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Small Signal Stability of a Series Compensated Microgrid Operating in Islanded Mode

机译:在孤岛模式下运行的串联补偿微电网的小信号稳定性

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In this paper, small signal stability of a simple microgrid operating in islanded mode is analyzed by computing eigen value trajectories when the system is subjected to different parametric changes. Detailed mathematical modeling of a synchronous machine supplying a constant impedance load through a series compensated line is presented. The system is equipped with a speed governor and an Automatic Voltage Regulator (AVR) with a PI controller. Eigen value trajectories of the linearized system are computed by considering parametric changes in the load, degree of compensation, exciter gain and time constant, proportional and integral gains of the PI controller of the AVR and the droop of the speed governor. From the results obtained, it was observed that the system is subjected to oscillatory instability when the AVR parameters and the speed governor droop exceeded certain limits. Also, the system was completely stable when the load and the degree of compensation was varied in a wide range. These results indicate the importance of selection of proper values for parameters of microgrids operating in islanded mode.
机译:在本文中,通过计算系统在不同参数变化下的特征值轨迹,分析了在孤岛模式下运行的简单微电网的小信号稳定性。给出了通过串联补偿线提供恒定阻抗负载的同步电机的详细数学模型。该系统配有速度调节器和带有PI控制器的自动电压调节器(AVR)。线性化系统的本征值轨迹是通过考虑负载,补偿程度,励磁机增益和时间常数,AVR的PI控制器的比例增益和积分增益以及调速器的下垂的参数变化来计算的。根据获得的结果,可以观察到,当AVR参数和调速器下垂超过某些限制时,系统将遭受振荡不稳定。同样,当负载和补偿程度在较大范围内变化时,系统也完全稳定。这些结果表明为孤岛模式下运行的微电网的参数选择合适的值的重要性。

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