Reactive Power Demand Estimation and Dynamic Reactive Power Optimal Allocation for HVDC Receiving Network

Tianchen Zhao, Gong Zhang, Dehai Zhang, Haibo Li, Lei Zhang
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Abstract

 The transient voltage stability of the receiver system is severely challenged by the AC-DC interaction and the short electrical distance between individual DC drop points of the receiver network. Firstly, the dynamic reactive power of DC receiver system is analyzed in this paper. The analysis of the dynamic reactive power in the DC receiver system is presented in this paper. In addition, the evaluation method for the reactive power necessary to sustain the voltage of the converter bus AC system is proposed, taking into consideration the voltage drop mechanism when a DC block occurs. Finally, a mechanism for the reactive power dynamic optimization of the AC-DC receiving power network is proposed based on the sensitivity of the transient voltage track index. The optimal access node is determined by quantitatively evaluating the bus transient voltage increase of the inverter station when each node is connected to the dynamic compensation device of reactive power, and the simulation calculation is carried out by the actual power network to validate the performance of the methodology.
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高压直流接收网络的无功功率需求估计和动态无功功率优化分配
接收系统的瞬态电压稳定性受到交直流相互作用和接收网络各直流跌落点之间电气距离短的严重挑战。本文首先分析了直流受电系统的动态无功功率。本文对直流受电系统的动态无功功率进行了分析。此外,考虑到发生直流阻塞时的电压下降机制,提出了维持换流母线交流系统电压所需的无功功率的评估方法。最后,根据暂态电压轨迹指数的敏感性,提出了交直流受电网络无功功率动态优化机制。通过定量评估各节点接入无功功率动态补偿装置时逆变站的母线暂态电压升高情况,确定最优接入节点,并通过实际电网进行仿真计算,验证该方法的性能。
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