混合风热并网供电系统暂态过电压分析与快速估计

Xueting Cheng, Wenchao Zhang, Huiping Zheng, Mingdi Li, Zhiwei Xue, Boxuan Zhao, Xinyuan Liu, Xiuli Zhang
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引用次数: 0

摘要

针对混合风热捆绑供电系统中交流故障引起的暂态过电压难以快速计算,影响系统安全稳定运行的问题,提出了一种精细、快速的混合风热捆绑供电系统暂态过电压估计方法。为此,本文首先建立了混合风热电捆绑供电系统的供给侧等效模型。同时,考虑到储能对混合风热电捆绑供电系统的调节能力,对供电侧系统进行了改进,并对故障后的暂态过电压进行了校正。分析了风机在故障情况下的有功功率和无功功率的动态变化,给出了适合于混合风热电捆绑供电系统的暂态过电压计算流程。在此基础上,分析了暂态过电压过程中参数的变化规律,提出了一种利用参数辨识法快速估计风热混联供电系统暂态过电压的方法。最后,基于某本地交流输电系统的数据,建立了仿真模型。仿真结果表明,该方法提高了混合风热捆绑供电系统暂态过电压的计算精度和收敛速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transient Overvoltage Analysis and Rapid Estimation for Hybrid Wind-Thermal Power Bundling Supply System
In view of the problem that the transient overvoltage caused by AC fault is difficult to calculate quickly in the hybrid wind-thermal power bundling supply system, resulting in the safe and stable operation of the system, a fine and fast estimation method of transient overvoltage in the hybrid wind-thermal power bundling supply system is proposed. Therefore, this paper first establishes the supply side equivalent model of the hybrid wind-thermal power bundling supply system. At the same time, considering the regulation ability of the energy storage to the hybrid wind-thermal power bundling supply system, the supply side system is improved and the transient overvoltage after fault is corrected. The dynamic changes of active power and reactive power of fan under fault are analyzed, and the calculation flow of transient overvoltage suitable for hybrid wind-thermal power bundling supply system is given. On this basis, the variation law of parameters during transient overvoltage is analyzed, and a fast estimation method of transient overvoltage of hybrid wind-thermal power bundling supply system is proposed by using parameter identification method. Finally, a simulation model is established based on the data of a local AC transmission system. The simulation results verify that the proposed method can improve the calculation accuracy and convergence speed of transient overvoltage in the hybrid wind-thermal power bundling supply system.
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