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Optimization of distributed generation capacities in buildings under uncertainty in load demand

机译:在负荷需求不确定的情况下优化建筑物的分布式发电能力

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This paper presents a method to determine the optimum capacity of distributed generation technologies for buildings. The Combined Heat and Power (CHP) unit has both absorption and electric chiller for cooling loads, and a supplementary boiler for heating loads. The demand is uncertain in the model. The underlying uncertainty is modeled using probabilistic theory. In this method, the expected value of the objective function is evaluated using numerical approaches. A simulation based optimization method is presented which can estimate the cost of system operation and find the appropriate design by means of stochastic programming. The effect of minimum economic turn-down of the facilities is also discussed in this paper. The optimum capacity of distributed generation technologies has a great effect on the cost of the building. Therefore, the proposed method is applied for a hospital in Iran as a case study. The results show that the optimum capacities of CHP and absorption chiller decreases and the capacities of the electric chiller and boiler rise by an increase in demand uncertainty. In addition, the appropriate minimum economic turn-down of facilities has a considerable effect on the overall system cost.
机译:本文提出了一种确定建筑物分布式发电技术的最佳容量的方法。热电联产(CHP)单元既有吸收式制冷机,也有电冷却器,用于冷却负荷,还有一个辅助锅炉,用于加热负荷。该模型中的需求不确定。潜在的不确定性是使用概率理论建模的。在这种方法中,使用数值方法评估目标函数的期望值。提出了一种基于仿真的优化方法,该方法可以估算系统运行成本,并通过随机规划的方法找到合适的设计。本文还讨论了设备的最低经济拒绝的影响。分布式发电技术的最佳容量对建筑物的成本有很大的影响。因此,作为案例研究,所提出的方法被应用于伊朗的一家医院。结果表明,由于需求不确定性的增加,热电联产和吸收式冷水机组的最佳容量降低,电冷水机组和锅炉的容量增加。另外,适当降低设备的最低经济效益对整个系统的成本有很大影响。

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