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Optimal sizing of a solar-plus-storage system for utility bill savings and resiliency benefits

机译:优化太阳能+存储系统的尺寸,以节省水电费并提高弹性

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Solar-plus-storage systems can achieve significant utility savings in behind-the-meter deployments in buildings, campuses, or industrial sites. Common applications include demand charge reduction, energy arbitrage, time-shifting of excess photovoltaic (PV) production, and selling ancillary services to the utility grid. These systems can also offer some energy resiliency during grid outages. It is often difficult to quantify the amount of resiliency that these systems can provide, however, and this benefit is often undervalued or omitted during the design process. We propose a method for estimating the resiliency that a solar-plus-storage system can provide at a given location. We then present an optimization model that can optimally size the system components to minimize the lifecycle cost of electricity to the site, including the costs incurred during grid outages. The results show that including the value of resiliency during the feasibility stage can result in larger systems and increased resiliency.
机译:太阳能加存储系统可以在建筑物,校园或工业现场的幕后部署中节省大量的公用事业费用。常见的应用包括减少需求费用,能源套利,及时转换多余的光伏(PV)生产以及向公用电网销售辅助服务。这些系统还可以在电网中断时提供一定的能源弹性。通常,很难量化这些系统可以提供的弹性,但是,在设计过程中,这种收益常常被低估或忽略。我们提出了一种估算太阳能+存储系统在给定位置可以提供的弹性的方法。然后,我们提出一个优化模型,该模型可以优化系统组件的大小,以最大程度地减少站点的生命周期成本,包括电网中断期间产生的成本。结果表明,在可行性阶段包含回弹力的值可以导致更大的系统和更大的回弹力。

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