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Optimal real-time dispatching of chillers and thermal storage tank in a university campus central plant

机译:大学校园中央植物中冷却器和热储罐的最佳实时调度

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摘要

Recent studies have indicated a great potential for applying predictive methodologies to the operation of Heating, Ventilation and Air Conditioning (HVAC) systems. Particularly for Centralized Chiller Plants with Thermal Energy Storage (TES) used for District Cooling, there is a substantial opportunity for cost savings when responding to variations in electricity price and ambient temperature. The present work addresses the problem of closed-loop scheduling of a large-scale chiller plant with TES tank under a Day-Ahead (DA) electricity price program. The main contributions include: (i) formulating the problem for a real large-scale complex system; (ii) comparing different dispatching policies with varying degrees of optimality, constraint satisfaction and operational complexity; and (iii) designing an optimization-based scheduling tool and describing its implementation and results. The proposed Mixed-Integer Linear Programming (MILP) formulation extends existing models by explicitly accounting for the effect of chilled water return temperature on the energy balances, considering real plant features, and performing pre-calculation of bounds on equipment and storage capacity. The study is performed with real process data from the central chiller plant located on the campus of the University of California, Davis. The comparison between different dispatching policies highlights the benefits of adopting an optimization-based operational strategy, indicating a cost reduction of up to 32% compared to other suboptimal policies. The study also demonstrates how additional constraints that reduce operational complexity affect the closed-loop performance of the optimization-based method, serving as a guideline for designing the optimization tool.
机译:最近的研究表明将预测方法应用于加热,通风和空调(HVAC)系统的操作的巨大潜力。特别是对于用于地区冷却的热能储存(TES)的集中冷却器厂,在响应电价和环境温度的变化时,节省成本的大量机会。本工作解决了在一天前(DA)电价计划下用TES罐的大型冷水机构闭环调度问题。主要贡献包括:(i)制定真正大规模复杂系统的问题; (ii)比较不同的调度政策,具有不同程度的最优性,约束满足和操作复杂性; (iii)设计基于优化的调度工具,并描述其实现和结果。所提出的混合整数线性规划(MILP)配方通过明确算用于富含冷水恢复温度对能量余额的影响,考虑实际植物特征,并对设备和存储容量进行界限进行预算来扩展现有模型。该研究与位于加利福尼亚大学校园的中央冷却器工厂进行了实际过程数据进行。不同调度政策之间的比较突出了采用基于优化的运营策略的好处,表明与其他次优策略相比的成本高达32%。该研究还演示了减少操作复杂性的额外约束如何影响基于优化的方法的闭环性能,作为设计优化工具的指导。

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