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Solar PV-Battery-Electric Grid-Based Energy System for Residential Applications: System Configuration and Viability

机译:住宅应用太阳能光伏电池电网的能源系统:系统配置和可行性

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摘要

Distributed renewable energy share increase in electricity generation is creating challenges for the whole power system, due to its intermittent and nonprogrammable nature. Energy storage has the potential to solve those issues although its technical, economic, and environmental impact is up for debate. The paper presents a study about a PV-battery energy storage system installed in a grid-connected residential apartment in the Green Energy Laboratory at Shanghai Jiao Tong University, China. Daily experimental results show how the presence of energy storage reduces the midday feed-in of excess PV power and the evening peak demand, providing benefits to the distribution network in terms of reduced voltage swings and peak load. Considering the Chinese context, an economic analysis is carried out to assess the profitability of residential PV-battery systems, using the net present value as the economic indicator of an 18-year investment in which the battery pack is replaced twice (6 life years). The analysis shows that such system is not economically viable due to a combination of low electricity prices, valuable PV incentives, and high technology costs. However, considering a future scenario of doubled electricity tariff, halved export tariff, and falling technology costs (-66% battery and -17% PV and inverter), PV-battery investment becomes profitable and shows more resilience to future scenarios than PV-only investment.
机译:分布式可再生能源在发电中所占份额的增加,由于其间歇性和非可编程性,正在给整个电力系统带来挑战。储能技术有解决这些问题的潜力,尽管其技术,经济和环境影响尚待商debate。本文提出了一项关于在上海交通大学绿色能源实验室中并网住宅中安装的光伏电池储能系统的研究。每日实验结果表明,能量存储的存在如何减少过多光伏发电的午间馈电和夜间高峰需求,从而在降低电压摆幅和峰值负荷方面为配电网络带来了好处。考虑到中国的情况,使用净现值作为18年投资的经济指标进行了经济分析,以评估住宅光伏电池系统的获利能力,其中电池组被更换了两次(6年寿命) 。分析表明,由于电价低,有价值的光伏激励措施和高技术成本的结合,这种系统在经济上不可行。但是,考虑到未来电价翻倍,出口电价减半以及技术成本下降的前景(-66%的电池以及-17%的光伏和逆变器),光伏电池投资变得有利可图,并且比仅光伏发电具有更大的弹性投资。

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