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Flexible Converters for Meshed HVDC Grids: From Flexible AC Transmission Systems (FACTS) to Flexible DC Grids

机译:用于网状HVDC网格的灵活转换器:从柔性AC传输系统(事实)到柔性DC网格

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Flexible Alternating Current Transmission Systems (FACTS) have achieved to enhance the flexibility of modern AC power systems, by providing fast, reliable and controllable solutions to steer the power flows and voltages in the network. The proliferation of High Voltage Direct Current (HVDC) transmission systems is leading to the opportunity of interconnecting several HVDC systems forming HVDC Supergrids. Such grids can eventually evolve to meshed systems which interconnect a number of different AC power systems and large scale offshore wind (or other renewable sources) power plants and clusters. While such heavily meshed systems can be considered futuristic and will not certainly happen in the near future, the sector is witnessing initial steps in this direction. In order to ensure the flexibility and controllability of meshed DC grids, the shunt connected AC-DC converters can be combined with additional simple and flexible DC-DC converters which can directly control current and power through the lines. The proposed DC-DC converters can provide a range of services to the HVDC grid, including power flow control capability, ancillary services for the HVDC grid or adjacent grids, stability improvement, oscillation damping, pole balancing and voltage control. The present paper presents relevant developments from industry and academia in the direction of the development of these converters, considering technical concepts, converter functionalities and possible integration with other existing systems. The paper explores a possible vision on the development of future meshed HVDC grids and discusses the role of the proposed converters in such grids.
机译:通过提供快速,可靠和可控的解决方案来增强现代交流电力系统的灵活性来实现灵活的交流传动系统(事实),以实现快速,可靠,可控的解决方案来转向网络中的功率流量和电压。高压直流(HVDC)传输系统的增殖导致互连形成HVDC SuperGrids的几种HVDC系统的机会。这种网格最终可以发展到啮合的系统,该系统互连多个不同的交流电力系统和大型海上风(或其他可再生源)发电厂和集群。虽然如此庞大的网状系统可以被认为是未来的,但在不久的将来,局部不会发生在不久的将来,在这个方向上见证了初始步骤。为了确保网状直流电网的灵活性和可控性,分流连接的AC-DC转换器可以与额外的简单且柔性的DC-DC转换器组合,可以直接通过线路控制电流和电源。所提出的DC-DC转换器可以为HVDC网格提供一系列服务,包括电源流量控制能力,HVDC电网或相邻网格的辅助服务,稳定性改进,振荡阻尼,极衡和电压控制。本文介绍了工业和学术界在这些转换器的发展方向的相关发展,考虑了技术概念,转换器功能和与其他现有系统的可能集成。本文探讨了对未来网状HVDC网格的发展的可能愿景,并讨论了所提出的转换器在此类网格中的作用。

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