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Selection of Distribution Feeders for Implementing Distributed Generation and Renewable Energy Applications

机译:选择用于实现分布式发电和可再生能源应用的配电馈线

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摘要

Climate change concerns mandated renewable portfolio standards, lucrative government incentives, and accelerated cost reduction in renewables, and distributed energy applications are driving steep growth in system installations. Distributed energy resources (DERs) are not commonly connected to a bulk power transmission system but are interconnected near the load in the electric power distribution system. DER includes renewable energy such as wind and solar, fossil-fuel-based generation (microturbines and small gas turbines), and distributed energy storage. In this paper, a novel methodology is developed that ranks utility feeders for implementation of DER systems. This performance index is based on peak-load reduction, increased system capacity, load–generation correlation, and feeder load growth. This is based on a statistical measure that quantifies the relationship between loads and the stochastic nature of renewable resources. This allows the utility to gain insight into improved benefits from nondispatchable renewable resources such as solar and wind technologies as well as dispatchable DER technologies.
机译:气候变化涉及强制性的可再生能源投资组合标准,可观的政府激励措施以及可再生能源成本的加速降低,以及分布式能源应用正推动系统安装的急剧增长。分布式能源(DER)通常不连接到大功率输电系统,而是在配电系统中的负载附近互连。 DER包括风能和太阳能等可再生能源,基于化石燃料的发电(微型涡轮机和小型燃气轮机)以及分布式能源存储。在本文中,开发了一种新颖的方法,该方法对用于DER系统的公用事业馈电线进行排名。该性能指标基于峰值负载减少,系统容量增加,负载生成相关性和馈线负载增长。这基于统计量,该量度量化了负载与可再生资源的随机性之间的关系。这使公用事业公司能够深入了解不可分配的可再生资源(例如太阳能和风能技术以及可分配的DER技术)带来的收益。

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