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Leaky Bucket Approach Implementing Anticipatory Control for Nodal Power Flow Management in Smart Energy Systems

机译:泄漏斗型方法实施智能能源系统中节清电流管理的预期控制

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The electric power grid is the essential infrastructure for electric power delivery from generation through transmission, distribution to consumption node. The lack of large scale energy storage makes the grid unstable and fragile. In smart energy systems, power flow is regulated by pricing signals enabled through the communication component of the smart grid. This paper presents a leaky bucket approach that uses anticipatory control for power flow management in smart energy systems. The leaky bucket determines the flow rate with respect to a node of the power grid by taking into account the current state of the grid as well as current and anticipated electricity prices. The overall goal is to optimize power system performance and minimize the electricity consumption cost to the customers connected to a node. The proposed approach is tested on data obtained by the Gridlab-D simulation platform. Results demonstrate the effectiveness of the leaky bucket approach using anticipatory control in managing power flow and reducing overall cost to the consumer.
机译:电力电网是通过传输,分配给消费节点的产生的电力输送基本基础设施。缺乏大规模的能量存储使得网格不稳定和脆弱。在智能能量系统中,通过通过智能电网的通信组件实现的定价信号来调节电流。本文介绍了一种泄漏的铲斗方法,使用智能能量系统中的电力管理预期控制。泄漏桶通过考虑电网的当前状态以及当前的电力价格来确定电网的节点的流速。总体目标是优化电力系统性能,并最大限度地减少连接到节点的客户的电力消耗成本。在GridLab-D仿真平台获得的数据上测试了所提出的方法。结果证明了利用预期控制在管理电流中的预期控制和降低消费者总成本的漏桶方法的有效性。

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