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Impacts of valuing resilience on cost-optimal PV and storage systems for commercial buildings

机译:评估弹性对成本最优的商业建筑光伏和存储系统的影响

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Decreasing electric grid reliability in the US, along with increasing severe weather events, have greatly increased interest in resilient energy systems. Few studies have included the value of resilience when sizing PV and Battery Energy Storage Systems (BESS), and none have included the cost to island a PV and BESS, grid-connected costs and benefits, and the value of resilience. This work presents a novel method for incorporating the value of resilience provided by a PV and BESS into a techno-economic optimization model. Including the value of resilience in the design of a cost-optimal PV and BESS generally increases the system capacities, and in some cases makes a system economical where it was not before. For example, for a large hotel in Anaheim, CA no system is economical without resilience valued; however, with a $5317/hr value of resilience a 363 kW and 60 kWh solar and BESS provides a net present value of $50,000.
机译:在美国,电网可靠性的下降以及恶劣天气事件的增加,极大地提高了人们对弹性能源系统的兴趣。很少有研究包含确定光伏和电池储能系统(BESS)规模时的弹性价值,而没有研究包含孤岛光伏和BESS的成本,并网成本和收益以及弹性的价值。这项工作提出了一种新颖的方法,可以将PV和BESS提供的弹性值纳入技术经济优化模型中。在设计成本最佳的PV和BESS的过程中包含回弹力的价值通常会提高系统容量,并且在某些情况下使系统更经济。例如,对于阿纳海姆(Anaheim)的一家大型酒店,如果没有弹性的评估,任何系统都不经济。但是,以$ 5317 / hr的回弹值计算,一个363 kW和60 kWh的太阳能和BESS的净现值为$ 50,000。

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