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Managing intermittent renewables in a microgrid

机译:在微电网中管理间歇性可再生能源

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Renewable energy sources connected to the utility grid can achieve enough penetration to affect the distribution system since they are intermittent. An aging electric distribution system infrastructure, with an increasing demand for power quality, reliability, energy surety, and security, needs solutions for managing increasing penetration of renewables. By 2015, the global wind and solar Photovoltaic production capacities are expected to reach 430.6 GW and 125.9 GW, respectively. The potentials of DGs can be better realized in the concept of a microgrid rather than as individual sources. In this paper, the standard IEEE 34 bus is used as a feeder and managed as a microgrid. The system parameters are scaled down to 12kV level and two renewable sources including 500kW solar PV and 1MW wind turbine have been added to the system. The distribution system and the renewables are modeled using PSCAD software and practical constraints of the renewables are considered. The monitoring requirements of the microgrid and control requirements for these DGs are managed to maintain the power quality of the system when loads are varied and the renewable sources are modeled with annual variation at different locations.
机译:连接到公用电网的可再生能源可以实现足够的渗透,从而影响配电系统,因为它们是间歇性的。随着对电能质量,可靠性,能源安全性和安全性的需求日益增长,配电系统基础设施日趋老化,因此需要解决方案来管理可再生能源的日益普及。到2015年,全球风能和太阳能光伏产能预计分别达到430.6 GW和125.9 GW。 DG的潜力可以通过微电网的概念更好地实现,而不是作为单个来源。在本文中,标准的IEEE 34总线用作馈线,并作为微电网进行管理。系统参数已按比例缩小至12kV,并且已将两个可再生资源(包括500kW太阳能PV和1MW风力发电机)添加到系统中。使用PSCAD软件对配电系统和可再生能源进行建模,并考虑了可再生能源的实际约束。这些DG的微电网监控要求和控制要求得到管理,以在负载变化且可再生能源在不同地点每年变化时对系统进行建模,以维持系统的电能质量。

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