An object-oriented and Internet-based simulation model for plant growth

被引:0
|
作者
Pan, X [1 ]
Hesketh, JD [1 ]
Huck, MG [1 ]
机构
[1] Univ Illinois, Dept Crop Sci, Urbana, IL 61801 USA
关键词
!text type='Java']Java[!/text] applet; object-oriented; Internet; simulation; generic plant growth;
D O I
暂无
中图分类号
S8 [畜牧、 动物医学、狩猎、蚕、蜂];
学科分类号
0905 ;
摘要
Fundamental plant processes (e.g. leaf expansion, photosynthesis,...), environmental factors such as soil characteristics, weather data, etc., cultural practices and state-variables were coded as objects into Java classes based upon agronomic theory, experimental data, and published models. The result was a generic plant growth model for research and educational use on the World Wide Web. The model consists of several modules: Environment, Plant, Input, Output and Simulator. Environment deals with weather and soil data and computes energy, water and nitrogen balance in cropping systems. Plant simulates plant phenological events, height growth, as well as carbohydrate accumulation and partitioning between root and shoot systems. Input consists of plant, weather and soil databases as well as agronomic inputs. Output draws figured and displays text results for the state variables, respectively. Simulator is an applet which can be added into a HTML program and published on the World Wide Web. It can also display a graphical user interface for the model and manage the inputs and outputs by calling the other sub-models. This model has a graphical user interface running on the world wide web. With:a Java-embedded web browser, one can link to the run-time model from our website (http://th190-50.agn.uiuc.edu). When the users have chosen a plant genotype from the plant database to do plant growth simulation studies, they may choose different environmental conditions from databases containing site-specific weather and soil characteristics, and may input agronomic data, such as planting date, row spacing, etc, into text fields provided by the interface. Model output is then displayed in both figure and text forms by clicking appropriately marked buttons for such state variables as phenological events, LAT, plant height, biomass, shoot/root, photosynthesis, evapotranspiration, soil water potential, plant water stress, etc.
引用
收藏
页码:345 / 351
页数:7
相关论文
共 50 条
  • [21] DESIGN OF OBJECT-ORIENTED MODEL FOR QUEUING SIMULATION SOFTWARE
    Moiseev, Alexander N.
    Sinyakov, Mihail, V
    [J]. VESTNIK TOMSKOGO GOSUDARSTVENNOGO UNIVERSITETA-UPRAVLENIE VYCHISLITELNAJA TEHNIKA I INFORMATIKA-TOMSK STATE UNIVERSITY JOURNAL OF CONTROL AND COMPUTER SCIENCE, 2010, 10 (01): : 89 - 93
  • [22] Object-oriented simulation - Introduction
    Levasseur, J
    [J]. SIMULATION, 1998, 70 (06) : 358 - 358
  • [23] Object-oriented simulation and GA
    Ramakrishnan, S
    [J]. PARALLEL AND DISTRIBUTED COMPUTING SYSTEMS, 2001, : 57 - 61
  • [24] An overview of object-oriented simulation
    Roberts, CA
    Dessouky, YM
    [J]. SIMULATION, 1998, 70 (06) : 359 - 368
  • [25] Fundamentals of object-oriented simulation
    Joines, JA
    Roberts, SD
    [J]. 1998 WINTER SIMULATION CONFERENCE PROCEEDINGS, VOLS 1 AND 2, 1998, : 141 - 149
  • [26] The CMS object-oriented simulation
    Abdoulline, S.
    Amapane, N.
    Ambroglini, F.
    Arce, P.
    Ashby, S.
    Banerjee, S.
    Berthon, U.
    Boccali, T.
    Case, M.
    Chariot, C.
    Cheung, H.
    Cox, T.
    Darmenov, N.
    De Roeck, A.
    Ding, X.
    Dutta, S.
    Elvira, D.
    Ferro, F.
    Giammanco, A.
    Govoni, P.
    Gutsche, O.
    Huang, X.
    Innocente, V.
    Jones, C.
    Kharchilava, A.
    Katsas, P.
    Kowalkowski, J.
    Lassila-Perini, K.
    Magni, S.
    Meridiani, P.
    Moortgat, F.
    Nikitenko, A.
    Osborne, I.
    Paterno, M.
    Pioppi, M.
    Piperov, S.
    Ratnokiva, N.
    Rizzi, A.
    Sexton-Kennedy, E.
    Shabalina, E.
    Silvestris, L.
    Spiropulu, M.
    Stavrianakou, M.
    Tanenbaum, W.
    Wen, J.
    Wildish, T.
    Wilkinson, R.
    Wynhoff, S.
    Yagil, A.
    Yarba, J.
    [J]. 2005 IEEE NUCLEAR SCIENCE SYMPOSIUM CONFERENCE RECORD, VOLS 1-5, 2005, : 995 - 999
  • [27] Object-oriented Battlefield Environment Simulation Process Object Model Based on Task-driven
    Jie ZHU
    Xiong YOU
    Qing XIA
    Hongjun ZHANG
    [J]. Journal of Geodesy and Geoinformation Science, 2019, 2 (03) : 31 - 43
  • [28] Authorization model based on object-oriented concept
    Izaki, K
    Tanaka, K
    Takizawa, M
    [J]. 15TH INTERNATIONAL CONFERENCE ON INFORMATION NETWORKING, PROCEEDINGS, 2001, : 72 - 77
  • [29] Internet Knowledge-Sharing System Based On Object-Oriented
    Zhang, Junjun
    Liu, Yong
    Xiao, Yonggang
    [J]. 2008 INTERNATIONAL SYMPOSIUM ON INTELLIGENT INFORMATION TECHNOLOGY APPLICATION, VOL I, PROCEEDINGS, 2008, : 239 - 243
  • [30] Distributed Object-oriented Web-based Simulation
    Lee, TD
    Hwang, SC
    Jeong, JL
    Jeong, CS
    [J]. PARALLEL COMPUTING TECHNOLOGIES, PROCEEDINGS, 2003, 2763 : 509 - 518