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首页> 外文期刊>IEEE Transactions on Energy Conversion >Nonlinear Decentralized Disturbance Attenuation Excitation Control for Power Systems With Nonlinear Loads Based on the Hamiltonian Theory
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Nonlinear Decentralized Disturbance Attenuation Excitation Control for Power Systems With Nonlinear Loads Based on the Hamiltonian Theory

机译:基于哈密顿理论的具有非线性负载的电力系统非线性分散扰动衰减激励控制

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摘要

A novel nonlinear control scheme for disturbance attenuation of structure preserving multimachine power systems based on Hamiltonian theory is proposed in this paper. The proposed control scheme includes two steps: first, the dissipative Hamiltonian realization of structure preserving power system is completed using the singular perturbation approach in which the algebraic equations are considered as a limit of fast dynamics; second, a nonlinear decentralized disturbance attenuation excitation controller is designed without linearization to improve transient stability of power system as well as the robustness with respect to unknown exogenous disturbance in the sense of L2-gain. Simulation on a two-area system demonstrates that the proposed scheme can enhance transient stability of the system regardless of the exogenous disturbance.
机译:提出了一种基于哈密顿理论的结构保持多机电力系统扰动衰减的非线性控制新方案。所提出的控制方案包括两个步骤:首先,使用奇异摄动法完成了保结构动力系统的耗散哈密顿量实现,在该方法中,代数方程被视为快速动力学的极限。其次,设计了一种非线性分散干扰衰减励磁控制器,不进行线性化处理,以提高电力系统的暂态稳定性,并提高L2增益对未知外源干扰的鲁棒性。在两个区域的系统上的仿真表明,所提出的方案可以增强系统的暂态稳定性,而不受外界干扰的影响。

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