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A generalized control heuristic and simplified model predictive control strategy for direct-expansion air-conditioning systems

机译:直接膨胀空调系统的广义控制启发式和简化模型预测控制策略

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This article presents a generalized control heuristic to reset supply air temperature set-points for direct-expansion units with capacity modulation and variable airflow and integrates the heuristic into a simplified model predictive control framework that precools building thermal mass through zone temperature set-point adjustments. The resulting control methodology is appropriate for control of medium-sized commercial buildings that employ variable air volume air distribution with direct-expansion units for primary cooling. The heuristic is shown to work well for different direct-expansion systems with different compressor types and fan-duct combinations. To assess the integrated energy savings potential of the heuristic strategy and simplified model predictive control, a simulation platform was developed for a medium-sized commercial building. Simulations were carried out for a 100-day cooling season in different U.S. locations and under different control strategies. The heuristic control provided energy savings of between 5% and 10% relative to conventional control, depending on the system type and location. Approximately 4% additional energy savings was achieved when the heuristic was integrated into a simplified model predictive control having only moderate computational requirements. The cost savings could be significantly greater if time-of-use and demand charges were considered.
机译:本文介绍了一种通用的控制启发式方法,可以通过容量调节和可变气流来重置直接膨胀式机组的送风温度设定点,并将启发式方法集成到简化的模型预测控制框架中,该框架通过区域温度设定点调整来预冷建筑物的热质量。最终的控制方法适用于控制采用可变风量空气分配和直接膨胀单元进行初次冷却的中型商业建筑。该启发式方法对于具有不同压缩机类型和风扇管道组合的不同直接扩展系统非常有效。为了评估启发式策略和简化模型预测控制的综合节能潜力,为中型商业建筑开发了一个仿真平台。在美国不同地区和不同控制策略下进行了为期100天的降温季节的模拟。相对于常规控制,启发式控制可节省5%到10%的能量,具体取决于系统类型和位置。当将启发式方法集成到仅具有中等计算要求的简化模型预测控制中时,可以节省大约4%的额外能源。如果考虑使用时间和需求费用,则节省的成本可能更大。

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