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首页> 外文期刊>International journal of energy technology and policy >Development of linear models of Static Var Compensators suitable for enhancing performance of power systems including wind farms
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Development of linear models of Static Var Compensators suitable for enhancing performance of power systems including wind farms

机译:静态无功补偿器线性模型的开发,适用于增强包括风电场在内的电力系统的性能

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In this work, the design of fixed-gain Proportional-Integral-Derivative (PID) controllers with multiple stage lead-lag compensators are investigated for improving further the dynamic impact of Static Var Compensators (SVCs). The analysis is based on the linearisation of the power system under study and the proper shift of critical eigenvalues, associated with the SVC and electric network, to the desired locations. In order to linearise the SVC an established fourth order model is used and the development of more complex models is attempted. This study deals with the development procedure of two different high order models for the SVC. Finally, one of them is adopted along with the fourth order model in order to design two different fixed-gain PID controllers with the multiple stage lead-lag compensator. The suitability and effectiveness of the resulted fixed-gain PID controllers is tested by performing digital simulations of a Greek power system including a wind farm under investigation.
机译:在这项工作中,研究了具有多级超前滞后补偿器的固定增益比例积分微分(PID)控制器的设计,以进一步改善静态无功补偿器(SVC)的动态影响。该分析基于所研究的电力系统的线性化以及与SVC和电网相关的关键特征值到所需位置的正确移动。为了线性化SVC,使用已建立的四阶模型,并尝试开发更复杂的模型。这项研究涉及SVC的两种不同高阶模型的开发过程。最后,其中之一与四阶模型一起采用,以设计带有多级超前滞后补偿器的两个不同的固定增益PID控制器。通过对包括风力发电场在内的希腊电力系统进行数字仿真,测试了所得固定增益PID控制器的适用性和有效性。

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