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Operating a Commercial Building HVAC Load as a Virtual Battery Through Airflow Control

机译:通过气流控制操作商业建筑HVAC负载作为虚拟电池

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摘要

Virtual battery (VB) is an innovative method to model flexibility of building loads and effectively coordinate them with other resources at a system level. Unlike a real battery with a dedicated power conversion system for charging control, methods are required for operating building loads to deviate from the baseline to respond to grid signals. This article presents a VB control for a commercial heating, ventilation, and air conditioning (HVAC) system to follow the desired power consumption in real-time by adjusting zonal airflow rates. The proposed method consists of two parts. At the system level, a mixed feedforward and feedback control is used to estimate the desired total airflow rate. At the zone level, two priority-based algorithms are then proposed to distribute the total airflow rate to individual zones. In particular, a zonal airflow limit estimation method is proposed using machine-learning techniques, in contrast to physics-based thermal models in existing studies, to more accurately capture zonal thermal dynamics and improve temperature control performance. An office building on the Pacific Northwest National Laboratory campus is implemented in EnergyPlus, and used to illustrate and validate the proposed control.
机译:虚拟电池(VB)是一种创新的建筑物载荷灵活性的创新方法,并有效地在系统级别与其他资源协调。与具有用于充电控制的专用电源转换系统的真正电池不同,操作建筑负载需要方法以偏离基线以响应网格信号。本文介绍了商业加热,通风和空调(HVAC)系统的VB控制,通过调整区域气流速率来实时遵循所需的功耗。所提出的方法由两部分组成。在系统级别,混合的前馈和反馈控制用于估计所需的总气流率。在区域级别,然后提出两个优先级的算法以将总气流率分配给单个区域。特别地,采用机器学习技术提出了一个区域气流限制估计方法,与现有研究中的物理基热模型相比,更准确地捕获区域热动态,提高温度控制性能。太平洋西北国家实验室校园的办公楼在EnergyPlus实施,并用于说明和验证所提出的控制。

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