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Real time simulation based study of effect of exciter gain on control mode oscillations in power system

机译:基于实时仿真的励磁增益对电力系统控制模式振荡的影响

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A power system consists of the generating machine and transmission network in which the generating machine includes turbine, alternator and excitation system. The ability of power system to remain stable despite of small frequency oscillations occurring in the system is called small signal stability. A generating system operating without voltage regulation may have the problem of steady increase in rotor angle due to lack of synchronizing torque. With voltage regulation the power system may have the sustained oscillations due to negative damping torque. In this paper the effect of exciter gain on small signal oscillations has been studied. A single machine infinite bus system (SMIB) is taken as test system and the simulation result is obtained for variation in electrical torque, rotor angle variation and rotor speed variation for different values of exciter gain.
机译:动力系统由发电机组和传输网络组成,其中发电机组包括涡轮机,交流发电机和励磁系统。电力系统即使系统中发生小频率振荡也能保持稳定的能力称为小信号稳定性。由于缺乏同步转矩,在没有电压调节的情况下运行的发电系统可能具有转子角稳定增加的问题。通过电压调节,由于负阻尼扭矩,电源系统可能会持续振荡。本文研究了激励器增益对小信号振荡的影响。以单机无穷大总线系统(SMIB)作为测试系统,并针对不同的励磁增益值,获得了转矩,转子角变化和转子速度变化的仿真结果。

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