首页> 外文期刊>IFAC PapersOnLine >Energy Management for Building Climate Comfort in Uncertain Smart Thermal Grids with Aquifer Thermal Energy Storage * * This research was supported by the Netherlands Organization for Scientific Research (NWO) under the grant number 408-13-030.
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Energy Management for Building Climate Comfort in Uncertain Smart Thermal Grids with Aquifer Thermal Energy Storage * * This research was supported by the Netherlands Organization for Scientific Research (NWO) under the grant number 408-13-030.

机译:带有蓄水层储热功能的不确定智能热网中建筑物气候舒适度的能源管理 * * 这项研究得到了荷兰组织的支持授予编号为408-13-030的科学研究(NWO)。

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摘要

In this paper, we present an energy management framework for building climate comfort systems that are interconnected in a grid via aquifer thermal energy storage (ATES) systems in the presence of two types of uncertainty namely private and common uncertainty sources. The ATES system is considered as a large-scale storage system that can be a heat source or sink, or a storage for thermal energy While the private uncertainty source refers to uncertain thermal energy demand of individual buildings, the common uncertainty source describes the uncertain common resource pool (ATES) between neighbors. To this end, we develop a large-scale uncertain coupled dynamical model to predict the thermal energy imbalance in a network of interconnected building climate comfort systems together with mutual interactions between the local ATES systems. A finite-horizon mixed-integer quadratic optimization problem with multiple chance constraints is formulated at each sampling time, which is in general a non-convex problem and hard to solve. We then provide a computationally tractable framework based on an extension to the so-called robust randomized approach which offers a less conservative solution for a problem with multiple chance constraints. A simulation study is provided to compare two different configurations, namely: completely decoupled, and centralized solutions.
机译:在本文中,我们提出了一种用于构建气候舒适系统的能源管理框架,该系统在存在两种类型的不确定性(即私人和通用不确定性源)的情况下通过含水层热能存储(ATES)系统互连在网格中。 ATES系统被认为是大型存储系统,可以作为热源或热沉,也可以作为热能存储。私人不确定性源是指各个建筑物的不确定热能需求,而公共不确定性源是指不确定性邻居之间的资源池(ATES)。为此,我们开发了一个大型不确定耦合动力学模型,以预测相互连接的建筑气候舒适系统网络中的热能失衡,以及本地ATES系统之间的相互影响。在每个采样时间都提出了具有多个机会约束的有限水平混合整数二次优化问题,这通常是一个非凸问题,难以解决。然后,我们基于对所谓的鲁棒随机方法的扩展提供了可计算的框架,该方法为具有多个机会约束的问题提供了一种较不保守的解决方案。提供了一个仿真研究来比较两种不同的配置,即:完全解耦和集中式解决方案。

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