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Adaptive nonlinear co-ordinated excitation and STATCOM controller based on Hamiltonian structure for multimachine-power-system stability enhancement

机译:基于汉密尔顿结构的自适应非线性协调励磁和STATCOM控制器,用于提高多机动力系统的稳定性

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Robust co-ordinated controller design is studied for multimachine power systems with both controllers of excitation and static synchronous compensation. Generalised Hamiltonian control theory is extended using boundary conditions, and a united Hamiltonian formulation for multimachine power systems is presented while the effect of transfer conductance is included. Furthermore, an energy-based control law is designed with L/sub 2/ gain techniques, and an adaptive mechanism is also introduced to the proposed feedback controllers to improve the robustness on the parametric uncertainty. Based on a generally developed Hamiltonian control method, decentralised robust co-ordinated controllers are proposed, and simulation results show that transient stability of the overall system can be enhanced significantly as well as voltage quality improvement, regardless of different conditions of operation points and fault locations.
机译:研究了同时具有励磁和静态同步补偿控制器的多机电源系统的鲁棒协调控制器设计。利用边界条件扩展了广义哈密顿控制理论,并给出了包含转移电导效应的多机动力系统的统一哈密顿公式。此外,利用L / sub 2 /增益技术设计了基于能量的控制律,并且还将自适应机制引入了所提出的反馈控制器中,以提高对参数不确定性的鲁棒性。基于普遍发展的哈密顿控制方法,提出了分散的鲁棒协调控制器,仿真结果表明,无论工作点和故障位置的不同,都能显着提高整个系统的暂态稳定性,并改善电压质量。 。

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