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Optimal scheduling of storage devices in smart buildings including battery cycling

机译:智能建筑中存储设备的最佳调度,包括电池循环

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This paper presents an optimization model for energy management in smart buildings, when electrochemical and thermal storage are considered as flexibilities to achieve minimum operation costs. The optimization problem takes into account the battery's cycling cost and the possibility of storing energy in the electric water heater. To deal with the cycling aging process, the problem is decomposed into two subproblems that are iteratively solved, in which a Particle Swarm Optimization decides the battery's State of Charge and then a day-ahead dispatch takes place to determine the total operation cost. This approach allows us to deal with the non-linearities of battery aging in a simple an effective way. The results show that the potential presence of both storage technologies has a positive impact on the operation costs; they also show the impact on the device settings when battery's cycling aging cost is considered. This methodology has been developed in the context of the Horizon 2020 project SENSIBLE as part of the tasks related to the use case, Flexibility and Demand Side Management in Market Participation.
机译:本文提出了一种智能建筑能源管理的优化模型,其中电化学和蓄热被认为是实现最低运营成本的灵活性。优化问题考虑了电池的循环成本以及在电热水器中存储能量的可能性。为了处理循环老化过程,该问题分解为两个子问题,这些子问题可以反复解决,其中粒子群优化算法确定电池的充电状态,然后提前一天调度以确定总运行成本。这种方法使我们能够以一种简单有效的方式处理电池老化的非线性问题。结果表明,两种存储技术的潜在存在都会对运营成本产生积极影响。当考虑电池的循环老化成本时,它们还显示了对设备设置的影响。此方法已在Horizo​​n 2020项目SENSIBLE的背景下开发,作为与用例,市场参与中的灵活性和需求方管理相关的任务的一部分。

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