两区互联电力系统交流联络线功率波动机理研究

Weiwei Zhao, B. Xiao, Zong-qiang Zhang, Ping Liang
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引用次数: 1

摘要

本文推导了两区互联电力系统在电力冲击时刻的联络线功率波动表达式。本文将扰动引起的功率波动过程分为扰动前、扰动中、扰动后三个阶段,建立了各阶段的动力学方程,并推导了状态点的变化。基于冲击功率在电力系统中的分布理论,分析了两区互联电力系统在扰动作用下的接线功率变化。受扰动后,联络线功率呈现区域间振荡模式的阻尼振荡,稳态功率值由两区域发电机的总惯性时间常数决定。同时,导出了类似于二阶系统阶跃响应的功率波动表达式和第一次功率摆动时的峰值功率表达式。峰值功率主要由两区电力系统各单元的总惯性时间常数之比与区间波动模式的阻尼比决定。通过简单的系统仿真方法和对华北电网和华中电网互联系统发电机跳闸事故的分析,验证了所提方程的有效性。研究结论有助于操作人员和工程人员掌握两区互联电力系统交流联络线功率波动的动态特性。研究结果为制定互联电力系统的运行方案和控制措施提供了科学依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the mechanism of AC tie-line power fluctuation for a two-area interconnected power system
The expression of the tie-line power fluctuation of a two-area interconnected power system at the moment of power impact is derived in this paper. The power fluctuation process caused by a disturbance is divided into three stages, namely before, during and after the disturbance, and the dynamic equation for each stage is established and the variation of the state point is derived in this study. Based on the theory of the distribution of impact power in the power systems, the change of the tie-line power of a two-area interconnected power system after a disturbance is analyzed. After a disturbance, the tie-line power takes on damped oscillation of inter-area oscillation mode, and the steady-state power value is determined by the total inertia time constant of the generators in both areas. Meanwhile, the expression of power fluctuation, which is similar to the step response of a second-order system and the formula for the peak power during the first power swing are derived. The peak power is mainly determined by the ratio of total inertia time constants of the two-area power system's units and the damping ratio of the inter-area fluctuation mode. The result effectiveness of the proposed equations is verified by the simple system simulation method and the analysis on the generator-tripping contingency of the North China Power Grid and Central China Power Grid interconnected system. The study's conclusions are helpful for operators and engineers to master dynamic characteristics of power fluctuation on AC tie-lines of two-area interconnected power systems. The study provides the scientific basis for arranging operating schemes and control measures of interconnected power systems.
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