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A Novel Method to Determine Droop Coefficients of DC Voltage Control for VSC-MTDC System

机译:用于确定VSC-MTDC系统DC电压控制下垂系数的新方法

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For droop control in voltage source converter based multi-terminal HVDC systems, the determination of droop coefficients is a key issue, which directly affects both power distribution and DC control performances. This paper proposes a novel design of droop coefficients considering the requirements of power distribution, DC voltage control and system stability. Considering the power margins of different converters, the ratio relationship among droop coefficients is established. Converters with larger power margins take bigger portion of power mismatch to avoid overload problem. Furthermore, the integral square error of converters DC voltage is adopted as the DC voltage control performance index, and optimization of droop coefficients to achieve coordinated DC voltage control of steady-state deviation and transient variation, is derived. Finally, the constraint of droop coefficients is established to guarantee the DC system stability after power disturbance. Case studies are conducted on the Nordic 32 system with an embedded 4-terminal DC grid to demonstrate the feasibility and effectiveness of the proposed droop control scheme.
机译:对于基于电压源转换器的多终端HVDC系统中的下垂控制,Droop系数的确定是一个关键问题,它直接影响功率分配和直流控制性能。本文提出了考虑配电,直流电压控制和系统稳定性要求的下垂系数的新颖设计。考虑到不同转换器的功率边缘,建立了下垂系数之间的比率关系。具有较大功率边缘的转换器采用更大的功率不匹配,以避免过载问题。此外,推导了推导器,采用转换器DC电压的整体方误差作为DC电压控制性能指标,并导出垂直稳态偏差和瞬态变化的协调DC电压控制的下垂系数。最后,建立了下垂系数的约束,以保证电力干扰后的直流系统稳定性。案例研究是在北欧32系统上进行嵌入式4末端DC网格,以证明所提出的下垂控制方案的可行性和有效性。

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