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A comprehensive approach for analytical modeling of line commutated converter based multiterminal HVDC systems

机译:基于线路换向变流器的多端HVDC系统分析建模的综合方法

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This paper presents an analytical model of Line Commutated Converter (LCC) based Multiterminal (MT) High-Voltage Direct Current (HVDC) systems. The approach is based on space phasor transformation and provides a modular HVDC model, since every converter of the MT system is carried out as an independent network. For each switching state of the converter - which is either two valve conduction or commutation - the space phasor transformation provides a subsystem in the complex plane; each of this consists of a voltage source, a grid impedance and a transformer impedance. The commutation current of each converter is derived from the imaginary part network of the respective subsystem. A generalization of the real part network leads to a generic subsystem for all switching states of the converter. A succeeding connection with a state space model of the DC network is performed; applying mesh analysis yields a differential equation system in order to derive the DC current. To verify the accuracy of the developed model, a comparison with an electromagnetic transient (EMT) model is carried out, which shows the consistence of the dynamic behavior.
机译:本文提出了基于线路换向转换器(LCC)的多端子(MT)高压直流(HVDC)系统的分析模型。该方法基于空间相量转换并提供模块化的HVDC模型,因为MT系统的每个转换器都是作为独立的网络执行的。对于转换器的每个开关状态(是两个阀的导通还是换向),空间相量变换在复平面中提供了一个子系统。每一个都由一个电压源,一个电网阻抗和一个变压器阻抗组成。每个转换器的换向电流均来自相应子系统的虚部网络。实部网络的泛化导致了转换器所有开关状态的通用子系统。与DC网络的状态空间模型进行成功的连接;应用网格分析得出一个微分方程系统,以导出直流电流。为了验证开发模型的准确性,进行了与电磁瞬变(EMT)模型的比较,该模型显示了动态行为的一致性。

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