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Generation capacity design for a microgrid for measurable power quality indexes

机译:微电网的发电容量设计,可用于可测量的电能质量指标

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Microgrids are receiving a lot of attention to utilize distributed generations in a sub-system and provide higher efficiency and reliability and support local loads. A high renewable-energy penetrated microgrid is studied in this paper. The distribution system and the loads in the microgrid are represented by a properly scaled 12kV IEEE 34 bus system. The central power is replaced with a 1.875MVA base-load diesel generator and a 250kW solar PV and a 500kW wind generations are added at nodes 848 and 890, respectively. The major loads in this microgrid are then modeled with a load profile. Special variable kW and kVAR loads were modeled to include load demand variations. The wind and solar PV plants are modeled with wind and solar power profiles. The microgrid system including the source variations and demand variations is simulated using PSCAD software. The microgrid is monitored at number of buses and the power quality issues are measured and indexes are calculated. This system can be used to determine the capacity requirements for the non-renewable generators to maintain the power quality indexes.
机译:MicroGrids在子系统中使用分布式代理并提供更高的效率和可靠性并支持本地负载。本文研究了一种高可再生能量的微电网。微电网中的分配系统和负载由适当缩放的12kV IEEE 34总线系统表示。中央电源用1.875MVA碱基负载柴油发电机,分别在节点848和890中添加250kW太阳能PV和500kW的风力代。然后用负载曲线建模该微电网中的主要负载。特殊变量KW和KVAR负载被建模为包括负载需求变化。风和太阳能光伏设备用风和太阳能型材进行建模。使用PSCAD软件模拟包括源变化和需求变化的微电网系统。在公共汽车的数量下监控微电网,测量电源质量问题并计算索引。该系统可用于确定不可再生发电机的容量要求,以维持电能质量指标。

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