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Dynamic Var Reserve Assessment in Multi-Infeed LCC-HVDC Networks

机译:多进料LCC-HVDC网络中的动态VAR储备评估

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Recently, multi-infeed line-commutated converter-based high-voltage direct currents (LCC-HVDCs) represent one of the most attractive ways to accommodate large-scale power transfer in main load centers. However, this approach deteriorates the dynamic var reserve (DVR) in the receiving-end power grid, especially in scenarios with heavy loads. If the system does not reserve sufficient dynamic var in advance, a severe voltage dip may occur and further lead to consecutive commutation failures, ultimately resulting in DC blocking and voltage collapse. To address the voltage/var control challenges, a robust DVR assessment method is proposed in this paper. This method is used to determine both the inductive and capacitive DVR and prevent cascading failures. First, continuous dynamic algebraic equations are formulated using a piecewise functional block approximation method for efficient application of second-order trajectory sensitivity analysis (SOTSA). Next, a robust DVR assessment model is formulated, and the corresponding computational strategy is introduced to effectively and accurately solve the large-scale problem. Finally, in numerical simulations, the computational efficiency and accuracy of the proposed method are verified using a simple system and operational data from a real system in the Eastern China Power Grid.
机译:最近,基于多馈线的线路通缩转换器的高压直流电流(LCC-HVDC)代表了适应主要负载中心的大规模电力传输的最具吸引力的方法之一。然而,这种方法在接收端电网中劣化了动态VAR储备(DVR),尤其是在具有重载的情况下。如果系统预先保留足够的动态var,则可能发生严重的电压倾度并进一步导致连续的换向故障,最终导致直流阻挡和电压崩溃。为了解决电压/ var控制挑战,本文提出了一种强大的DVR评估方法。该方法用于确定电感和电容DVR并防止级联故障。首先,使用分段功能块近似方法配制连续动态代数方程,以便高阶轨迹敏感性分析(Sotsa)有效应用。接下来,制定了一种强大的DVR评估模型,并引入了相应的计算策略以有效准确地解决了大规模的问题。最后,在数值模拟中,使用来自中国东部电网的真实系统的简单系统和操作数据来验证所提出的方法的计算效率和准确性。

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