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Comparison between centralized and decentralized storage energy management for Direct Wave Energy Converter Farm

机译:Direct Wave Energy Converter Farm集中式和分散式储能管理的比较

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This article compares the sizes of an Energy Storage System (ESS) with two control types in order to smooth a Direct Wave Energy Converter (DWEC) Farm Production, namely a centralized one that deals with the PCC power and a decentralized one that deals with each unit power production. The main objective is to compare the two controls on the basis of their life cycle cost. The SEAREV project is the Direct Wave Energy Converter used as an example in this paper. The ESS is necessary for grid integration in the case considered here due to the flicker constraint, which is not being satisfied without storage. The optimization strategies for both the sizing and the management of an Energy Storage System (ESS) will be described: the rule-based energy management approach depends on the State of Energy of this ESS as well as the power produced by the DWEC unit or the DWEC farm. This management strategy has been optimized for each size in order to reduce aging speed while strictly respecting the flicker criterion. The final design is expected to minimize total system cost. The centralized control clearly allowed smaller capacity, but has some drawbacks for the losses in the rest of the farm.
机译:本文将能量存储系统(ESS)的尺寸与两种控制类型进行比较,以简化Direct Wave能量转换器(DWEC)的农场生产,即集中式处理PCC功率,分散式处理每种功率单位发电量。主要目标是根据两个控件的生命周期成本进行比较。 SEAREV项目是直接波能量转换器,以本文为例。由于闪烁约束,在此处考虑的情况下,ESS对于网格集成是必需的,如果不进行存储,则无法满足要求。将描述能量存储系统(ESS)的规模和管理的优化策略:基于规则的能量管理方法取决于该ESS的能量状态以及DWEC单元或DWEC单元产生的功率。 DWEC农场。已针对每种尺寸对这种管理策略进行了优化,以降低老化速度,同时严格遵守闪烁标准。最终设计有望使总系统成本降至最低。集中控制显然允许较小的容量,但是对于其余农场的损失也有一些缺点。

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