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The impact of battery energy storage for renewable energy power grids in Australia

机译:电池储能对澳大利亚可再生能源电网的影响

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摘要

Electrical energy storage (EES) has the potential to enable a transition to clean energy in the future as it brings flexibility into the electricity network. Uncertainties exist around EES regarding technology, costs, business models and market structures but experts agree on EES being beneficial. This study offers an economic analysis of the role of EES in low-carbon electricity supply. A GIS-supported hourly simulation study of Australia assesses the impact of adding EES to wind and solar generation on levelised cost of electricity (LCOE), installed capacity, generation mix and energy spillage. The study finds that EES deployment is able to lower LCOE in scenarios with high penetration of renewable sources. In the case study of Australia, it is found that EES between 90 and 180 GWh capacity can be economic for cost levels below 1,000 AU$ kWh(-1). In addition, the study finds that EES can reduce LCOE by 13-22%, reduce installed capacity by up to 22%, and reduce spilled energy by up to 76%. It is shown that the generation mix is highly influenced by the magnitude of EES deployed. (C) 2019 Elsevier Ltd. All rights reserved.
机译:电能存储(EES)可以为电网带来灵活性,因此有可能在将来向清洁能源过渡。 EES在技术,成本,业务模型和市场结构方面存在不确定性,但专家们一致认为EES是有益的。这项研究对EES在低碳电力供应中的作用进行了经济分析。一项由GIS支持的澳大利亚每小时仿真研究,评估了在风能和太阳能发电中添加EES对平准化电费(LCOE),装机容量,发电量和能源泄漏的影响。研究发现,在可再生资源普及率较高的情况下,EES的部署能够降低LCOE。在澳大利亚的案例研究中,发现对于成本水平低于1,000 AU $ kWh(-1)而言,容量在90至180 GWh之间的EES是经济的。此外,研究发现,EES可以将LCOE降低13-22%,将装机容量减少多达22%,并将泄漏的能源减少多达76%。结果表明,发电组合受到部署的EES量的很大影响。 (C)2019 Elsevier Ltd.保留所有权利。

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