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Passivity-Based Nonlinear Excitation Control of Power Systems with Structure Matrix Reassignment

机译:带有结构矩阵分配的基于无源性的电力系统非线性励磁控制

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Passivity-based control is widely used in electronic circuit systems because it can utilize their internal structures to facilitate the controller design. In this paper, we first propose a dissipative Hamiltonian realization of power systems and discuss the disadvantages of the traditional passivity-based excitation controller. Then, a novel excitation controller is put forward to reassign the interconnection and dissipative matrix, and the corresponding Hamiltonian function. Simulation results verify that the proposed controller can effectively improve the transient stability of the power system.
机译:基于无源性的控制被广泛用于电子电路系统中,因为它可以利用其内部结构来简化控制器的设计。在本文中,我们首先提出了一种耗散的哈密顿电力系统实现,并讨论了传统的基于无源性的励磁控制器的缺点。然后,提出了一种新颖的励磁控制器,以重新分配互连和耗散矩阵以及相应的哈密顿函数。仿真结果表明,所提出的控制器可以有效地提高电力系统的暂态稳定性。

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