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A Novel Distributed Supplementary Control of Multi-Terminal VSC-HVDC Grids for Rotor Angle Stability Enhancement of AC/DC Systems

机译:用于转子角度稳定性的多终端VSC-HVDC网格的新型分布式补充控制AC / DC系统的转子角度稳定性

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This paper presents a distributed supplementary control for embedded Multi-Terminal VSC-HVDC (MTDC) grids to enhance the transient stability of the surrounding AC grid. Firstly, the need of supplementary controllers for embedded MTDC grids is demonstrated via the study of the Transient Energy Functions (TEF) of a simple hybridAC/DC power system. Then, the proposed control structure is presented. This control aims to enhance the angle stability of the surrounding AC system via the modulation of the active power references of the converters. The objective of the control is to enhance AC transient stability while keeping the power balance of the DC grid even if converters reach their active power limits. The proposed control uses frequency, and angle measurements at the Point of Common Coupling (PCC) of the converters. The idea behind the proposed strategy is to match the control actions, and limits of each pair (i, j) of converters. If converter i modulates its power, converter j modulates the same amount of power in the opposite direction. The concept of virtual links is used in this paper to represent this matching. Finally, the proposed controller is tested on a modified version of the IEEE 39 bus system using EMT simulations.
机译:本文介绍了嵌入式多端VSC-HVDC(MTDC)网格的分布式补充控制,以增强周围AC电网的瞬态稳定性。首先,通过研究简单的Hybridac / DC电力系统的瞬态能量函数(TEF)来证明对嵌入式MTDC网格的补充控制器的需要。然后,提出了所提出的控制结构。该控制旨在通过调制转换器的有源功率参考来增强周围AC系统的角度稳定性。控制的目的是提高AC瞬态稳定性,同时保持直流电网的功率平衡,即使转换器达到其有功电源限制。所提出的控制使用转换器的公共耦合点(PCC)的频率和角度测量。拟议策略背后的想法是匹配转换器的每对(I,j)的控制行动和限制。如果转换器I调制其功率,则转换器J在相反方向上调制相同的功率。本文使用虚拟链路的概念来表示此匹配。最后,建议的控制器在使用EMT模拟的IEEE 39总线系统的修改版本上进行测试。

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