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A semi-empirical financial assessment of combining residential photovoltaics, energy efficiency and battery storage systems

机译:结合住宅光伏,能效和电池存储系统的半经验财务评估

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摘要

Extraordinary declines in the cost of photovoltaic systems (PV), combined with a growing range of energy efficient consumer technologies (EE), has driven significant deployment of these two options in many jurisdictions. This deployment has proven to be a key way to mitigate the risks of catastrophic climate change. However, existing retail electricity arrangements can create mixed incentives for households contemplating investing in both PV and EE. This is caused by net metering arrangements that value self-consumption of PV generation far more than PV exports to the grid. This means that falling household demand due to EE may significantly reduce the financial value of PV. Meanwhile, the continuous cost decline of battery storage systems (BS) has encouraged more PV owners to consider storing PV exports to maximise self-consumption. However, there has been little research on whether the addition of BS could reduce barriers to the combined uptake of PV and EE. In this paper, real PV generation and electricity consumption data is used from numerous households in Sydney (Australia), together with a battery cyclelife model, to assess the financial outcomes of combining PV, EE and BS. The results indicate that EE can reduce PV system revenue, that adding BS to a combination of PV and EE generally increases PV revenue, that BS costs are still high for this residential application, and that the uptake of EE can result in deeper BS cycling which reduces the battery lifetime.
机译:光伏系统(PV)成本的异常下降,再加上越来越多的高能效消费技术(EE),已经在许多司法管辖区推动了这两种方案的大量部署。事实证明,这种部署是减轻灾难性气候变化风险的关键方法。但是,现有的零售电力安排可以为考虑投资光伏和能效发电的家庭创造混合动力。这是由于净计量安排对光伏发电的自耗所产生的价值远大于向电网出口的光伏产品。这意味着由于EE导致的家庭需求下降可能会大大降低PV的财务价值。同时,电池存储系统(BS)的持续成本下降促使更多的光伏所有者考虑存储光伏出口,以最大程度地实现自耗。但是,关于添加BS是否能减少PV和EE联合吸收的障碍的研究很少。在本文中,使用了来自悉尼(澳大利亚)许多家庭的真实光伏发电和电力消耗数据,以及电池寿命模型,以评估将PV,EE和BS结合使用的财务结果。结果表明,EE可以减少光伏系统的收入,将BS添加到PV和EE的组合中通常会增加PV的收入,该住宅应用的BS成本仍然很高,并且EE的使用会导致更深的BS循环,缩短电池寿命。

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