孤立电力系统功率振荡对发电机/水轮机相互作用的影响

B. Cassimere, Don E. Martin, B. F. Evans, Sheng Yang
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引用次数: 0

摘要

本文论证了大型同步电动机驱动的压缩机对隔离电力系统中水轮机/发电机功率振荡的影响。本文介绍了隔离系统及其电气和机械系统的建模方法。该系统用扭矩脉冲对机械压缩机进行建模,这些扭矩脉冲以电流脉动的形式转化为电力系统,然后通过发电机并以功率振荡的形式进入发电机/涡轮机械系统。这些振荡会影响涡轮机/发电机的轴扭模态,本文对这种影响进行了详细介绍。该评估的关键是将电气同步电机模型与机械系统模型相结合。涡轮扭转模型的有效性至关重要,并与用于涡轮设计的制造商模型进行了校核。本文回顾了减轻功率振荡影响的各种方案,并比较了每种方案的有效性。评估了几种运行模式对每个发电机/涡轮机的振荡频率和扭矩大小和功率影响。文中详细介绍了各种缓解方案和各种运行模式的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power oscillation impact on generator/turbine interaction for an isolated power system
This paper demonstrates the impact power oscillations have on the turbines/generators on an isolated power system from large synchronous motor-driven compressors. The paper describes the isolated system and the methods used to model the electrical and mechanical system. The system models the mechanical compressors with torque pulses which are translated into the electrical system as current pulsations and then through the generators and onto the generator/turbine mechanical system as power oscillations. These oscillations can impact the shaft torsional modes of the turbines/generators and this impact is detailed in this paper. The key to this evaluation was the integration of the electrical synchronous machine models with the mechanical system models. The validity of the turbine torsional model was critical and was checked against the manufacturer's model used for the turbine design. The paper reviews various options to mitigate the impact of the power oscillations and compares the effectiveness of each option. Several operating modes are evaluated for the oscillation frequency and magnitude of torque and power impact on each generator/turbine. The results of each mitigating option and various operating modes are detailed in the paper.
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