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Management of hybrid energy supply systems in buildings using mixed-integer model predictive control

机译:基于混合整数模型预测控制的建筑物混合能源供应系统管理

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In this paper a mixed-integer model predictive controller for hybrid energy supply systems in buildings is presented. This approach is based on a hierarchical building control concept where the energy supply level is coupled to the energy consumption level only by the heat load. The supply level is characterized by non-linear dynamics due to a stratified water storage tank and a switched heat pump with minimum on/off times. The mixed-integer model predictive controller optimizes the unit commitment problem at minimum costs while satisfying the consumption level's predicted heat load. The hybrid system is formulated as a piecewise affine model comprising continuous and discrete system inputs. moreover, the proposed controller is able to manage the stratified storage tank including switching sequences of the heat pump with respect to energy price forecasts. The effectiveness of this approach is shown by a comparison to a model predictive controller with an a priori fixed operation mode profile, where the heat pump is only operating at night, and discussing the effect of the variation of the stratified storage tank size. The proposed concept is able to flexibly manage all sizes of stratified storage tanks with better performance than the reference control strategy, which is only effective for larger tanks. Additionally, a robustness analyses demonstrates that the mixed-integer model predictive controller can handle errors in the heat load prediction from the consumption level. Both analyses show promising results for the practical use of the proposed controller within the hierarchical control concept or as a control module in a similar but more general application. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于建筑混合能源供应系统的混合整数模型预测控制器。该方法基于分层建筑控制概念,其中,仅通过热负荷将能量供应水平与能耗水平耦合。供水量的特点是采用分层储水箱和热泵切换,开/关时间最短,因此具有非线性动力学特性。混合整数模型预测控制器以最小的成本优化了机组承诺问题,同时满足了能耗水平的预测热负荷。混合系统被公式化为包含连续和离散系统输入的分段仿射模型。此外,提出的控制器能够管理分层储罐,包括关于能量价格预测的热泵的切换顺序。通过与具有先验固定操作模式配置文件的模型预测控制器进行比较来显示这种方法的有效性,在该模型中,热泵仅在夜间运行,并讨论了分层储罐尺寸变化的影响。所提出的概念能够灵活地管理所有尺寸的分层储罐,其性能要优于参考控制策略,后者仅对较大的储罐有效。此外,鲁棒性分析表明,混合整数模型预测控制器可以处理根据能耗水平预测的热负荷误差。两种分析都表明,对于拟议的控制器在分层控制概念内的实际使用或在类似但更通用的应用中作为控制模块,其结果令人鼓舞。 (C)2015 Elsevier Ltd.保留所有权利。

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