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Effective topologies for large scale integration of renewable energy with the grid

机译:用于可再生能源与电网大规模集成的有效拓扑

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The paper addresses several constraints associated with wide scale deployment of grid integrated renewable energy system such as stability, active and reactive power regulation, LVRT (Low Voltage Ride Through), power factor improvement and demand side management. While highlighting its challenges, potential solutions to the problems are also discussed using different FACTS (Flexible AC Transmission system) family devices and PHEV (Plugin Hybrid Electric Vehicles). Finally a typical power system is modeled on Matlab-Simulink showing a voltage compensation system of a power system using SVC and the grid integration with active and reactive power control using PHEV.
机译:本文解决了与大规模集成电网可再生能源系统相关的一些约束,例如稳定性,有功和无功功率调节,LVRT(低电压穿越),功率因数改善和需求侧管理。在强调其挑战的同时,还讨论了使用不同的FACTS(柔性交流传输系统)系列设备和PHEV(插头式混合动力电动汽车)解决问题的方法。最后,在Matlab-Simulink上对典型的电力系统进行了建模,显示了使用SVC的电力系统的电压补偿系统以及使用PHEV进行的有功和无功功率控制的电网集成。

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