论文标题
通过FDVV型号的按钮仿真和设计
Button Simulation and Design via FDVV Models
论文作者
论文摘要
设计具有所需感觉和性能的按钮是具有挑战性的,因为机械构造必须具有正确的响应特征。已经研究了对按钮的力置换(FD)响应的物理模拟,以促进原型制作。但是,模拟的范围和现实主义受到限制。在本文中,我们将FD建模扩展到包括振动(V)和速度依赖性特征(V)。由此产生的FDVV模型可以更好地捕获按钮的触觉特性,包括SNAP。它们增加了模拟按钮的范围和相对于FD模型的感知现实主义。本文还展示了获取这些模型,编辑并相应模拟的方法。这种端到端的方法可以实现按钮的分析,原型化和优化,并支持探索很难机械实施的设计。
Designing a push-button with desired sensation and performance is challenging because the mechanical construction must have the right response characteristics. Physical simulation of a button's force-displacement (FD) response has been studied to facilitate prototyping; however, the simulations' scope and realism have been limited. In this paper, we extend FD modeling to include vibration (V) and velocity-dependence characteristics (V). The resulting FDVV models better capture tactility characteristics of buttons, including snap. They increase the range of simulated buttons and the perceived realism relative to FD models. The paper also demonstrates methods for obtaining these models, editing them, and simulating accordingly. This end-to-end approach enables the analysis, prototyping, and optimization of buttons, and supports exploring designs that would be hard to implement mechanically.