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Economic trends and comparisons for optimizing grid-outage resilient photovoltaic and battery systems

机译:经济趋势以及优化并网弹性光伏和电池系统的比较

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This paper investigates the trade-off between two critical factors that influence, or even dictate, the rate of adoption of battery systems used to support photovoltaic arrays. The value of lost load and battery price greatly influence the island mode generation capability and the economic viability of photovoltaic + battery systems to provide energy resilience during grid outages. Photovoltaic array systems combined with battery storage are increasingly important to assure reliable and resilient power supply. It has been found that the configuration of photovoltaic + battery systems, which determines their capability of operating in island mode in response to grid outages, is impacted by multiple factors. Recent industry reports and research work have highlighted the critical role that energy storage systems will have in the coming future in the electricity sector, especially when combined with renewable energy systems. The fact that forecasts predict a sharp decline in battery price not only strengthens this role but also makes the need for extensive research in this area more important. A simulation-based optimization method is developed to investigate the effects of value of lost load and battery price on the balance between total system cost and system islanding resilience to meet customer demand during a grid outage. According to actual solar irradiation data and the load profile of a hospital, a case study is conducted in which evaluation metrics are computed and compared from both resilience and economical aspects. The underlying relationship between the changes and uncertainty of value of lost load and battery price are explored by comparing the optimal total system cost under two distinct scenarios. The results provide us with guidance and insights regarding the impact of cost-related factors on photovoltaic + battery system design to make them grid-outage resilient and economically viable. Moreover, this work illustrates the positive effect that the anticipated decline in battery price will have in enhancing the resilience and effectiveness of renewable energy systems combined with energy storage.
机译:本文研究了两个关键因素之间的权衡,这些因素影响甚至决定了用于支持光伏阵列的电池系统的采用率。负载损失和电池价格的价值极大地影响了孤岛模式的发电能力以及光伏+电池系统在电网中断期间提供能源弹性的经济可行性。光伏阵列系统与电池存储相结合对于确保可靠和有弹性的电源供应越来越重要。已经发现,光伏+电池系统的配置决定了其响应电网中断而以孤岛模式运行的能力,该配置受到多种因素的影响。最近的行业报告和研究工作都强调了储能系统在未来电力领域将发挥的关键作用,特别是与可再生能源系统结合使用时。预测表明电池价格将急剧下降这一事实不仅增强了这一作用,而且使得在这一领域进行广泛研究的需求变得更加重要。开发了一种基于仿真的优化方法,以研究空载价值和电池价格对总系统成本与系统孤岛弹性之间平衡的影响,以满足电网中断期间的客户需求。根据实际的太阳辐射数据和医院的负荷情况,进行了案例研究,从弹性和经济方面计算并比较了评估指标。通过比较两种不同情况下的最优总系统成本,探索了空载和电池价格的变化与不确定性之间的潜在关系。结果为我们提供了有关成本相关因素对光伏+电池系统设计的影响的指导和见识,从而使它们具有停电的弹性和经济可行性。此外,这项工作说明了预期的电池价格下降将对增强可再生能源系统与储能相结合的弹性和有效性产生积极影响。

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