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基于L-系统的虚拟植物的研究与实现 被引量:2

Research and Realization of Virtual Plant Based on L-system
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摘要 L-系统是表达植物拓扑结构和其生长规律的重要方法,是设计虚拟植物与模拟植物生长过程的重要工具之一。为此,介绍了L-系统的并行替换机制和海龟几何解释机制,并结合Java语言,实现了D0L-系统与随机L-系统的植物拓扑结构模拟,以证实L-系统的模拟效果。最后,对L-系统在虚拟植物中的应用进行了展望。 L -system is an important way to represent plant individual topological structure and growth rules. It also is one of the most common tool to design virtual plant and to simulate plant growing process. Parallel rewriting mechanism of L - system and turtle geometry interpretation method were introduced. To validate the simulating result, DOL - system and stochastic L - system are realized with Java programming language. Finally, the researching perspectives were forecasted from application point of view.
出处 《农机化研究》 北大核心 2009年第2期175-177,共3页 Journal of Agricultural Mechanization Research
关键词 L-系统 虚拟植物 字符串重写规则 可视化 L - system virtual plants string rewriting rules visualization
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参考文献6

  • 1孙永香,刘彤,郑永果,葛平俱.虚拟植物的建模方法[J].系统仿真学报,2006,18(z1):263-266. 被引量:17
  • 2P Prusinkiewicz, M Hammel, J Hanan, et al. Plants to ecosystems: Advances in computational life sciences 1 -Proceedings of the 2nd CSIRO Symposium on Computational Challenges in Life Sciences [ C]//M T Michalewicz. L -systems: from the theory to visual models of plants. CSIRO Publishing, 1996.
  • 3孔勇,璩柏青.L系统在植物形态模拟中的应用[J].农机化研究,2007,29(4):136-138. 被引量:8
  • 4P Prusinkiewicz. Introduction to modeling with L - systems - L - systems and beyond [ C ]//Course Notes, SIGGRAPH, 2003.
  • 5Radomir Mech, P Prusinkiewicz. Visual models of plants interacting with their environment-L - systems and beyond [ C ]//Course Notes, SIGGRAPH ,2003.
  • 6唐卫东,李萍萍,卢章平.基于Open-L系统的植物结构功能模型研究[J].计算机应用研究,2007,24(3):94-96. 被引量:15

二级参考文献25

  • 1耿瑞平,涂序彦.虚拟植物生长模型[J].计算机工程与应用,2004,40(14):6-8. 被引量:12
  • 2丁维龙,熊范纶,张友华.基于构件的植物三维结构模拟模型[J].小型微型计算机系统,2004,25(9):1624-1627. 被引量:8
  • 3李保国,张宝贵.植物生长模型、模拟和可视化及其应用新进展[J].国际学术动态,2004(4):30-31. 被引量:3
  • 4[1]Room PM,Hanan JS,Prusinkiewicz P.Virtual plants:new perspectives for ecolo-gists,patholo-gists and agricultural scientists[J].Trends in Plant Science (ES1360-1385),1996,1(1):33-38.
  • 5[9]A.D.Bell,D.Roberts,A.Smith.Branching patterns:The simulation of plant architecture[J].Journal of theoretical biology (Y0022-5193),1979,81(2):351-375.
  • 6[10]Smith A.R.,Plants、 fractals and formal languages[J].ACM SIGGRAPH Computer Graphics (Y0097-8930),1984,18(3):1-10.
  • 7[11]Godin C,Carglio Y.A multiscale model of plant topological structures[J].Journal of theoretical biology(Y0022-5193),1998,191(1):1-46.
  • 8齐东旭.分形及计算机生成[M].北京:科学出版社,1994..
  • 9Prezemyslaw Prusinkiewicz, Lindenmayer Aristid. The Algorithmic Beauty of Plants[M].Berlin: Springer-Verlag, 1990.
  • 10FOURCAUD T, BLAISE F, LAC P, et al. Numerical modeling of shape regulation and growth stresses in trees PART II : implementation in the AMAPpara software and simulation of tree growth [ J ]. Trees Structure and Function, 2003,17( 1 ) :31-39.

共引文献35

同被引文献16

  • 1崔劲,徐凯声,高军峰.基于L-系统的交互式虚拟植物结构建模[J].武汉理工大学学报(交通科学与工程版),2005,29(2):312-314. 被引量:5
  • 2唐卫东,李萍萍,卢章平.基于Open-L系统的植物结构功能模型研究[J].计算机应用研究,2007,24(3):94-96. 被引量:15
  • 3施干卫,范菁,董天阳.基于环境敏感的植物动态生长模型研究[J].计算机应用研究,2007,24(3):223-225. 被引量:12
  • 4PRUSINKIEWICZ P, LINDENMAYERZH A. The Algorithmic Beauty of Plants[M]. New York: Springer, 1990: 26-28.
  • 5MECH R, PRUSINKIEWICZ P. Visual models of plants interacting with their environment[M]// Proceedings of SIC, GRAPH '96. [s. l.], [s. n.], 1996: 397-410.
  • 6PRUSINKIEWICZ P, HAMMEL M, HANAN J, et al. Visual models of plant development[M]// Handbook of Formal Languages: Vol 3. New York: Springer, 1997: 535-597.
  • 7BORCHERT R, HONDA H. Control of development in the bifurcating branch system of Tabebuia rosea: a computer simulation [J ]. Botanical Gazette, 1984, 145(2) : 184 -195.
  • 8齐东旭.分形及其计算机生成[M].北京:科学出版社,1996..
  • 9Jari Perttunen, Risto Sievanen. Incorporating Lindenmayer Systems for Architectural Development in A Functional structural Tree Model [ J ]. Ecological Modeling, 2005, 18 (1):479 - 491.
  • 10Tino Dombusch, Peter Wernecke, Wulf Diepenbrock. A Method to Extract Morphological Traits of Plant Organs from 3D Point Clouds As A Database for An Architectural Plant Model[ J ]. Ecological Modelling, 2007, 10 ( 1 ) : 119 - 129.

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