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    • 51. 发明授权
    • Mesh data creation method
    • 网格数据创建方法
    • US08600957B2
    • 2013-12-03
    • US13258073
    • 2010-03-23
    • Motonari KobayashiIchiro OkajimaHiroshi KawakamiManhee JoToshihiro SuzukiDaisuke OchiTomohiro NagataYuki Oyabu
    • Motonari KobayashiIchiro OkajimaHiroshi KawakamiManhee JoToshihiro SuzukiDaisuke OchiTomohiro NagataYuki Oyabu
    • G06F17/30
    • G06F17/18G06F17/5009G06F2217/04G06Q30/02
    • Provided is a mesh data creation method allowing appropriate expression of population densities while making a balance between accuracy and granularity. In the mesh data creation method, when the number of samples in a region of reference mesh data with a predetermined size is not less than a threshold, divided mesh data is created by dividing the region of the reference mesh data. Namely, each portion with a high population density can be expressed by a fine region of mesh data and each portion with a low population density by a coarse region of mesh data. The above makes it feasible to prevent meshes from becoming too fine to ensure accuracy or, conversely, from becoming too coarse to maintain granularity, thereby resulting in failing to achieve a detailed grasp of population densities, and thus to achieve appropriate expression of population densities while making a balance between accuracy and granularity.
    • 提供了一种网格数据创建方法,允许适当表达人口密度,同时在精度和粒度之间取得平衡。 在网格数据创建方法中,当具有预定大小的参考网格数据区域中的采样数不小于阈值时,通过划分参考网格数据的区域来创建划分的网格数据。 也就是说,具有高人口密度的每个部分可以由网格数据的精细区域和具有低的人口密度的每个部分用网格数据的粗糙区域表示。 以上使得网格变得太细而不能确保准确性或相反地变得太粗糙以保持粒度,从而导致不能更好地掌握人口密度,从而实现人口密度的适当表达,同时 在精度和粒度之间取得平衡。
    • 59. 发明授权
    • Resinous impact-energy absorber for absorbing side impact energy
    • 用于吸收侧面冲击能量的树脂冲击能量吸收器
    • US07997637B2
    • 2011-08-16
    • US12416322
    • 2009-04-01
    • Toshihiro SuzukiKazuomi Amanai
    • Toshihiro SuzukiKazuomi Amanai
    • B60J5/00
    • B60R21/0428
    • A resinous impact-energy absorber 1 includes a cross rib 11 that includes four ribs 11A and a connected portion 11B. The four ribs 11A are connected with each other in a single cross shape by the connected portion 11B. Each of the ribs 11A has an opposed edge 11C and a side edge. The opposed edge 11C has a distance S1 from the door trim 2. The resinous impact-energy absorber 1 also includes one outer wall 12 connected with one of the side edges of the ribs 11A. The at least one outer wall 12 has a contact edge 12A capable of making contact with an outside surface of the door trim 2. The resinous impact-energy absorber 1 also includes at least one seating face 14 for securing the cross rib 11 to the outside surface of the door trim 2 via the at least one outer wall 12.
    • 树脂冲击能量吸收器1包括包括四个肋11A和连接部分11B的横肋11。 四个肋11A通过连接部11B以单个十字形连接。 每个肋11A具有相对的边缘11C和侧边缘。 相对的边缘11C与门饰件2具有距离S1。树脂冲击能量吸收器1还包括与肋11A的一个侧边缘连接的一个外壁12。 至少一个外壁12具有能够与门装饰件2的外表面接触的接触边缘12A。树脂冲击能量吸收器1还包括至少一个用于将横肋11固定到外部的座面14 通过至少一个外壁12,门饰件2的表面。