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Next-Generation Uninterruptible Power Supply (UPS)Lithium-Iron-Phosphate(LFP) battery. (UPS-LFP)

Next-Generation Uninterruptible Power Supply (UPS)Lithium-Iron-Phosphate(LFP) battery. (UPS-LFP)
下一代不间断电源 (UPS) 磷酸铁锂 (LFP) 电池。
批准号:
58520
负责人:
金额:
$6.14万
依托单位:
依托单位国家:
英国
项目类别:
Collaborative R&D
财政年份:
2020
资助国家:
英国
项目状态:
已结题
起止时间:
2020 至 --

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中文摘要
翻译
Integrals Power Limited(IPL)旨在通过提出下一代优化锂离子正极材料,解决不间断电源(UPS)电池的关键挑战;探索目前使用的溶剂的新替代品,提供更环保的替代品和功能。提出的发展将通过以下方式实现:*技术经济分析(TEA)和市场研究,以检测客户价值主张并改善设计解决方案的技术和经济性能*制定UPS电池要求的规范。*实现1D和3D电化学模型,并使用IPL的实验结果优化不同类型电池的电池材料参数。*模拟IPL的下一代UPS LFP电池,包括但不限于化学,发热通量,电气,性能,温度预测,电阻,SOC,充放电,估计老化和容量UPS-LFP电池技术可以改善和促进停电期间的电力可及性,并通过提供比市场上其他产品更高的能量密度电池,降低UPS电池成本(35%)。此外,与市场上相同的电池技术相比,它只使用了70%的材料。该项目将加速UPS-LFP技术的技术发展。该项目的输出将产生一个优化的电池单元,用于UPS,具有快速充放电和成本效益的特点。该项目的进一步产出包括为英国创造就业机会,使英国工业在LFP电池领域具有技术优势,并使英国中小企业能够进入更广阔的市场。该项目还将有助于减缓气候变化,从而为类似COVID-19大流行的情况提供改进和可靠的电力备份。
英文摘要
Integrals Power Limited(IPL) aims to tackle key challenges on the Uninterruptible Power Supply (UPS) battery cells by proposing next-generation, optimised Lithium-Ion cathode materials; exploring new replacements for currently utilised solvents offering more environmentally desired alternatives and features.The proposed developments will be achieved by:* Techno-Economic Analysis(TEA) and market studies to detect customer value proposition and improve the technical & economic performance of designed solution* Developing a specification for UPS battery requirements.* Implementing 1D & 3D electrochemical models and using IPL's experimental results to optimise battery material parameters for different types of cell.* Simulating IPL's next-generation LFP battery cell for UPS, including but not limited to chemical, heat generation flux, electrical, performance, temperature prediction, resistance, SOC, charge & discharge, estimated aging and capacityUPS-LFP battery technology can improve & facilitate electricity accessibility during power outage and decrease UPS battery costs(35%) by offering higher energy density battery cells compared to other products in the market, as well as utilising only 70% of material in comparison with the same battery cell technology in the market. This project will result in the accelerated technical development of UPS-LFP technology. Outputs of this project will yield, in an optimised battery cell for UPS with fast charge & discharge and cost-effective features. Further outputs following this project include establishing UK jobs, putting UK industry in a technical advantage in LFP battery sector and enabling access to wider markets for UK based SME's. This project will also contribute towards climate change mitigation and consequently an improved and reliable electricity backup for situations similar to COVID-19 pandemic.
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