EnergyPlus Integration Into Co-Simulation Environment to Improve Home Energy Saving Through Cyber-Physical Systems Development

J. Singer, Thomas P. Roth, Chenli Wang, Cuong Nguyen, Hohyun Lee
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引用次数: 7

Abstract

This paper presents a co-simulation platform which combines a building simulation tool with a Cyber-Physical Systems (CPS) approach. Residential buildings have a great potential of energy reduction by controlling home equipment based on usage information. A CPS can eliminate unnecessary energy usage on a small, local scale by autonomously optimizing equipment activity, based on sensor measurements from the home. It can also allow peak shaving from the grid if a collection of homes are connected. However, lack of verification tools limits effective development of CPS products. The present work integrates EnergyPlus, which is a widely adopted building simulation tool, into an open-source development environment for CPS released by the National Institute of Standards and Technology (NIST). The NIST environment utilizes the IEEE High Level Architecture (HLA) standard for data exchange and logical timing control to integrate a suite of simulators into a common platform. A simple CPS model, which controls local HVAC temperature set-point based on environmental conditions, was tested with the developed co-simulation platform. The proposed platform can be expanded to integrate various simulation tools and various home simulations, thereby allowing for co-simulation of more intricate building energy systems.
EnergyPlus集成到联合仿真环境中,通过网络物理系统开发改善家庭节能
本文提出了一个结合建筑仿真工具和信息物理系统(CPS)方法的联合仿真平台。住宅建筑通过对家用设备的使用信息进行控制,具有很大的节能潜力。CPS可以根据来自家庭的传感器测量,通过自主优化设备活动,在小范围内消除不必要的能源使用。如果一组家庭连接在一起,它还可以允许电网调峰。然而,缺乏验证工具限制了CPS产品的有效开发。目前的工作将EnergyPlus(一种广泛采用的建筑模拟工具)集成到国家标准与技术研究所(NIST)发布的CPS开源开发环境中。NIST环境利用IEEE高级体系结构(HLA)标准进行数据交换和逻辑时序控制,将一套模拟器集成到一个公共平台中。利用开发的联合仿真平台,对基于环境条件控制局部暖通空调温度设定点的简单CPS模型进行了测试。所提出的平台可以扩展到集成各种仿真工具和各种家庭仿真,从而允许更复杂的建筑能源系统的联合仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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