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Optimal design and dispatch of a hybrid microgrid system capturing battery fade

机译:捕获电池衰减的混合微电网系统的优化设计和调度

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Microgrids provide power to remote communities and at operational sites that are not connected to a grid. We consider such a microgrid that consists of batteries, photovoltaics, and diesel generators, and optimize the components it comprises and a corresponding dispatch strategy at hourly fidelity so as to minimize procurement, operations and maintenance, and fuel costs. The system is governed by constraints such as meeting demand and adhering to component interoperability and capability. Our contribution lies in the introduction to this optimization model of a set of constraints that incorporates capacity fade of a battery and temperature effects. We show, using data from a forward operating base and solving the corresponding instances for a time horizon of 8760h, that higher temperatures decrease resistance, leading to better round-trip energy efficiency, but at the same time increase capacity fade of the battery, resulting in a higher overall operating cost. In some cases, the procurement strategy is robust to the fade of the battery, but fade can influence battery state of charge and power output as the available battery capacity degrades over time and with use.
机译:微电网为偏远社区以及未连接到电网的运营站点供电。我们考虑这样一种微电网,它由电池,光伏发电和柴油发电机组成,并以小时保真度优化其组成和相应的调度策略,以最大程度地减少采购,运营和维护以及燃料成本。该系统受诸如满足需求以及坚持组件互操作性和功能之类的约束条件支配。我们的贡献在于引入了此约束的优化模型,其中包含了电池的容量衰减和温度效应。我们显示,使用前向操作基础的数据并求解8760h时间范围内的相应实例,较高的温度会降低电阻,从而导致更好的往返能量效率,但同时会增加电池的容量衰减,从而导致总体运营成本较高。在某些情况下,采购策略对于电池的褪色具有鲁棒性,但是随着可用电池的容量随着时间和使用时间而降低,褪色会影响电池的充电状态和功率输出。

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