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Nonlinear H∞ control of a third-order synchronous generator model

机译:三阶同步发电机模型的非线性H∞控制

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controllers for a third-order model of a synchronous generator to attenuate external disturbance. It is supposed that an unknown mechanical perturbation is added to the nominal mechanical power so that drives the power system to an unknown equilibrium point. We will obtain the Hamilton-Jacobi-Isaacs (HJI) inequality related to disturbance attenuation problem of synchronous generator. For this system, HJI inequality is a complex problem to solve and direct solution is hardly reachable as a result, Taylor series approach will be used to solve HJI inequality until fourth order. It will be shown that in addition to stabilization of the system in vicinity of equilibrium point, the controllers also significantly diminish the effect of perturbation and in a limited time drive the states to their nominal values. Simulation results demonstrate the effectiveness and robustness of the nonlinear H
机译:同步发电机三阶模型的控制器,以减小外部干扰。假定将未知的机械扰动添加到标称机械功率,从而将功率系统驱动到未知的平衡点。我们将获得与同步发电机扰动衰减问题有关的汉密尔顿-雅各比-伊萨克(HJI)不等式。对于该系统,HJI不等式是一个要解决的复杂问题,因此直接解决方案难以获得,因此泰勒级数方法将用于求解HJI不等式直到四阶。将显示,除了将系统稳定在平衡点附近之外,控制器还显着减小了扰动的影响,并在有限的时间内将状态驱动到其标称值。仿真结果证明了非线性H的有效性和鲁棒性

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