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Decentralized Controls and Communications for Autonomous Distribution Networks in Smart Grid

机译:智能电网中自主配电网的分散控制和通信

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The traditional power grid system was constructed in a centralized and radial topology where power is generated and delivered from one end to the other. Conventional methods for unidirectional power flow analysis will no longer be effective to control renewable energy sources implemented at the consumption sector efficiently; new strategies are called for to facilitate the bidirectional flow incurred by power production of the distributed energy resource units. The transformation will require intelligent distribution automation by means of decentralized power management as well as information and communications technologies to actualize smart grid modernization. In this paper, we design autonomous distribution networks that take scalability into account by dividing the legacy distribution network into a set of subnetworks. We tackle the power flow and power balance issues individually in parallel to optimize the global distribution operation by our proposed power-control method. Meanwhile, we propose an overlay multi-tier communications infrastructure for the underlying power network to analyze the traffic of data information and control message required for associated power flow operation. Based on the proposed schemes, we show that we can potentially improve the utilization of renewable energy production and achieve data traffic reduction under decentralized operations as compared to legacy centralized management.
机译:传统的电网系统是在集中式和放射状拓扑结构中构建的,在该拓扑结构中,发电是从一端到另一端。单向潮流分析的常规方法将不再有效地控制在消费部门实施的可再生能源;需要新的策略来促进由分布式能源单元的发电产生的双向流动。转型将需要通过分散的电源管理以及信息和通信技术实现智能配电自动化,以实现智能电网现代化。在本文中,我们设计了自治的配电网络,通过将传统的配电网络划分为一组子网来考虑可伸缩性。我们通过建议的功率控制方法并行解决功率流和功率平衡问题,以优化全球配电运营。同时,我们为基础电力网络提出了一种覆盖式多层通信基础设施,以分析相关电力流操作所需的数据信息和控制消息的流量。基于提议的方案,我们表明与传统的集中式管理相比,在分散操作下我们可以潜在地提高可再生能源生产的利用率并减少数据流量。

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