多工况下基于WAMS信息的非步长分裂振荡中心偏移策略

Chunlei Xu, Lin Liu, Hangpeng Ni, Tao Lin, Ruyu Bi, Xunzhe Wang, Shuitian Li
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引用次数: 1

摘要

随着西南大型水电和交直流输电的日益发展,电力角稳定问题日益突出。基于等效三机系统模型,推导了电压幅值与多频振荡中心位置的函数表达式。该函数受功率电位幅值比、线路阻抗、功率电位频率和功率电位初始相位的影响。因此,失步分裂装置的性能受工作模式的变化和振荡中心影响的迁移的影响。因此,失步分裂装置不能很好地应用于多频失步场景。在此基础上,提出了一种新的基于WAMS信息的多操作模式下振荡中心偏移的非步长分割策略。该策略可获取WAMS提供的母线电压幅/相位信息和局部Ucosφ判据,确定失步振荡中心位置和失步周期。仿真结果表明,在多频失步振荡情况下,正确应用了电力系统不同运行模式对振荡中心迁移特性的影响,提出的基于WAMS信息的策略在不同运行模式下具有良好的适应性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Out-of-step Splitting Strategy Based on WAMS Information for Oscillation Center Migration under Multi-Operation Mode
The increasing development of the large-scale southwest hydropower and the AC /DC transmission leads to power angle stability issue. Based on equivalent three machine system model, this paper deduces the function expression of voltage amplitude and position of multi-frequency oscillation center. The function is affected by power potential amplitude ratio, line impedance, frequency of power potential and initial phase of power potential. Thus, the performance of the out-of-step splitting device is influenced by the change of operating mode and migration of oscillation center affect. Therefore, the out-of-step splitting device cannot be well applied in the multi-frequency out-of-step scenario. On this basis, this paper proposes a new out-of-step splitting strategy for oscillation center migration under multi-operation mode based on WAMS information. In detail, the proposed strategy can obtain bus voltage amplitude/phase information provided by WAMS and local Ucosφ criterion to determine position of out-of-step oscillation center and out-of-step period. The simulation results show that the influence of different power system operation modes on the migration characteristics of oscillation center is correctly applied in multi-frequency out-of-step oscillation scenario, and the proposed strategy based on WAMS information has a good adaptability under different operation modes.
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