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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Superconducting Magnetic Energy Storage (SMES) for Energy Cache Control in Modular Distributed Hydrogen-Electric Energy Systems
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Superconducting Magnetic Energy Storage (SMES) for Energy Cache Control in Modular Distributed Hydrogen-Electric Energy Systems

机译:超导电磁储能(SMES),用于模块化分布式氢电能源系统中的能量缓存控制

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摘要

The proposed energy cache control enables fast compensation of stochastic power fluctuations through the use of Superconducting Magnetic Energy Storage (SMES) connected to the DC bus of Distributed Generation (DG). The term energy cache control is chosen to reflect its analogy to the utilization of the data cache in computers. The SMES provides an energy cache for other types of storage with a higher capacity of energy but also longer response times. Together, the two types of storage provide high controllability over diverse time scales. The SMES so enables the creation of modular DG building blocks which can be readily connected to the network in a plug-and-supply mode. In the developed case study, the SMES is part of a DG unit of a model commercial facility that includes renewable-based electric power generation and a hydrogen-electric conversion and storage plant composed of an electrolyser, a fuel cell, and tanks. It is shown how the cache energy control deals with fast fluctuations of power generation and load that are caused by changing wind and sudden power demands of an elevator, respectively. Through its shock-absorbing role, the energy cache control of the SMES prevents the involved disturbances from propagating over the network interface and makes the DG unit behave as a good citizen in terms of network integration.
机译:通过使用连接到分布式发电(DG)的DC总线的超导磁储能(SMES),所提出的能量缓存控制能够快速补偿随机功率波动。选择术语“能量缓存控制”以反映其类似于计算机中数据缓存的利用率。 SMES为其他类型的存储提供了能量缓存,具有更高的能量容量,但响应时间也更长。两种类型的存储一起在不同的时间范围内提供了高可控性。因此,SMES可以创建模块化DG构建块,该模块可以以即插即用模式轻松连接到网络。在已开发的案例研究中,SMES是模型商业设施的DG单元的一部分,该模型包括可再生能源发电以及由电解槽,燃料电池和储罐组成的氢电转换和存储工厂。它显示了高速缓存能量控制如何分别应对因风的变化和电梯突然的电力需求而引起的发电和负荷的快速波动。通过其减震作用,SMES的能量缓存控制可防止相关干扰在网络接口上传播,并使DG单元在网络集成方面表现良好。

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