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Comfort control in buildings with adherence to the required thermal energy input in zones

机译:遵守区域中所需的热能输入,在建筑物中进行舒适控制

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This paper focusses on implementation of the energy management in building zones with fan coil units. The implementation is based on direct control of the required thermal energy inputs. We develop it as a necessary add-on to model predictive control algorithms that use thermal models of a building and compute the optimal energy inputs in different building zones for minimization of the overall energy cost required to keep the thermal comfort. The presented approach is substantially different to the generally accepted temperature control via local reactive control that only uses local measurements in deciding the control actions for zones thermal actuators. We demonstrate that closed loop performance, spent energy and the users comfort, is significantly improved over conventional control approaches. The model of a fan coil unit is identified and validated based on real data gathered from the living lab of University of Zagreb Faculty of Electrical Engineering and Computing. This model is then used for the subsequent control development and validation of the overall control approach via simulations.
机译:本文着重于在具有风机盘管单元的建筑区域中实施能源管理。该实施基于对所需热能输入的直接控制。我们将其开发为模型预测控制算法的必要附加组件,该算法使用建筑物的热模型并计算不同建筑物区域中的最佳能量输入,以最大程度地降低保持热舒适性所需的总能量成本。所提出的方法与通过局部无功控制的普遍接受的温度控制有很大不同,该局部无功控制仅使用局部测量来确定区域热致动器的控制动作。我们证明,与传统的控制方法相比,闭环性能,耗能和用户舒适度得到了显着提高。基于从萨格勒布大学电气工程与计算学院的居住实验室收集的真实数据,对风机盘管单元的模型进行了识别和验证。然后将此模型用于后续的控制开发,并通过模拟对整个控制方法进行验证。

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