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Operation and sizing of a hybrid power station consisting of PVs and battery energy storage

机译:由PV和电池储能组成的混合电站的运行和规模估算

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Incentives such as the favorable feed-in-tariffs, adopted in many countries for PV systems, along with the drastic reduction in the cost of photovoltaics over the last years, have resulted in the integration of high PV capacities in the power systems, giving rise to an array of well-known system planning and integration issues, such as the significant reduction in the apparent mid-day demand, the low capacity credit of RES energy and its stochastic variation, transmission and distribution congestion issues etc.rnThe integration of storage is a promising option for RES stations, greatly enhancing the flexibility and predictability of their operation and facilitating their integration in power systems, especially in saturated ones. The storage facilities within a RES station enhance its output power “creditability”, since primary energy variations can be effectively compensated, while the available energy becomes controllable and dispatchable by the station or system operator, e.g. with the potential to be time-shifted to the hours of peak demand.rnIn this paper, the concept of a PV-battery station is explored, from an energy efficiency and economic viability perspective. A step-by-step simulation model is employed to simulate the operation of the station using annual time series. Results are presented concerning the operation of such a plant and the sizing of its components.
机译:许多国家为光伏系统采用了优惠的上网电价等激励措施,以及过去几年中光伏成本的急剧下降,导致了高光伏容量整合到电力系统中,一系列著名的系统规划和集成问题,例如明显的中午需求明显减少,RES能源的低容量信用及其随机变化,传输和分配拥塞问题等。 RES站的一个有前途的选择,极大地提高了RES站的灵活性和可预测性,并促进了它们在电力系统中的集成,尤其是在饱和系统中。 RES站内的存储设施可提高其输出功率的“可信度”,因为可以有效地补偿一次能源的变化,而可用能源则可以由站点或系统运营商控制和分配,例如,有可能会时移到高峰需求小时。rn本文从能源效率和经济可行性的角度探讨了光伏电池站的概念。采用分步模拟模型,使用年度时间序列模拟车站的运行。给出了有关这种设备的操作及其组件的选型的结果。

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