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首页> 外文期刊>Energy Conversion & Management >A multi-agent decentralized energy management system based. on distributed intelligence for the design and control of autonomous polygeneration microgrids
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A multi-agent decentralized energy management system based. on distributed intelligence for the design and control of autonomous polygeneration microgrids

机译:基于多智能体的分散式能源管理系统。分布式智能的微电网设计和控制的分布式智能研究

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The autonomous polygeneration microgrid topology has been developed in order to cover holistically needs in a remote area such as electrical energy, space heating and cooling, potable water through desalination and hydrogen as fuel for transportation. The existence of an advanced energy management system is essential for the operation of an autonomous polygeneration microgrid. So far, energy management systems based on a centralized management and control have been developed for the autonomous polygeneration microgrid topology based on computational intelligence approaches. A decentralized management and control energy management system can have important benefits, when taking into consideration the autonomous character of these microgrids. This paper presents the design and investigation of a decentralized energy management system for the autonomous polygeneration microgrid topology. The decentralized energy management system gives the possibility to control each unit of the microgrid independently. The most important advantage of using a decentralized architecture is that the managed microgrid has much higher chances of partial operation in cases when malfunctions occur at different parts of it, instead of a complete system breakdown. The designed system was based on a multi-agent system and employed Fuzzy Cognitive Maps for its implementation. It was then compared through a case study with an existing centralized energy Management system. The technical performance of the decentralized solution performance is on par with the existing centralized one, presenting improvements in financial and operational terms for the implementation and operation of an autonomous polygeneration microgrid. (C) 2015 Elsevier Ltd. All rights reserved.
机译:自主的多代微电网拓扑已经开发出来,可以满足偏远地区的整体需求,例如电能,空间加热和冷却,通过脱盐的饮用水和氢作为运输燃料。先进的能源管理系统的存在对于自主多联产微电网的运行至关重要。到目前为止,已经为基于计算智能方法的自主多代微电网拓扑开发了基于集中式管理和控制的能源管理系统。考虑到这些微电网的自主性,分散式的管理和控制能源管理系统可以具有重要的好处。本文介绍了用于自主多代微电网拓扑的分散式能源管理系统的设计和研究。分散式能源管理系统使独立控制微电网的每个单元成为可能。使用分散式架构的最重要优点是,如果在微电网的不同部分发生故障,则受管微电网具有更高的部分运行机会,而不是整个系统崩溃。设计的系统基于多主体系统,并采用模糊认知图进行实施。然后通过案例研究将其与现有的集中式能源管理系统进行比较。分散式解决方案性能的技术性能与现有的集中式解决方案性能相当,为自主多联产微电网的实施和运营带来了财务和运营方面的改进。 (C)2015 Elsevier Ltd.保留所有权利。

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