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首页> 外文期刊>IEEE Transactions on Power Systems >Optimum control strategies for transient as well as oscillatory instability of power systems
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Optimum control strategies for transient as well as oscillatory instability of power systems

机译:电力系统暂态和振荡不稳定性的最佳控制策略

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摘要

A coordinated dynamic braking strategy and excitation control for arresting the first swing instability as well as subsequent oscillations in a power system is proposed. Comparison is made between braking resistor, resistor-reactor and resistor-capacitor strategies with and without excitation control. The control strategies are obtained in terms of system states and other measurable quantities. Assumptions that the reference machine is large and that it is not equipped with dynamic braking lead to a simpler control strategy. The excitation strategy can also be significantly simplified by relaxing the constraints on the rotor angle. Computer simulation of a multimachine power system shows that a coordinated application of braking resistor-capacitor and excitation strategies controls the transients effectively.
机译:提出了一种协调的动态制动策略和励磁控制,用于抑制电力系统中的第一次摆动不稳定性以及随后的振荡。比较有无励磁控制的制动电阻,电阻电抗器和电阻电容策略。根据系统状态和其他可测量的数量获得控制策略。假设参考机器很大,并且没有配备动态制动,则会导致控制策略更简单。通过放松对转子角度的限制,还可以显着简化励磁策略。多机电源系统的计算机仿真表明,制动电阻器电容器和励磁策略的协同应用可以有效地控制瞬变。

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