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Automatic triangular grid generation on a free-form surface using a particle self-organizing system

机译:使用粒子自组织系统在自由曲面上自动生成三角网格

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A novel method for automatic triangular grid generation on a free-form surface based on Coulomb's law is proposed in this paper, which we refer to as the particle self-organizing system (PSOS). The self-organizing of particles is realized by the interaction between charged particles, which brings about an even layout of particles. After connecting the optimized particles, a uniform triangular grid is generated. First, a moderate number of grid points are randomly arranged on the surface. Second, the grid points are regarded as charged particles with the same charge in the electric field and free to move driven by the Coulomb force. Third, the equilibrium state of the particle system is acquired according to the equivalent electric field intensity of each particle. Finally, the triangular grid is generated by the Delaunay method. According to the different motion space of particles, the particle self-organizing system can be divided into an indirect method and a direct method. The particle motion space of the indirect method is the parameter domain; the grid layout is obtained first and then mapped back to the space surface. The particle motion space of the direct method is the physical space of the surface; a grid is generated directly on the physical domain, and no mapping process is needed. The case studies indicate that both methods can generate a uniform triangular grid quickly, with the direct method having a higher grid quality.
机译:提出了一种基于库仑定律的自由曲面自动生成三角网格的新方法,称为粒子自组织系统(PSOS)。粒子的自组织是通过带电粒子之间的相互作用实现的,这带来了粒子的均匀布局。连接优化的粒子后,将生成均匀的三角形网格。首先,在表面上随机排列一定数量的网格点。其次,网格点被认为是在电场中具有相同电荷并且在库仑力的驱动下自由移动的带电粒子。第三,根据每个粒子的等效电场强度获得粒子系统的平衡状态。最后,通过Delaunay方法生成三角形网格。根据粒子运动空间的不同,粒子自组织系统可以分为间接法和直接法。间接方法的粒子运动空间是参数域。首先获取网格布局,然后将其映射回空间表面。直接方法的粒子运动空间是表面的物理空间;网格是直接在物理域上生成的,不需要映射过程。案例研究表明,两种方法都可以快速生成均匀的三角形网格,而直接方法的网格质量更高。

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