Modelling Environments in ABMS: A System Dynamics Approach

被引:2
|
作者
Hesan, Reza [1 ]
Ghorbani, Amineh [1 ]
Dignum, Virginia [1 ]
机构
[1] Delft Univ Technol, Fac Technol Policy & Management, Delft, Netherlands
来源
MULTI-AGENT-BASED SIMULATION XV | 2015年 / 9002卷
关键词
Agent-based modeling; System dynamics; Environment; FRAMEWORK;
D O I
10.1007/978-3-319-14627-0_4
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
Environment is a basic concept of agent-based modeling and simulation (ABMS), in which agents exist and interact, can perceive and act. Common approaches to model environment in ABMS consider environment as a physical space (typically a 2D grid) or as a virtual space that supports agent to agent interaction. In this paper, we introduce a method for modeling the environment in agent-based simulations that integrates both its physical and social aspects. Borrowing from System Dynamics, we specify environment as a set of stocks and flows. Stocks represent physical resources, spatial locations and social structures in a uniform way. Stocks can be perceived and modified by agents through flows. Our method considers and describes the environment as a combination of spatial space (or network), physical structure, and social structure, which makes the inter-relation between the global state environment variables and the behavior of the agents explicit. We illustrate the use of the method through its application to a case study in consumer lighting.
引用
收藏
页码:41 / 52
页数:12
相关论文
共 50 条
  • [21] System dynamics modelling of an integrated pig production supply chain
    Piewthongngam, Kullapapruk
    Vijitnopparat, Prasert
    Pathumnakul, Supachai
    Chumpatong, Sawvapark
    Duangjinda, Monchai
    BIOSYSTEMS ENGINEERING, 2014, 127 : 24 - 40
  • [22] A system dynamics approach to unlock the complexity of the S&OP in virtual enterprises
    de Assis, Rodrigo Furlan
    de Santa-Eulalia, Luis Antonio
    Armellini, Fabiano
    Anholon, Rosley
    Rampasso, Izabela Simon
    Guerrini, Fabio Muller
    Godinho Filho, Moacir
    Ferreira, William de Paula
    ENTERPRISE INFORMATION SYSTEMS, 2023, 17 (12)
  • [23] A multi-scale modelling approach for analysing landscape service dynamics
    Willemen, L.
    Veldkamp, A.
    Verburg, P. H.
    Hein, L.
    Leemans, R.
    JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2012, 100 : 86 - 95
  • [24] Impact of Project Complexity Factors on Project Cycle Time: A System Dynamics Modelling Approach
    Lebcir, Reda M.
    Choudrie, Jyoti
    CONSTRUCTION AND PROJECT MANAGEMENT, ICCPM 2011, 2011, 15 : 166 - 170
  • [25] A system dynamics approach to modelling the management of the increased prediabetic prevalence of the South African population
    Thomas, Victoria
    de Kock, Imke
    Bam, Louzanne
    Musango, Josephine Kaviti
    2019 IEEE INTERNATIONAL CONFERENCE ON ENGINEERING, TECHNOLOGY AND INNOVATION (ICE/ITMC), 2019,
  • [26] Modelling the Impact of Mobile Application Adoption on the Taxi Demand: An Application of a System Dynamics Approach
    Ghani M.S.A.
    Abidin N.Z.
    Rahman R.A.
    Wibowo A.
    Alwi A.
    International Journal of Interactive Mobile Technologies, 2021, 15 (06) : 18 - 31
  • [27] Degrowth dynamics: Modelling policy proposals with system dynamics
    Dula, Ivan
    Videira, Nuno
    Groessler, Andreas
    JOURNAL OF SIMULATION, 2021, 15 (1-2) : 93 - 129
  • [28] Mapping versus modelling in system dynamics
    Dhawan, Rajat
    O'Connor, Marcus
    Borman, Mark
    PROCEEDINGS OF THE 2007 CONFERENCE ON SYSTEMS SCIENCE, MANAGEMENT SCIENCE AND SYSTEM DYNAMICS: SUSTAINABLE DEVELOPMENT AND COMPLEX SYSTEMS, VOLS 1-10, 2007, : 353 - 358
  • [29] System Dynamics Modelling of Situation Awareness
    Oosthuizen, R.
    Pretorius, L.
    2015 MILITARY COMMUNICATIONS AND INFORMATION SYSTEMS CONFERENCE (MILCIS), 2015,
  • [30] Modelling and assessment of the impact of supply disruption and cost of recovery using system dynamics approach
    Raghuram P.
    Harisankar G.
    International Journal of Industrial and Systems Engineering, 2021, 38 (04) : 432 - 449