考虑下垂控制和调制指标的多端直流统一潮流计算

Xuekui Wang, Junqiang Zhang, Yu Sun, Jiufeng He
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引用次数: 0

摘要

多端电压源变换器交直流混合电网的潮流计算是保证混合电网稳定运行的基础。本文将不同的VSC控制策略引入潮流中,并将自适应下垂控制系数、调制指数作为潮流模型的变量。然后得到了混合电网不同状态下VSC的下垂系数值和调制。本文通过对连接交流电网的变频调速站电路的转换,建立了变频调速控制参数与输出功率的直接关系。统一了混合电网中VSC-MTDC在各种控制策略下的潮流计算方法。为了防止VSC调制指数(MI)超标,可以从潮流结果中得到作为潮流方程变量的VSC调制。MI值可以通过潮流分析,避免VSC过调。最后通过算例验证了模型的有效性和方法的快速收敛性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unified Power Flow Calculation for Multi-terminal Direct Current (MTDC) Considering Droop Control and Modulation Index
Power flow calculation of AC/DC hybrid power grids with multi-terminal voltage source converters (VSC-MTDC) is the basis for stable operation of hybrid power grid. This paper incorporates different VSC control strategies into the power flow, and considers adaptive droop control coefficients, modulation index as variables of power flow model. Then droop coefficient value and modulation of VSC under different states of hybrid power grid are obtained. The article establishes direct relation between VSC control parameters and output power, through transferring the circuit of VSC stations which connects to AC power grid. It unifies the power flow calculation methods of the VSC-MTDC in hybrid power grid under various control strategies. In order to prevent the VSC modulation index (MI) from exceeding the limit, the modulation of VSC as a variable of power flow equation can be obtained from power flow results. MI value can be analyzed through power flow to avoid overmodulating of VSC. Finally, an example verifies the validity of the model and fast convergence of the method.
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