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Mode and storage load based control of a complex building system with a geothermal field

机译:具有地热场的复杂建筑系统的基于模式和存储负荷的控制

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The development of control strategies is a challenge for optimal use of low-temperature heat in complex energy systems. In the energy system of the considered building, several different combinations of active system components lend themselves to supply a given energy demand. Within preceding research, we transformed the considered building into a multi-functional test bench for control techniques that offers optimal conditions for the demonstration and evaluation of control strategies. This paper describes a control strategy for the complex heat pump system based on operation modes. It enables us to integrate a geothermal field into the system with respect to exergetic principles. The paper presents results of the control strategy's first year of operation. It correlates between active operation modes and the respective electrical consumption of the building. We derive the potential of the implemented operation modes for demand response applications. A mode-based control strategy enables the robust and efficient operation of complex building energy systems. We show that the integration of renewable energy sources becomes easy and flexible. (C) 2017 Elsevier B.V. All rights reserved.
机译:控制策略的发展是在复杂能源系统中优化利用低温热量的挑战。在所考虑的建筑物的能源系统中,有源系统组件的几种不同组合有助于满足给定的能源需求。在之前的研究中,我们将考虑的建筑物转变为用于控制技术的多功能测试台,为控制策略的演示和评估提供了最佳条件。本文描述了基于运行模式的复杂热泵系统的控制策略。它使我们能够根据高能原理将地热场集成到系统中。本文介绍了控制策略运行第一年的结果。它在活跃的操作模式与建筑物的相应电力消耗之间建立关联。我们得出了需求响应应用程序已实施操作模式的潜力。基于模式的控制策略可以使复杂的建筑能源系统稳定高效地运行。我们表明,可再生能源的整合变得容易和灵活。 (C)2017 Elsevier B.V.保留所有权利。

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