Plants, fractals, and formal languages

A. R. Smith
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引用次数: 462

Abstract

Although fractal models of natural phenomena have received much attention recently, there are other models of complex natural objects which have been around longer in Computer Imagery but are not widely known. These are procedural models of plants and trees. An interesting class of these models is presented here which handles plant growth, sports an efficient data representation, and has a high “database amplification” factor. It is based on an extension of the well-known formal languages of symbol strings to the lesser-known formal languages of labeled graphs. It is so tempting to describe these plant models as “fractal” that the similarities of this class of models with fractal models are explored in an attempt at rapprochement. The models are not fractal so the common parts of fractal theory and plant theory are abstracted to form a class of objects, the graftals. This class may prove to be of great interest to the future of Computer Imagery. Determinism is shown to provide adequate complexity, whereas randomness is only convenient and often inefficient. Finally, a nonfractal, nongraftal family of trees by Bill Reeves is introduced to emphasize some of the paper's nongrammatical themes.
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植物、分形和形式语言
尽管自然现象的分形模型最近受到了广泛的关注,但在计算机图像领域还有其他复杂自然物体的模型,它们存在的时间更长,但并不广为人知。这些是植物和树木的程序模型。这里提出了一类有趣的模型,它处理植物生长,具有有效的数据表示,并且具有很高的“数据库放大”因子。它是基于将众所周知的符号字符串的形式语言扩展到鲜为人知的标记图的形式语言。将这些植物模型描述为“分形”是如此诱人,以至于这类模型与分形模型的相似性被探索以试图和解。该模型不是分形的,因此将分形理论和植物理论的共同部分抽象为一类对象,即嫁接。这门课可能会对计算机图像的未来产生极大的兴趣。决定论提供了足够的复杂性,而随机性只是方便,而且往往效率低下。最后,介绍了Bill Reeves的非分形,非嫁接的树家族,以强调论文的一些非语法主题。
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