About Building of Models for Objects in Space of Four and More Dimensions in Educational Process

Алексей Бойков, A. Boykov
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引用次数: 5

Abstract

In this paper the visibility concept in the context of modeling of multidimensional spaces’ objects is clarified. It is concluded that such model’s visibility should be defined as unambiguity and completeness of information presented in this model and consistent with the student’s experience in the area of modeling a space of higher dimension (3D) by elements of spaces of lower dimension (2D). Such possibilities are presented by the generalized complex drawing. Examples for objects 4D-modeling using two 3D or three 2D flat projections are presented, some properties of the 4D generalized drawing are listed. The solution of problems with 4D-objects is considered on the example of 4D-pyramid section construction, and deploying its lateral surface. It is shown that to simplify the solution of these problems is required a system allowing automatically perform repetitive sequences of constructions. A list of elementary constructions is presented, and a method for recording of composite constructions and based on them algorithms for problems solving is shown. It is demonstrated that a 3D-scan of 4D-pyramid’s lateral surface, constructed with 2D drawing, can be imported into CAD as a 3D-model. The deploying of the 4D-cone’s lateral surface is considered. The resulting scan’s surface 3D-model imported into CAD is shown. Cases are indicated when a multidimensional space’s object 3D-model may be more visual than a flat one. As an example, 2D-models for imaginary continuations of lines and circles of the complex plane (simulated by Euclidean 4D-space) are presented. Two 3D-projections for imaginary continuations of a circle with a real radius as 3D-space surfaces are shown. It is noted that in order to combine in an educational course the multidimensional space’s objects modeling and work in CAD the tasks on designing of complex technical surfaces by means of output in multidimensional space are suitable. A brief review of sources is given, in which theoretical foundations and the use of key geometrical methods for surfaces construction are considered; an example of a surface constructed by a progressive key method and imported into CAD is shown. The concept of a product’s electronic model (PEM) is described, in which the modeled object’s 3D-simulator as its visual representation is combined with numerous 2D-layers, which elements automatically perform geometrical and graphical calculations in spaces of any dimensions, and control 3D-model’s dimensions and shape through constructive and parametric links. Conclusions are drawn about the possibility of visual multidimensional modeling in the educational process, the advantages of using a complex drawing for solving of problems with multidimensional objects, the need to use special systems of constructive geometric modeling that automate repetitive sequences of constructions. It is also concluded that multidimensional objects’ 2D-models can and should be directly involved in the PEM formation.
教育过程中四维及多维空间对象模型的构建
本文阐述了多维空间对象建模中可见性的概念。结论是,该模型的可见性应定义为该模型中所呈现的信息的不模糊性和完整性,并且与学生在使用低维空间(2D)的元素建模高维空间(3D)方面的经验相一致。这种可能性是由广义复图提出的。给出了用两个三维平面投影或三个二维平面投影进行物体四维建模的实例,并列举了四维广义绘图的一些性质。以四维金字塔截面构造为例,考虑了四维物体问题的求解,并展开了四维金字塔侧面。结果表明,为了简化这些问题的求解,需要一个允许自动执行重复序列结构的系统。给出了一个基本结构表,并给出了一种记录复合结构的方法和基于这些基本结构的问题求解算法。结果表明,利用二维图构建的4d金字塔侧面的三维扫描可以作为三维模型导入CAD中。考虑了4D-cone侧表面的布置。所得到的扫描表面3d模型导入到CAD中。在某些情况下,多维空间的对象3d模型可能比平面的对象3d模型更直观。作为一个例子,给出了复数平面的线和圆的虚延拓的二维模型(用欧几里德三维空间模拟)。两个三维投影为一个圆的虚延续与实半径作为三维空间表面显示。指出在教学过程中,为了将多维空间的对象建模与计算机辅助设计(CAD)工作相结合,采用多维空间输出的方法进行复杂技术曲面的设计是合适的。简要回顾了来源,其中的理论基础和使用的关键几何方法的表面构造是考虑;给出了用逐级键法构造曲面并将其导入CAD的实例。描述了产品电子模型(PEM)的概念,其中建模对象的3d模拟器作为其视觉表示与许多2d层相结合,这些层的元素在任何维度的空间中自动执行几何和图形计算,并通过建设性和参数化链接控制3d模型的尺寸和形状。结论是在教育过程中视觉多维建模的可能性,使用复杂的绘图来解决多维对象问题的优势,需要使用特殊的建设性几何建模系统来自动重复结构序列。多维对象的二维模型可以而且应该直接参与PEM的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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