities. Simulation and experimental studies explore the fast dynamic response and the results show that the CFC studied may have a significant role to play in the control of power flows in multi-terminal high-voltage DC systems.
机译:为了实现多端子高压直流(HVDC)传输系统,需要解决的主要问题之一是缺乏实用的功率流控制方法。行业领导者和研究人员已经提出了几种基于变电站控制或新电力电子设备与电网连接的潮流控制方法。这项研究提出了适用于多端子HVDC系统的基于三端口绝缘栅双极晶体管的电流控制(CFC)器件的操作和控制。演示了所建议控制器的关键特性和功能,包括平衡电缆电流,限制电缆电流的大小和电流归零。使用电力系统计算机辅助设计(PSCAD)/电磁暂态和直流电(EMTDC),网络仿真软件来评估三端口CFC的稳态和动态性能。此外,针对两端口和三端口CFC实施了低功耗原型,以通过实验验证其不同功能。仿真和实验研究探索了快速动态响应,结果表明所研究的CFC可能在多端子高压直流系统的功率流控制中发挥重要作用。

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