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Damping Coefficient Compensation of Generator by Novel Nonlinear Excitation Control

机译:新型非线性励磁控制的发电机阻尼系数补偿。

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In this paper, a novel nonlinear excitation control scheme has been proposed based on transient energy function and backstepping design method, which can not only compensate the damping coefficient of generator directly, but also guarantee asymptotical stability of the designed control system. For a SMIB (Single-Machine-Infinite-Bus) system, from the view of adding damping and enhancing system stability, an extra damping term is introduced into the motion equation, and then the designed system can be viewed as a series of two dynamic equation sets. Based on backstepping method, a transient energy function is constructed and the corresponding nonlinear excitation control law is deduced. In this control law, only two parameters are chosen, i.e. the expected damping coefficient increment and the expected voltage feedback gain. Executable approximations of the controller are also discussed. Simulation results confirm the validity of the controller and show that it is efficient when system operating condition changes.
机译:本文基于暂态能量函数和反推设计方法,提出了一种新颖的非线性励磁控制方案,该方案不仅可以直接补偿发电机的阻尼系数,而且可以保证设计控制系统的渐近稳定性。对于SMIB(单机无穷大)系统,从增加阻尼和增强系统稳定性的角度出发,在运动方程中引入了额外的阻尼项,然后将设计的系统视为一系列两个动态的系统。等式集。基于反推法,构造了暂态能量函数,并推导了相应的非线性励磁控制律。在该控制定律中,仅选择两个参数,即期望的阻尼系数增量和期望的电压反馈增益。还讨论了控制器的可执行近似值。仿真结果证实了该控制器的有效性,并表明当系统运行条件发生变化时,该控制器是有效的。

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