Agent-based and graphical modelling of building occupancy

We propose a novel stochastic agent-based model of occupancy dynamics in a building with an arbitrary number of zones and occupants. Simulation of the model yields time-series of the location of each agent (a software representation of an occupant). The model is meant to provide realistic simulation...

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Published inJournal of building performance simulation Vol. 5; no. 1; pp. 5 - 25
Main Authors Liao, Chenda, Lin, Yashen, Barooah, Prabir
Format Journal Article
LanguageEnglish
Published Abingdon Taylor & Francis 01.01.2012
Taylor & Francis Ltd
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ISSN1940-1493
1940-1507
DOI10.1080/19401493.2010.531143

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Abstract We propose a novel stochastic agent-based model of occupancy dynamics in a building with an arbitrary number of zones and occupants. Simulation of the model yields time-series of the location of each agent (a software representation of an occupant). The model is meant to provide realistic simulation of occupancy dynamics in non-emergency situations. Comparison of the model's prediction of distributions of random variables such as first arrival time of a building is provided against those estimated from measurements in commercial buildings. We also propose a lower complexity graphical model of occupancy evolution in multi-zone buildings. The graphical model captures information on mean occupancy and correlation among occupancy at various zones in the building. The agent-based model can be used in conjunction with building performance simulation tools, while the graphical model is more suitable for real-time applications, such as occupancy estimation with noisy sensor measurements.
AbstractList We propose a novel stochastic agent-based model of occupancy dynamics in a building with an arbitrary number of zones and occupants. Simulation of the model yields time-series of the location of each agent (a software representation of an occupant). The model is meant to provide realistic simulation of occupancy dynamics in non-emergency situations. Comparison of the model's prediction of distributions of random variables such as first arrival time of a building is provided against those estimated from measurements in commercial buildings. We also propose a lower complexity graphical model of occupancy evolution in multi-zone buildings. The graphical model captures information on mean occupancy and correlation among occupancy at various zones in the building. The agent-based model can be used in conjunction with building performance simulation tools, while the graphical model is more suitable for real-time applications, such as occupancy estimation with noisy sensor measurements.
We propose a novel stochastic agent-based model of occupancy dynamics in a building with an arbitrary number of zones and occupants. Simulation of the model yields time-series of the location of each agent (a software representation of an occupant). The model is meant to provide realistic simulation of occupancy dynamics in non-emergency situations. Comparison of the model's prediction of distributions of random variables such as first arrival time of a building is provided against those estimated from measurements in commercial buildings. We also propose a lower complexity graphical model of occupancy evolution in multi-zone buildings. The graphical model captures information on mean occupancy and correlation among occupancy at various zones in the building. The agent-based model can be used in conjunction with building performance simulation tools, while the graphical model is more suitable for real-time applications, such as occupancy estimation with noisy sensor measurements. [PUBLICATION ABSTRACT]
Author Lin, Yashen
Liao, Chenda
Barooah, Prabir
Author_xml – sequence: 1
  givenname: Chenda
  surname: Liao
  fullname: Liao, Chenda
  organization: Department of Mechanical and Aerospace Engineering , University of Florida
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  givenname: Yashen
  surname: Lin
  fullname: Lin, Yashen
  organization: Department of Mechanical and Aerospace Engineering , University of Florida
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  givenname: Prabir
  surname: Barooah
  fullname: Barooah, Prabir
  email: pbarooah@ufl.edu
  organization: Department of Mechanical and Aerospace Engineering , University of Florida
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Snippet We propose a novel stochastic agent-based model of occupancy dynamics in a building with an arbitrary number of zones and occupants. Simulation of the model...
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SubjectTerms agent-based model
Algorithms
building energy performance
building occupancy
Commercial buildings
Computer programs
Computer simulation
Correlation
Dynamics
Economic models
graphical model
Mathematical models
occupancy model
Position (location)
Random variables
Software
States
Studies
Title Agent-based and graphical modelling of building occupancy
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