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Application of bypass damping filter in suppressing subsynchronous resonance of multi-generator series-compensated systems

机译:旁路阻尼滤波器在抑制多发电机串联补偿系统次同步谐振中的应用

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摘要

Subsynchronous resonance (SSR) is one of the main risk factors for ac power transmission systems with series compensation. In bulk power transmission from generator groups, the diversity of shaft torsional modes of different generators makes the SSR suppression difficult, especially for the scenario where different types of generators are concentratedly connected. In this paper, it is shown that the bypass damping filter (BDF) can be applied to suppress SSR for series-compensated system with multi-type generators. An objective optimization method for the BDF parameter tuning is proposed. This method, with clear physical meaning and application convenience, considers the torsional stability criterion of all objective generators. The SSR damping effectiveness of the BDF with the proposed method is verified in a twenty-generator series-compensated system, through time domain simulation and torsional mode analysis. The result shows that the BDF can be an effective measure for suppressing both the torsional interaction effect and the transient torque amplification effect.
机译:次同步谐振(SSR)是带有串联补偿的交流输电系统的主要风险因素之一。在来自发电机组的大功率传输中,不同发电机的轴扭转模式的多样性使SSR抑制变得困难,特别是对于不同类型的发电机集中连接的情况。本文表明,对于具有多种类型发电机的串联补偿系统,可以应用旁路阻尼滤波器(BDF)来抑制SSR。提出了一种用于BDF参数整定的客观优化方法。该方法具有明确的物理意义和应用方便性,考虑了所有物镜发生器的扭转稳定性判据。通过时域仿真和扭转模态分析,在二十发电机串联补偿系统中验证了该方法对BDF的SSR阻尼效果。结果表明,BDF是抑制扭转相互作用效应和瞬时转矩放大效应的有效措施。

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