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The effect of individual and communal electricity generation, consumption and storage on urban Community Renewable Energy Networks (CREN): an Australian case study

机译:个人和社区发电,消费和存储对城市社区可再生能源网络(CREN)的影响:澳大利亚案例研究

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Community Renewable Energy Networks (CREN), in which households and businesses in a local community share energy resources, are an attractive platform for optimising renewable energy use and reducing dependence on the wider electricity grid. However, the optimal use local power generation and energy storage is critically dependent on the load characteristics and location of the community. In this work we compare the simulated energy generation, consumption and independence of two model developments in Melbourne and Sydney. The analysis looked at 6 basic scenarios, from the default grid dependence through to a community approach with both individual and communal PV generation and battery energy storage. The results showed that a combination of household and community owned PV and storage can reduce grid electricity import by up to 93% for Melbourne and 96% for Sydney, but that neither development could independently meet all its power requirements without shortfall. The shortfall arises during the winter months when PV generation is at its lowest, and no practical amount of energy storage can mitigate this. Interestingly, Melbourne, which is at a higher latitude than Sydney and receives less solar insolation, achieves more months of grid independence than Sydney.
机译:社区可再生能源网络(CREN)是当地社区的家庭和企业共享能源的平台,它是优化可再生能源使用和减少对更广泛电网的依赖的有吸引力的平台。但是,最佳利用本地发电和储能主要取决于负载特性和社区位置。在这项工作中,我们比较了墨尔本和悉尼两个模型开发的模拟能源产生,消耗和独立性。该分析研究了6种基本方案,从默认的电网依存关系到采用个人和公共光伏发电以及电池储能的社区方法。结果表明,家庭和社区拥有的光伏和储能相结合,可以使墨尔本和悉尼的电网电力进口分别减少93%和96%,但是这两个开发项目都不能独立满足其所有电力需求而不会出现短缺。在冬季,当光伏发电处于最低水平时,就会出现这种短缺,并且实际的储能量都无法缓解这种情况。有趣的是,与悉尼相比,墨尔本的纬度更高,日照量也更少,因此与悉尼相比,可以实现更长的电网独立时间。

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