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Development of a Hardware-in-the-loop Testbed for Laboratory Performance Verification of Flexible Building Equipment in Typical Commercial Buildings

机译:开发用于典型商业建筑柔性建筑设备实验室性能验证的硬件在环测试平台

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摘要

The goals of reducing energy costs, shifting electricity peaks, increasing the use of renewable energy, and enhancing the stability of the electric grid can be met in part by fully exploiting the energy flexibility potential of buildings and building equipment. The development of strategies that exploit these flexibilities could be facilitated by publicly available high-resolution datasets illustrating how control of HVAC systems in commercial buildings can be used in different climate zones to shape the energy use profile of a building for grid needs. This article presents the development and integration of a Hardware-In-the-Loop Flexible load Testbed (HILFT) that integrates physical HVAC systems with a simulated building model and simulated occupants with the goal of generating datasets to verify load flexibility of typical commercial buildings. Compared to simulation-only experiments, the hardware-in-the-loop approach captures the dynamics of the physical systems while also allowing efficient testing of various boundary conditions. The HILFT integration in this article is achieved through the co-simulation among various software environments including LabVIEW, MATLAB, and EnergyPlus. Although theoretically viable, such integration has encountered many real-world challenges, such as: 1) how to design the overall data infrastructure to ensure effective, robust, and efficient integration; 2) how to avoid closed-loop hunting between simulated and emulated variables; 3) how to quantify system response times and minimize system delays; and 4) how to assess the overall integration quality. Lessons-learned using the examples of an AHU-VAV system, an air-source heat pump system, and a water-source heat pump system are presented.
机译:通过充分利用建筑物和建筑设备的能源灵活性潜力,可以在一定程度上实现降低能源成本、改变电力高峰、增加可再生能源的使用和提高电网稳定性的目标。通过公开可用的高分辨率数据集,可以促进利用这些灵活性的策略的制定,这些数据集说明了如何在不同的气候区使用商业建筑中的暖通空调系统控制,以塑造建筑物的能源使用概况,以满足电网需求。本文介绍了硬件在环柔性负载测试平台 (HILFT) 的开发和集成,该测试平台将物理 HVAC 系统与模拟建筑模型和模拟居住者集成在一起,目的是生成数据集以验证典型商业建筑的负载灵活性。与仅仿真实验相比,硬件在环方法可以捕获物理系统的动态,同时还可以对各种边界条件进行有效测试。本文中的 HILFT 集成是通过各种软件环境(包括 LabVIEW、MATLAB 和 EnergyPlus)之间的协同仿真实现的。尽管在理论上可行,但这种集成遇到了许多现实挑战,例如:1)如何设计整体数据基础设施以确保有效、健壮和高效的集成;2)如何避免模拟变量和仿真变量之间的闭环搜寻;3)如何量化系统响应时间,最小化系统延迟;4)如何评估整体集成质量。通过AHU-VAV系统、空气源热泵系统和水源热泵系统的例子,介绍了经验教训。

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