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A University Building Test Case for Occupancy-Based Building Automation

机译:基于占用楼宇自动化的大学建筑测试案例

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摘要

Heating, ventilation and air-conditioning (HVAC) units in buildings form a system-of-subsystems entity that must be accurately integrated and controlled by the building automation system to ensure the occupants’ comfort with reduced energy consumption. As control of HVACs involves a standardized hierarchy of high-level set-point control and low-level Proportional-Integral-Derivative (PID) controls, there is a need for overcoming current control fragmentation without disrupting the standard hierarchy. In this work, we propose a model-based approach to achieve these goals. In particular: the set-point control is based on a predictive HVAC thermal model, and aims at optimizing thermal comfort with reduced energy consumption; the standard low-level PID controllers are auto-tuned based on simulations of the HVAC thermal model, and aims at good tracking of the set points. One benefit of such control structure is that the PID dynamics are included in the predictive optimization: in this way, we are able to account for tracking transients, which are particularly useful if the HVAC is switched on and off depending on occupancy patterns. Experimental and simulation validation via a three-room test case at the Delft University of Technology shows the potential for a high degree of comfort while also reducing energy consumption.
机译:建筑物中的加热,通风和空调(HVAC)单位形成一个系统的系统实体,必须由建筑自动化系统准确地集成和控制,以确保占用者的舒适性降低。随着HVAC的控制涉及高级设定点控制和低级比例 - 积分 - 衍生物(PID)控制的标准化层次,需要克服电流控制碎片而不会破坏标准层次结构。在这项工作中,我们提出了一种基于模型的方法来实现这些目标。特别是:设定点控制基于预测的HVAC热模型,并旨在优化具有降低能耗的热舒适度;标准低级PID控制器根据HVAC热模型的模拟自动调整,并旨在良好地跟踪设定点。这种控制结构的一个好处是PID动力学包括在预测优化中:以这种方式,我们能够考虑跟踪瞬态,如果HVAC根据占用模式打开和关闭,则特别有用。 Delft技术大学的三房间测试案例的实验和仿真验证显示了高度舒适的潜力,同时还降低了能量消耗。

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