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Risk of multiple cross-over of control characteristics in multi-terminal HVDC

机译:多端高压直流输电中控制特性的多次交叉的风险

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摘要

HVDC grids have been made practical with the introduction of the voltage source converter (VSC). The development of VSC technology has been, and continues to be rapid, with new converter topologies and new manufacturers entering the market. For the power transmission industry to fully exploit the benefits a ‘multi-vendor’ supply chain is considered essential. However, unlike AC grids, there is at present no standardised grid code for HVDC grids and interoperability of equipment and systems, purchased from many different and competing suppliers, is a major concern. Compatibility of control between converters supplied by different manufacturers has been considered by several groups such as CENELEC TC8X – WG6. The initial findings were that there was little reason to suggest that restrictions should be placed on which control strategy should be employed. However recent work uncovered an adverse interaction between converters with differing operating modes. This study illustrates how multiple operating points in the control characteristics could occur and show why such operation is undesirable and how it can be avoided by careful scheme design.
机译:随着电压源转换器(VSC)的引入,HVDC电网已变得切实可行。随着新的转换器拓扑结构和新的制造商进入市场,VSC技术的发展一直并将持续迅速。为了充分利用电力传输行业的利益,“多供应商”供应链被认为是必不可少的。但是,与交流电网不同,目前尚无用于HVDC电网的标准化电网代码,并且从许多不同且竞争的供应商处购买的设备和系统的互操作性是一个主要问题。 CENELEC TC8X – WG6等几个小组已经考虑了不同制造商提供的转换器之间的控制兼容性。最初的发现是几乎没有理由建议应限制采用哪种控制策略。然而,最近的工作揭示了具有不同工作模式的转换器之间的不利相互作用。这项研究说明了如何在控制特性中出现多个工作点,并说明了为什么不希望这样的操作,以及如何通过精心设计方案来避免这种情况。

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