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Multiterminal voltage-sourced converter-based HVDC models for power flow analysis

机译:基于多端电压源转换器的HVDC模型进行潮流分析

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Two mathematical models for multiterminal voltage-sourced converter (VSC)-based HVDC are proposed in this paper. The first model assumes that all the converters are co-located in the same substation while the second model is a general one, in which DC network can be explicitly represented. For both models proposed, primary converters basically have the ability to independently control either active and reactive power or active power and voltage of the terminals while the secondary converter of the multiterminal VSC HVDC can be used to control terminal bus voltage and balance power exchange among the VSC converters. In addition, theoretic and numerical comparisons between the multiterminal VSC HVDC and the VSC FACTS controller-the Generalized Unified Power Flow Controller are also presented. Numerical examples are given on the IEEE 30-bus system, IEEE 118-bus system and IEEE 300-bus system.
机译:提出了基于多端电压源转换器(VSC)的HVDC的两个数学模型。第一个模型假定所有转换器都位于同一变电站中,而第二个模型则是通用模型,其中可以明确表示DC网络。对于所建议的两种模型,初级转换器基本上都具有独立控制端子的有功功率和无功功率或有功功率和电压的能力,而多端子VSC HVDC的次级转换器可用于控制端子总线电压并平衡各端子之间的功率交换。 VSC转换器。此外,还介绍了多端子VSC HVDC和VSC FACTS控制器-通用统一潮流控制器之间的理论和数值比较。在IEEE 30总线系统,IEEE 118总线系统和IEEE 300总线系统上给出了数值示例。

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