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Direct sizing and characterization of Energy Storage Systems in the Energy-Power plane

机译:能量-动力平面中储能系统的直接尺寸和特性

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This paper presents an original sizing method for Energy Storage Systems (ESS) based on directly matching their capabilities - as specified by their energy-power Safe Operation Area (SOA) in the Energy-Power (EP) plane - with the energy and power demand required to accomplish their missions. Starting from the system requirements and from an energy management strategy, the power demanded by a set of representative operating scenarios and its associated energy are calculated and represented as trajectories in the EP plane. The objective is to size the ESS such as its SOA contains these trajectories. Comparison between different technologies of Energy Storage Devices (ESDs) is possible using this SOA characterization. Special attention should be paid to compare specific SOAs across devices. Diverse energy management strategies can be synthesized in the EP plane where they can be compared and analyzed. The sizing method converges extremely fast and is suitable for its integration in an optimization loop. The method allows to determine directly and efficiently the technology and the size most appropriate (in terms of indicators such as mass or cost) to a given EP demand. In the paper, three different technologies (SuperCapacitor, Li-Ion and H-2/O-2 batteries) are characterized and compared in terms of sizing synthesis. (C) 2018 International Association for Mathematics and Computers in Simulation (IMACS). Published by Elsevier B.V. All rights reserved.
机译:本文提出了一种基于能量存储系统(ESS)的原始大小确定方法,该方法基于直接将其功能(由其在能量动力(EP)平面中的能量动力安全运行区(SOA)指定)与能量和动力需求相匹配)需要完成他们的任务。从系统要求和能源管理策略开始,计算出一组具有代表性的运行方案所需的功率及其相关能量,并将其表示为EP平面中的轨迹。目的是确定ESS的大小,例如其SOA包含这些轨迹。使用此SOA表征,可以在不同的能量存储设备(ESD)技术之间进行比较。应该特别注意跨设备比较特定的SOA。可以在EP平面中综合各种能量管理策略,在此可以对它们进行比较和分析。调整大小的方法收敛极快,适合于将其集成到优化循环中。该方法允许直接和有效地确定最适合给定EP需求的技术和尺寸(根据诸如质量或成本等指标)。在本文中,对三种不同的技术(超级电容器,锂离子电池和H-2 / O-2电池)进行了表征,并根据施胶合成进行了比较。 (C)2018国际模拟数学与计算机协会(IMACS)。由Elsevier B.V.发布。保留所有权利。

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