Matlab Program for Determining the Inertia Characteristics of Flat Surfaces with Monte Carlo Algorithms

M. Botiș, C. Pleșcan
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引用次数: 1

Abstract

This paper presents a Matlab program for calculating the inertia tensor for complex plane surfaces. The calculation of the moments of inertia for plane surfaces with classical methods involves decomposing the surfaces into primitive surfaces and applying Steiner's relations. The classical methods are based on the knowledge of the analytical determined moments of inertia for primitive surfaces. In the case of complex surfaces, numerical methods can be used which are based on discretizing the surface into triangles and determining the moments of inertia by applying Steiner's relations knowing the analytical moments of inertia for a triangle. Both methods are computationally intensive and are basically based on the analytical moments of inertia of an elementary surface. In the case of large and complex surfaces the Monte Carlo algorithm can be used, which is a probabilistic algorithm based on the generation of area elements within the surface for  which the moments  of inertia are determined and then summed over the entire area bounded by the surface. The paper presents the Matlab calculation program and application examples for the use of the probabilistic Monte Carlo algorithm.
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用蒙特卡罗算法确定平面惯性特性的Matlab程序
本文给出了计算复杂平面惯性张量的Matlab程序。平面转动惯量的经典计算方法是将平面分解为原始曲面,并应用斯坦纳关系。经典的方法是基于原始曲面的解析确定转动惯量的知识。对于复杂曲面,可以采用数值方法,将曲面离散成三角形,利用已知三角形解析惯性矩的斯坦纳关系确定其转动惯量。这两种方法都是计算量大的,基本上都是基于初等曲面的解析惯性矩。在大型和复杂曲面的情况下,可以使用蒙特卡罗算法,这是一种概率算法,基于曲面内面积元素的生成,惯性矩被确定,然后在曲面所包围的整个面积上求和。本文给出了概率蒙特卡罗算法的Matlab计算程序和应用实例。
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