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Cost optimization of combined building heating/cooling equipment via mixed-integer linear programming

机译:通过混合整数线性规划优化组合式建筑采暖/制冷设备的成本

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In this paper, we propose a mixed-integer linear program to economically optimize equipment usage in a central heating/cooling plant subject to time-of-use and demand charges for utilities. The optimization makes both discrete on/off and continuous load decisions for equipment while determining utilization of thermal energy storage systems. This formulation allows simultaneous optimization of heating and cooling subsystems, which interact directly when heatrecovery chillers are present. Nonlinear equipment models are approximated as piecewise-linear to balance modeling accuracy with the computational constraints imposed by online implementation and to ensure global optimality for the computed solutions. The chief benefits of this formulation are its ability to tightly control on/off switching of equipment, its consideration of cost contributions from auxiliary equipment such as pumps, and its applicability to large systems with multiple heating and cooling units in which a combinatorial problem must be solved to pick the optimal mix of equipment. These features result in improved performance over heuristic scheduling rules or other formulations that do not consider discrete decision variables. We show optimization results for a system with four conventional chillers, two heat-recovery chillers, and one hot water boiler. With a timestep of 1 h and a horizon of 48 h, the optimization problem can be solved to optimality within 5 minutes, indicating suitability for online implementation.
机译:在本文中,我们提出了一个混合整数线性程序,以经济地优化中央供暖/制冷厂的设备使用,但要考虑使用时间和公用事业的收费。优化过程可确定设备的离散开/关和连续负载,同时确定热能存储系统的利用率。这种配方可以同时优化加热和冷却子系统,当存在热回收冷却器时,这些子系统会直接相互作用。非线性设备模型近似为分段线性模型,以平衡建模精度与在线实现所施加的计算约束,并确保计算出的解决方案具有全局最优性。这种配方的主要优点是:它能够严格控制设备的开/关切换;它考虑了辅助设备(如泵)的成本贡献;它适用于具有多个加热和冷却单元的大型系统,其中必须解决组合问题解决了选择最佳设备组合的问题。与启发式调度规则或其他不考虑离散决策变量的公式相比,这些功能可提高性能。我们显示了具有四个常规冷却器,两个热回收冷却器和一个热水锅炉的系统的优化结果。以1h的时间步长和48h的时间范围,可以在5分钟内将优化问题解决到最佳状态,这表明适合在线实施。

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