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Application of a simplified thermal-electric model of a sodium-nickel chloride battery energy storage system to a real case residential prosumer

机译:钠镍氯化物电池储能系统的简化热电模型在实际案例中的应用

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摘要

Recently, power system customers have changed the way they interact with public networks, playing a more and more active role. End-users first installed local small-size generating units, and now they are being equipped with storage devices to increase the self-consumption rate. By suitably managing local resources, the provision of ancillary services and aggregations among several end-users are expected evolutions in the near future. In the upcoming market of household-sized storage devices, sodium-nickel chloride technology seems to be an interesting alternative to lead-acid and lithium-ion batteries. To accurately investigate the operation of the NaNiCl2 battery system at the residential level, a suitable thermoelectric model has been developed by the authors, starting from the results of laboratory tests. The behavior of the battery internal temperature has been characterized. Then, the designed model has been used to evaluate the economic profitability in installing a storage system in the case that end-users are already equipped with a photovoltaic unit. To obtain realistic results, real field measurements of customer consumption and solar radiation have been considered. A concrete interest in adopting the sodium-nickel chloride technology at the residential level is confirmed, taking into account the achievable benefits in terms of economic income, back-up supply, and increased indifference to the evolution of the electricity market.
机译:最近,电力系统客户已经改变了它们与公共网络交互的方式,扮演着越来越积极的角色。最终用户首先安装了本地小型发电机组,现在他们正在配备存储设备以提高自耗率。通过适当地管理本地资源,在不久的将来,可以预期在几个最终用户之间提供辅助服务和聚合。在即将到来的家用大小存储设备市场中,钠镍氯化物技术似乎是铅酸和锂离子电池的有趣替代品。为了准确地研究NaNiCl2电池系统在住宅级别的运行,作者从实验室测试的结果开始,开发了合适​​的热电模型。电池内部温度的行为已被表征。然后,在最终用户已经配备了光伏组件的情况下,使用设计的模型评估安装存储系统的经济收益。为了获得实际结果,已经考虑了客户消耗和太阳辐射的实际测量。考虑到可实现的经济收入,后备电源供应以及对电力市场发展越来越冷漠的考虑,已经确认了在住宅级采用钠镍氯化物技术的具体利益。

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