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Power Flow Coloring System Over a Nanogrid With Fluctuating Power Sources and Loads

机译:具有波动电源和负载的纳米电网上的功率流着色系统

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摘要

Due to the excessive increase in environmental costs of nonrenewable energy resources, there have been government legislation, policies, and new technologies to control carbon emissions. The increase in renewable resources requires new strategies for the operation and management of the electricity. This paper presents the power flow coloring system, which gives a unique ID to each power flow between a specific power source and a specific power load. It allows us to design multiple power flow patterns between distributed and fluctuating power sources and loads taking into account energy availability, cost, and carbon dioxide emission. For implementation, this paper proposes a cooperative distributed control method, where a master-slave role assignment scheme of power sources and a time-slot-based feedback control are introduced to cope with power fluctuations, while keeping the voltage stable. The experimental results clarify the practical feasibility of our proposed method in managing distributed fluctuating power sources and loads.
机译:由于不可再生能源的环境成本过度增加,已经出现了政府立法,政策和控制碳排放的新技术。可再生资源的增长需要电力运营和管理的新战略。本文介绍了功率流着色系统,该系统为特定电源和特定功率负载之间的每个功率流提供唯一的ID。它使我们能够在考虑能源可用性,成本和二氧化碳排放的情况下,在分布式电源和波动电源与负载之间设计多种潮流模式。为了实现这一目的,本文提出了一种协作式分布式控制方法,该方法引入了电源的主从角色分配方案和基于时隙的反馈控制来应对功率波动,同时保持电压稳定。实验结果阐明了我们提出的方法在管理分布式波动电源和负载方面的实际可行性。

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