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首页> 外文期刊>Energy Conversion, IEEE Transactions on >A Vanadium-Redox-Flow-Battery Model for Evaluation of Distributed Storage Implementation in Residential Energy Systems
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A Vanadium-Redox-Flow-Battery Model for Evaluation of Distributed Storage Implementation in Residential Energy Systems

机译:用于评估住宅能源系统中分布式存储实现的钒-氧化还原-液流-电池模型

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摘要

A vanadium-redox-flow-battery (VRFB) model suitable for annual energy feasibility analyses of distributed storage implementation is presented in this paper. The validation of the proposed 6-kW/20-kWh VRFB semiempirical model, which takes into account auxiliary power consumption and operational aspects such as startup and standby behavior, is reported. The comparison between the simulation and the experimental results shows a good matching, quantified by the maximum root-mean-square deviation of the stack energy equal to 1.57% and 2.47% during charge and discharge, respectively. Moreover, the VRFB model is used in an application model of a residential building including a photovoltaic system and heat pump. Based on variation of control parameters, the energy efficiency for the proposed application has been maximized. Finally, a comparison with a scaled VRFB model (3 kW/10 kWh) is discussed with respect to the increase of the VRFB utilization and overall energy efficiency, confirming the effectiveness of the proposed model for distributed energy storage sizing and management in residential systems.
机译:本文提出了一种适用于分布式存储实施年度能源可行性分析的钒氧化还原液流电池(VRFB)模型。报告了对拟议的6 kW / 20 kWh VRFB半经验模型的验证,该模型考虑了辅助功耗以及运行方面(例如启动和待机行为)。仿真和实验结果之间的比较显示出良好的匹配性,通过在充电和放电期间分别等于1.57%和2.47%的堆栈能量的最大均方根偏差来量化。此外,VRFB模型用于包括光伏系统和热泵的住宅建筑的应用模型中。基于控制参数的变化,所提出的应用的能量效率已最大化。最后,就VRFB利用率的提高和整体能源效率的提高,讨论了与比例缩放的VRFB模型(3 kW / 10 kWh)的比较,证实了所提出的模型在住宅系统中分布式储能的规模确定和管理的有效性。

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