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Cost-optimal operation for a flexible building with local PV in a Singaporean environment

机译:在新加坡环境中具有本地PV的灵活建筑的成本最佳运行

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In the future, flexible demand with the combination of renewable energy may hold the key for a sustainable power grid. However, if not managed properly, this combination may pose a threat to the reliability of the grid. In this paper, we analyze the effect on the cost-optimal operation of the flexible building in the presence of locally connected solar photovoltaic (PV) system. Based on a detailed thermal model of a building, an optimization based operational strategy has been presented. The objective of this strategy is to optimally schedule energy and reserve in the presence of flexible loads and the PV system. Two forecasting methods, in a rolling horizon fashion, are deployed to evaluate the interaction between the uncertain PV output and the operation of the whole system. Case studies are performed using the pricing framework of the National Energy Market Singapore (NEMS). Results show that a trade-off exist between the cost optimality of the overall system and the excess PV output fed to the grid (reverse power flow).
机译:在未来,具有可再生能源组合的灵活需求可能适用于可持续电网的关键。但是,如果没有正确管理,这种组合可能会对网格的可靠性构成威胁。在本文中,我们在局部连接的太阳能光伏(PV)系统存在下对柔性建筑成本最佳运行的影响。基于建筑物的详细热模型,提出了一种基于优化的操作策略。该策略的目的是在柔性负载和光伏系统存在下最佳地安排能源和储备。在滚动地平线时代,两种预测方法部署以评估不确定的PV输出与整个系统的操作之间的相互作用。使用国家能源市场新加坡(NEM)的定价框架进行案例研究。结果表明,在整个系统的成本最优性与馈送到电网(反向动力流量)的过剩PV输出之间存在权衡。

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