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Receding horizon control for demand-response operation of building heating systems

机译:楼宇供热系统需求响应操作的后退水平控制

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In this paper we consider the problem of optimizing the operation of a building heating system under the hypothesis that the building is included as a consumer in a Demand Response program. Demand response requests to the building are assumed to come from an external market or grid operator. The requests assume the form of price/volume signals specifying a volume of energy to be saved during a given time slot and a monetary reward assigned to the participant in case it fulfills the conditions. A receding horizon control approach is adopted for minimization of the energy bill, by exploiting a simplified model of the building. Since the resulting optimization problem is a mixed integer linear programming problem which turns out to be manageable only for buildings with very few zones, a heuristic is devised to make the algorithm applicable to realistic size problems as well. The derived control law is tested on the realistic simulator EnergyPlus to evaluate pros and cons of the proposed algorithm. The performance of the suboptimal control law is evaluated by comparison with the optimal one on a chosen test case.
机译:在本文中,我们考虑了在建筑物被视为需求响应程序中的消费者的假设下优化建筑物供暖系统运行的问题。假定对建筑物的需求响应请求来自外部市场或电网运营商。这些请求采用价格/数量信号的形式,该价格/数量信号指定了在给定时间段内要节省的能源量,并在满足条件的情况下为参与者分配了货币奖励。通过利用建筑物的简化模型,采用了后退水平控制方法,以最大程度地减少了能源消耗。由于产生的优化问题是混合整数线性规划问题,该问题原来仅对具有很少区域的建筑物才是可管理的,因此设计了一种启发式算法,使该算法也适用于实际大小问题。在现实的模拟器EnergyPlus上测试了导出的控制律,以评估所提出算法的优缺点。通过与所选测试案例上的最佳控制律进行比较,评估了非最佳控制律的性能。

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