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The Role of Domestic Integrated Battery Energy Storage Systems for Electricity Network Performance Enhancement

机译:国内集成电池储能系统对电力网络性能增强的作用

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摘要

Low carbon technologies are necessary to address global warming issues through electricity decabonisation, but their large-scale integration challenges the stability and security of electricity supply. Energy storage can support this transition by bringing flexibility to the grid but since it represents high capital investments, the right choices must be made in terms of the technology and the location point in the network. Most of the potential for storage is achieved when connected further from the load, and Battery Energy Storage Systems (BESS) are a strong candidate for behind-the-meter integration. This work reviews and evaluates the state-of-the-art development of BESS, analysing the benefits and barriers to a wider range of applications in the domestic sector. Existing modelling tools that are key for a better assessment of the impacts of BESS to the grid are also reviewed. It is shown that the technology exists and has potential for including Electric Vehicle battery reuse, however it is still mostly applied to optimise domestic photovoltaic electricity utilisation. The barriers to a wider integration are financial, economic, technical, as well as market and regulation. Increased field trials and robust numerical modelling should be the next step to gain investment confidence and allow BESS to reach their potential.
机译:低碳技术是通过电力蜕皮化解决全球变暖问题的必要条件,但它们的大规模集成挑战电力供应的稳定性和安全性。能量存储可以通过为电网提供灵活性来支持这一转换,但由于它代表高资本投资,因此必须根据技术和网络中的位置点进行正确的选择。当进一步从负载连接时实现大多数存储潜力,而电池能量存储系统(BESS)是用于米后面集成的强烈候选者。这项工作评价和评估了BESS的最先进的发展,分析了国内领域更广泛应用的益处和障碍。还介绍了作为更好地评估BESS对网格的影响的关键的现有建模工具。结果表明,该技术存在并且具有包括电动车辆电池再利用的潜力,但仍然主要应用于优化国内光伏电力利用。更广泛整合的障碍是金融,经济,技术和市场和监管。增加现场试验和强大的数值建模应该是获得投资信心的下一步,并允许贝尔斯达到其潜力。

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