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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Geometric classification tests using interval arithmetic in b-rep solid modeling
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Geometric classification tests using interval arithmetic in b-rep solid modeling

机译:b-rep实体建模中使用区间算法的几何分类测试

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摘要

In this work, the use of interval arithmetic is considered to increase robustness of geometric classification algorithms in B-Rep solid modeling systems. The classification algorithms, also known as incidence tests, are important to keep the consistency between topology and geometry in a solid model during the application of Boolean operations. An error in the incidence test has deep impact over the steps that follow the Boolean operations and can damage the result, generating an inconsistent solid. The interval arithmetic incorporates approximation errors, so that, it eliminates the need of defining a fixed tolerance to do the comparison between floating-point numbers. However, it is not possible to directly convert floating-point algorithms to interval arithmetic, so that, it is necessary to reformulate the entire algorithm. Another important step in the Boolean operation is the determination of intersection points where the use of interval arithmetic can have side effects as intervals with large dimensions, and may cause incidence tests failures. It is necessary to control the growth of the intervals based on the geometry and topology. This work will introduce the application of interval arithmetic to a B-Rep solid modeler.
机译:在这项工作中,间隔算术的使用被认为可以提高B-Rep实体建模系统中几何分类算法的鲁棒性。分类算法,也称为关联测试,对于在布尔运算的应用过程中保持实体模型中的拓扑和几何之间的一致性很重要。关联测试中的错误会对布尔运算之后的步骤产生深远的影响,并可能损坏结果,生成不一致的实体。区间算术结合了近似误差,因此无需定义固定公差即可在浮点数之间进行比较。但是,不可能将浮点算法直接转换为区间算法,因此,有必要重新制定整个算法。布尔运算中的另一个重要步骤是确定交点,在该交点处使用间隔算术可能会产生副作用,因为间隔的尺寸较大,并可能导致关联测试失败。必须根据几何形状和拓扑来控制间隔的增长。这项工作将介绍区间算术在B-Rep实体建模器中的应用。

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