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Modeling and Simulation of the Anticipated Effects of the Synchronous Condenser on an Electric-Power Network with Participating Wind Plants

机译:参与风力发电的电力系统中同步冷凝器预期效果的建模与仿真

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Installing a synchronous condenser (SC) onto an electricity grid can assist in the areas of reactive power needs, short-circuit strength, and, consequently, system inertia and guarantees better dynamic voltage recovery. This paper summarizes the practical potential of the synchronous condenser coordinated in an electric-power network with participating wind plants to supply reactive power compensation and injection of active power at their point of common coupling; it provides a systematic assessment method for simulating and analyzing the anticipated effects of the synchronous condenser on a power network with participating wind plants. A 33-kV power line has been used as a case study. The results indicate that the effect of the adopted synchronous condenser solution model in the MATLAB/Simulink environment provides reactive power, enhances voltage stability, and minimizes power losses, while the wind power plants provide active power support with given practical grid rules.
机译:在电网上安装同步电容器(SC)可以满足无功功率需求,短路强度以及系统惯性等方面的需求,并确保更好的动态电压恢复。本文总结了同步电容器在电网中的实际潜力,该电网与参与的风电厂在其公共耦合点提供无功补偿和有功功率注入。它提供了一种系统的评估方法,用于模拟和分析同步冷凝器对参与风力发电的电网的预期影响。一条33 kV电力线已用作案例研究。结果表明,在MATLAB / Simulink环境中采用的同步电容器解决方案模型的效果提供了无功功率,增强了电压稳定性,并最大程度地降低了功率损耗,而风力发电厂在给定实用电网规则的情况下提供了有功功率支持。

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