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首页> 外文期刊>Electric Power Components and Systems >Decentralized Non-linear Control for Improving the Electromechanical Transient Behavior of Multi-machine Power Systems
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Decentralized Non-linear Control for Improving the Electromechanical Transient Behavior of Multi-machine Power Systems

机译:分散非线性控制,改善多机电力系统的机电瞬态行为

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摘要

A Hamiltonian multi-machine formulation is utilized for designing nonlinear controllers with the purpose of helping to alleviate the electromechanical transient behavior after large disturbances. The controllers' design is based on a tracking problem, where the excitation voltage and the mechanical torque are employed as inputs. It is possible to utilize an observer for no accessible signals. The combined action of voltage and speed controllers achieves the objectives. Results are exhibited on two power systems in the open literature.
机译:哈密​​顿式多机公式用于设计非线性控制器,以帮助减轻大扰动后的机电瞬态行为。控制器的设计基于跟踪问题,其中激励电压和机械转矩用作输入。可以利用观察者获取无障碍信号。电压和速度控制器的共同作用实现了目标。结果在公开文献中的两个电源系统上均有展示。

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