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首页> 外文期刊>IEEE Transactions on Power Delivery >Dynamic Interactions of the MMC-HVDC Grid and its Host AC System Due to AC-Side Disturbances
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Dynamic Interactions of the MMC-HVDC Grid and its Host AC System Due to AC-Side Disturbances

机译:由于交流侧干扰,MMC-HVDC电网及其主交流系统之间的动态相互作用

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This paper investigates the dynamic interactions of a modular multilevel converter (MMC) -based HVDC grid and its host ac system during ac-side disturbances. The HVDC grid is composed of five MMC stations that are interconnected through a network of cables and overhead lines. The ac grid includes ten turbine generators. The studies are conducted in the PSCAD platform, including the detailed models of the ac and dc subsystems. The reported case studies indicate that without the HVDC supplementary control functions and based on the conventional dq-frame control structure: 1) each MMC behaves as almost a fixed sink/source of power during the ac-side electromechanical transient oscillations; 2) the MMC-HVDC grid effectively improves dynamic interactions between ac subsystems that are connected only by the HVDC grid; 3) without appropriate provisions, the embedded MMC-HVDC grid can aggravate the transients of the host ac system, for example, interarea oscillations. The observations also contradict the widely accepted notion that even without supplementary controllers, the MMC-HVDC grid necessarily improves the dynamics of the ac system. The study results provide a comprehensive insight into the transient behavior of the MMC-based HVDC-AC grid. Such an understanding is essential to design the protection and control systems of the future HVDC-AC grids.
机译:本文研究了基于模块化多电平转换器(MMC)的HVDC电网及其主交流系统在交流侧扰动期间的动态相互作用。 HVDC网格由五个MMC站组成,这些MMC站通过电缆和架空线网络互连。交流电网包括十个涡轮发电机。研究在PSCAD平台上进行,包括交流和直流子系统的详细模型。报告的案例研究表明,没有HVDC辅助控制功能,并且基于常规的dq帧控制结构:1)每个MMC在交流侧机电瞬态振荡期间的行为几乎都是固定的吸收/供电; 2)MMC-HVDC电网有效地改善了仅通过HVDC电网连接的交流子系统之间的动态交互; 3)如果没有适当的规定,嵌入式MMC-HVDC电网会加剧主机交流系统的瞬变,例如区域间振荡。这些发现还与被广泛接受的观念相反,即即使没有辅助控制器,MMC-HVDC电网也必定会改善交流系统的动态性能。研究结果为基于MMC的HVDC-AC电网的瞬态行为提供了全面的见解。这种了解对于设计未来的HVDC-AC电网的保护和控制系统至关重要。

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