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

Author:

Singer Joe1,Roth Thomas2,Wang Chenli1,Nguyen Cuong2,Lee Hohyun3

Affiliation:

1. Department of Mechanical Engineering, Santa Clara University, Santa Clara, CA 95053

2. National Institute of Standards and Technology, Gaithersburg, MD 20899

3. Department of Mechanical Engineering, Santa Clara University, Santa Clara, CA 95053 e-mail:

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 heating, ventilation, and cooling (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 cosimulation of more intricate building energy systems.

Funder

Engineering Laboratory

Publisher

ASME International

Subject

Geochemistry and Petrology,Mechanical Engineering,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference22 articles.

1. Energy Intelligent Buildings Based on User Activity: A Survey;Energy Build.,2013

2. Energy Flow Charts: Charting the Complex Relationships Among Energy, Water, and Carbon;Lawrence Livermore National Laboratory,2016

3. High Level Design of a Home Autonomous System Based on Cyber Physical System Modeling,2017

4. An Occupant Behavior Modeling Tool for Co-Simulation;Energy Build.,2016

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