We present an optimization-based design process that can generate the best insertion-based joints with respect to different errors, including manipulation error, manufacturing error, and sensing error. We separate the analysis into two stages, the insertion and the after-insertion stability. Each sub-process is discretized into different modes of contacts. The transitions among the contact modes form a directed graph and the connectivity of the graph is achieved and maintained through the manipulation of the socket edge-angle and peg contact-point locations. The analysis starts in 2D with the assumption of point-edge contacts. During the optimization, the edges of the socket are rotated and the points on the peg are moved along the edges to ensure the successful insertion and the stability after insertion. We show in simulation that our proposed method can generate insertion-based joints that are tolerant to the given errors. and we present a few simple 3D projections to show that the analysis is still effective beyond 2D cases.
翻译:我们提出了一个基于优化的设计流程,该流程能够产生与不同错误,包括操纵错误、制造错误和感知错误的最佳插入式联合。我们将分析分为两个阶段,插入和插入后稳定性。每个子进程被分解成不同的接触模式。接触模式之间的转换形成一个定向图,通过操纵套接字边缘和连接联络点位置实现并保持图的连接。分析从2D开始,假设有近距离接触。在优化过程中,套接线的边缘被旋转,插接线上的点沿着边缘移动,以确保成功插入和插入后的稳定。我们在模拟中显示,我们提议的方法可以产生与给定错误相容的基于插入的连接。我们提出了几个简单的3D预测,以显示分析仍然有效,超过2D案例。