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A branch and bound approach for building cooling supply control with hybrid model predictive control

机译:基于混合模型预测控制的建筑物供冷控制的分支定界方法

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In this article a branch and bound approach for hybrid model predictive control of a building cooling supply is presented. This specific algorithm is the core part of a mixed-integer model predictive controller (MI-MPC) for energy efficient management of a cooling supply incorporating active storage connected to a switching chiller. The MI-MPC is applied to the model of the cooling system of a large office building in Salzburg, Austria. An efficient modelling strategy combines data-driven black-box identification and analytically derived white-box modelling for the purpose of predictive control. The validation of the resulting linear and hybrid energy supply models is done by an open loop simulation. Simulation results of the proposed control structure show excellent performance compared to the implemented conventional control strategy resulting in an increased usage of at least 50% of renewable energy sources, a cut in energy costs of about 50%, and an optimised operation of the active storage while accurately delivering the prescribed cooling power trajectory. The approach is thus promising for industrial application. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本文中,提出了一种用于建筑物制冷供应的混合模型预测控制的分支和边界方法。该特定算法是混合整数模型预测控制器(MI-MPC)的核心部分,该模型用于结合与开关式制冷机相连的有源存储的冷却源的能源效率管理。 MI-MPC用于奥地利萨尔茨堡的大型办公楼的冷却系统模型。一种有效的建模策略将数据驱动的黑匣子标识与分析得出的白匣子建模相结合,以进行预测控制。所得线性和混合能源供应模型的验证是通过开环仿真完成的。与已实施的常规控制策略相比,所提出的控制结构的仿真结果显示出优异的性能,从而导致至少50%的可再生能源的使用增加,能源成本降低约50%以及主动存储的优化运行同时准确地传递规定的冷却功率轨迹。因此,该方法有望用于工业应用。 (C)2016 Elsevier B.V.保留所有权利。

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