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Microgrid Generation Capacity Design With Renewables and Energy Storage Addressing Power Quality and Surety

机译:带有可再生能源和能量存储的微电网发电能力设计解决了电能质量和安全问题

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Microgrids are receiving attention due to the increasing need to integrate distributed generations and to insure power quality and to provide energy surety to critical loads. Since renewables need to be in the mix for energy surety, a high renewable-energy penetrated microgrid is analyzed in this paper. The standard IEEE 34 bus distribution feeder is adapted and managed as a microgrid by adding distributed generation and load profiles. The 25 kV system parameters are scaled down to 12 kV and renewable sources including solar PV and wind turbines, an energy storage system, and a diesel generator for islanded mode have been added to the 34-bus system. The distribution generations (DG) and renewables are modeled in detail using PSCAD software and practical constraints of the components are considered. The monitoring of the microgrid for measuring power quality and control requirements for these DGs and storage are modeled to maintain the power quality of the system when loads are varied. Renewable sources are modeled with seasonal variation at different locations. The microgrid is monitored at number of buses and the power quality issues are measured and indexes are calculated. This paper proposes a generalized approach to design (determine the capacity requirements) and demonstrates the management of microgrids with metrics to meet the power quality indexes.
机译:由于越来越需要集成分布式发电,确保电能质量并为关键负载提供能源保证,微电网正受到关注。由于需要混合使用可再生能源以确保能源安全,因此本文对高可再生能源渗透的微电网进行了分析。通过添加分布式发电和负荷配置文件,将标准IEEE 34总线配电馈线作为微电网进行调整和管理。 25 kV系统参数可缩小至12 kV,并且34总线系统中增加了可再生能源,包括太阳能PV和风力涡轮机,储能系统和孤岛模式柴油发电机。使用PSCAD软件对配电代(DG)和可再生能源进行了详细建模,并考虑了组件的实际约束。对用于测量电能质量的微电网监控以及这些DG和存储的控制要求进行了建模,以在负载变化时保持系统的电能质量。对可再生资源的建模具有不同位置的季节性变化。监控微电网的总线数量,并测量电能质量问题并计算指标。本文提出了一种通用的设计方法(确定容量要求),并演示了具有满足电能质量指标的度量标准的微电网管理。

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