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Design of Decentralized PSSs for Multimachine Power System via Reduced Order Model

机译:基于降阶模型的多机电力系统分散式PSS设计

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The Power System Stabilizer (PSS) is added to excitation system to enhance the damping during low frequency oscillations. In this paper, the design of decentralized PSSs for 10 machines with 39 buses using fast output sampling method via reduced order model is proposed. In multi-machine power system the order of the states matrix is very large. The main objectives of order reduction is to design a controller of lower order which can effectively control the original high order system so that the overall system is of lower order and easy to understand. The state space matrices of the reduced order system are chosen such that the dominant eigenvalues of the full order system are unchanged. The other system parameters are chosen using the particle swarm optimization with objective function to minimize the mean squared errors between the outputs of the full order system and the outputs of the reduced order model when the inputs are unit step. Design of fast output sampling controllers via reduced order model using Particle Swarm Optimization (PSO) method is proposed for good damping enhancement for various operating points of multi-machine power systems. In fast output sampling technique, the nonlinear model of 10 machine and 39 bus system is linearized at different operating point and a linear model is obtained. A robust fast output sampling feedback gain which realizes output injection gain is obtained using LMI approach. This robust fast output sampling control is applied to non-linear model of a Multi-machine system at different operating points. This method gives very good results in the design of Power System Stabilizers and takes less computation time in operation of power system.
机译:在励磁系统中增加了电源系统稳定器(PSS),以增强低频振荡期间的阻尼。本文通过降阶模型,采用快速输出采样的方法,设计了10台39总线机器的分散PSS。在多机电源系统中,状态矩阵的阶数非常大。降阶的主要目的是设计一个低阶控制器,该控制器可以有效地控制原始的高阶系统,从而使整个系统处于低阶且易于理解。选择降阶系统的状态空间矩阵,以使全阶系统的主要特征值不变。使用具有目标函数的粒子群优化算法选择其他系统参数,以在输入为单位步长时最小化全阶系统输出与降阶模型输出之间的均方误差。为了降低多机动力系统各工作点的阻尼,提出了一种基于粒子群优化(PSO)的降阶模型快速输出采样控制器设计方案。在快速输出采样技术中,将10个机器和39个总线系统的非线性模型在不同的工作点处线性化,并获得线性模型。使用LMI方法可获得可实现输出注入增益的稳健的快速输出采样反馈增益。这种鲁棒的快速输出采样控制应用于多机器系统在不同工作点的非线性模型。该方法在电力系统稳定器的设计中取得了很好的效果,并且在电力系统的运行中花费了更少的计算时间。

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