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Steady-state operational range evolution from a two-terminal to a multi-terminal HVDC transmission system

机译:从双端到多终端HVDC传输系统的稳态运行范围演进

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DC grids are anticipated to grow organically with one possible initial configuration being formed by interconnecting an additional HVDC converter into an existing shore-to-shore (StS) HVDC link. In order to ensure the performance of this MTDC system, the DC voltage at each converter terminal within the system should stay within a certain allowable range. The steady-state DC voltage operational range of this MTDC system is not only determined by the StS link, but also the DC voltage limits of the interconnected converter(s). This paper explains how the operational range of the MTDC system can vary depending on several factors, e.g. power rating and DC voltage range of the additional converter, the distance from this converter to the DC hub, and how close the DC hub is located from one of the StS link's end. The study results provide valuable input for the StS link owner to plan or appraise the expansion of its link or to establish a requirement for the additional converter that can minimize the impact when it interconnects with an existing StS link. Furthermore, the principles given in this paper can be extended for any numbers of additional converters to be interconnected with the existing StS link.
机译:DC电网预计将与通过附加的HVDC换流器互连到现有的岸到岸(STS)HVDC链路正在形成一种可能的初始配置有机增长。为了确保这个MTDC系统的性能,在系统内的每个转换器端的直流电压应保持在一定的允许范围内。不仅确定此MTDC系统的稳态DC电压操作范围由STS链接,而且相互连接的转换器(多个)的直流电压的限制。本文解释如何MTDC系统的操作范围可以根据几个因素而变化,例如额定功率和附加转换器的DC电压范围,从该转换器的DC毂的距离,以及如何接近直流毂位于从STS链路的端部中的一个。这项研究结果提供了宝贵的投入为STS链接所有者的计划或评价其链接的扩大或建立额外的转换器,当它与现有的STS链路互连,可以将影响降到最低的要求。此外,在本文中给出的原理可以被扩展用于其他的转换器的任何数字与现有的STS链路互连。

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