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Synchronized Phasor Measurement Unit-Based Central Controller for Normal and Contingent Operation of a High-Capacity HVDC Macrogrid for the Continental US

机译:基于Phasor测量单元的中央控制器,用于大陆的高容量HVDC宏格栅的正常和偶然运行

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摘要

This paper presents a Synchronized Phasor Measurement Unit (PMU) based controller to support the coordination and operation of a high-capacity high-voltage direct current (HVDC) macrogrid transmission for the continental US. The proposed controller allows for optimal scheduling of each segment of the multi-terminal HVDC network under normal and contingent conditions, while considering minimum levels of frequency response requirements. The performance of the proposed controller is tested on a 100,222-bus representation of the US Eastern and Western interconnections. Results show that a centralized PMU-based controller improves the frequency nadir of the HVDC macrogrid under contingency conditions by 25.9%. Furthermore, the primary frequency response (PFR) of the HVDC macrogrid is increased by 33.4%. The performance of each interconnection under the largest credible contingency conditions is also discussed.
机译:本文介绍了基于同步的相量测量单元(PMU)的控制器,以支持大陆大陆的高容量高压直流(HVDC)宏格传输的协调和运行。所提出的控制器允许在正常和偶然条件下最佳地调度多终端HVDC网络的每个段,同时考​​虑最小频率响应要求。建议控制器的性能在美国东方和西方互连的100,222艘总线上进行了测试。结果表明,基于PMU的基于PMU的控制器在应急条件下提高了HVDC宏观格的频率Nadir 25.9%。此外,HVDC宏格栅的初级频率响应(PFR)增加了33.4%。还讨论了在最大可信应急条件下每个互连的性能。

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