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基于生长机的虚拟植物可视化技术研究 被引量:8

Research on Visualization of Virtual Plant Based on Growth Mechanism
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摘要 虚拟植物在真实再现植物生长过程及在精确农业、遥感监测等领域都有非常广阔的应用前景。本文从植物生长建模的角度出发,着重阐述了基于生长机的虚拟植物生长可视化方面采用的一些方法及关键技术,并在此基础上提出了有待进一步解决的主要问题。对虚拟植物生长的可视化技术在虚拟试验、农田管理、教学等方面的应用进行了展望。 Virtual plant growth technique has an important significance in simulation of real plant growth process and study of digital agriculture or remote sensing field. According to various methodologies of plant growth modeling, some currently useful and efficient algorithms and key techniques for visualization of virtual plant growth are presented based on growth mechanism. Finally, we summarize the existing issues and highlight the perspectives of visualization of virtual plant growth in the fields of virtual experiment and farm management as well as teaching areas from the viewpoints of research and applications.
出处 《微计算机信息》 北大核心 2006年第06S期240-242,共3页 Control & Automation
基金 国家"十五"重大科技专项资助项目(2003AA601100-3)
关键词 生长机 虚拟植物 可视化 Growth mechanism Virtual plant Visualization
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参考文献5

  • 1侯加林,王一鸣,董乔雪,张军.虚拟植物生长的研究现状与发展趋势[J].农业机械学报,2004,35(3):159-163. 被引量:36
  • 2Fourcaud T, Blaise F, Lac P, Castera P,etal. Numerical modeling of shape regulation and growth stresses in trees PART II: implementation in the AMAPpara software and simulation of tree growth.Trees Structure and Function, 2003, 17(1):31-39.
  • 3王旭刚,昂海松.计算机辅助导弹外形设计与三维可视化方法研究[J].微计算机信息,2005,21(09X):145-146. 被引量:8
  • 4Prusinkiewicz P, Lindenmayer A. The Algorithmic Beauty of Plants. New York: Springer-Verlag, 1990.
  • 5Zhao X,de Reffye P, Barthe1emy D,etal. Interactive Simulation of Plant Architecture Based on a Dual-Scale Automation Model. In:Bao-Gang Hu, Marc Jaeger Eds. Plant Growth Modeling and Applications. Beijing: Tsinghua University Press Beijing, China, 2003,144-153.

二级参考文献16

  • 1de Wit C T, et al. Simulation of assimilation, respiration and transpiration of crops. Simulation Monographs, Pudoc, Wageningen,1978.140
  • 2Prusinkiewicz P, Lindenmayer A, Hanan J. Developmental models of herbaceous plants for computer imagery purpose. Computer Graphics,1988,22(4):141~150
  • 3Mech R, Prusinkiewicz P. Visual models of plants interacting with their environment. Computer Graphics,1996,30(3):397~410
  • 4Prusinkiewicz P. A look at the visual modeling of plant using L-systems. Agronomie,1990,19:211~224
  • 5Prusinkiewicz P, Hammel M, Mjolsness E. Animation of plant development. Computer Graphics,1993,27(3):351~360
  • 6de Reffye Ph, Houllier F. Calibration of a hydraulic architecture-based growth model of cotton plants. Agronomie,1999,19:265~280
  • 7de Reffye Ph, Houllier F. Modeling plant growth and architecture: Some recent advances and applications to agronomy and forestry. Current Science,1997,73(11):984~992
  • 8de Reffye Ph, Edelin C, Francon J, et al. Plant models faithful to botanical structure and development. Computer Graphics,1988,22(4):151~158
  • 9Jaeger M, de Reffye Ph. Basic concepts of computer simulation of plant growth. J. Biosci.,1992,17:275~291
  • 10Room P M, Hanan J S, Prusinkiewicz P. Virtual plants: New perspectives for ecologists, pathologists and agricultural scientists. Trends in Plant Science,1996(1):33~38

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