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Raising Accuracy in Physically Based Simulations Through Scaling Equations

机译:通过缩放方程提高基于物理的仿真的精度

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摘要

In the recent years, the physically based simulation has been developed and applied to various engineering processes. So far the use of this simulation method was limited to calculate the behavior of objects with large dimensions, as the calculation of small objects leads to severe inaccuracies. Thus, simulation results for small objects cannot be used in the engineering process. However, technical systems often consist of a variety of small functional components and workpieces. This paper proposes a new method to significantly improve the accuracy of physically based simulations of small objects by scaling. First, a set of scaling equations is introduced, which allow physically correct scaling of dynamic rigid body systems. Second, the equations are validated by simulating a cube with an edge length of only 20 μm. In this simulation scenario, the new method is compared to the conventional, nonscaling physically based simulation and the improvements of the simulation results are examined. With the scaling equations, technical systems of small components and workpieces can virtually be tested and optimized. This affects a significant reduction of hardware based time and cost consuming experiments.
机译:近年来,已经开发了基于物理的仿真并将其应用于各种工程过程。到目前为止,由于小对象的计算会导致严重的误差,因此该模拟方法的使用仅限于计算大尺寸对象的行为。因此,小对象的仿真结果无法在工程过程中使用。但是,技术系统通常由各种小型功能组件和工件组成。本文提出了一种新方法,可以通过缩放显着提高基于物理的小对象模拟的准确性。首先,引入了一组比例方程,可以物理上正确地调整动态刚体系统的比例。其次,通过模拟边缘长度仅为20μm的立方体来验证方程。在这种仿真情况下,将新方法与基于物理的常规非缩放物理仿真进行了比较,并检验了仿真结果的改进。利用比例方程,可以对小型零件和工件的技术系统进行虚拟测试和优化。这会大大减少基于硬件的时间和耗时的实验。

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  • 来源
    《Journal of Computing and Information Science in Engineering》 |2013年第4期|041009.1-041009.5|共5页
  • 作者单位

    Full Professor for Machine Tools and Production Technologies at the Technische Universitaet Muenchen,Director of the Institute for Machine Tools and Industrial Management,Head of the Fraunhofer IWU Department for Resource-Efficient Converting Machines,Institute for Machine Tools and Industrial Management (iwb),Technische Universitaet Muenchen,Boltzmannstrasse 15,Garching/Munich 85748, Germany;

    Full Professor for Machine Tools and Production Technologies at the Technische Universitaet Muenchen,Director of the Institute for Machine Tools and Industrial Management,Head of the Fraunhofer IWU Department for Resource-Efficient Converting Machines,Institute for Machine Tools and Industrial Management (iwb),Technische Universitaet Muenchen,Boltzmannstrasse 15,Garching/Munich 85748, Germany;

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