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A unified approach to kinematic synthesis of mechanism by adaptive curve fitting

机译:自适应曲线拟合的机构运动学统一方法

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摘要

A unified approach to kinematic synthesis of mechanism is presented in this paper. Firstly a new approach to adaptive curve fitting is presented, which leads the normal fitting error to be minimum for a series of given discrete points, including a plane curve fitting, a spherical curve fitting and a ruled surface fitting in terms of invariants of ruled surface. Approximate characteristic points and lines are defined, such as an approximate circle point, an approximate slide point, an approximate spherical cone point and an approximate constant axis with an approximate spherical image cone point and an approximate striction curve. Then, the ruled surface fitting will be converted into a space curve fitting and a spherical curve fitting by differential geometry. Based on these definitions and the adaptive curve fitting approaches, the unified mathematical model is set up for the kinematic synthesis of mechanism from planar, spherical to spatial motion. Finally, a planar mechanism or a spatial mechanism can be synthesized by means of searching for two approximate characteristic points, or a characteristic point and a characteristic line, even two characteristic lines. This puper lays a theoretic base for the existence of the best solution and the convergence of the optimum algorithm.
机译:本文提出了一种统一的机构运动学综合方法。首先,提出了一种新的自适应曲线拟合方法,该方法使一系列给定离散点的法线拟合误差最小,包括平面曲线拟合,球面曲线拟合和直纹曲面的不变性方面的直纹曲面拟合。 。定义了近似特征点和线,例如近似圆点,近似滑动点,近似球形锥点和近似恒定轴,以及近似球形像锥点和近似收缩曲线。然后,通过微分几何将直纹曲面拟合转换为空间曲线拟合和球形曲线拟合。基于这些定义和自适应曲线拟合方法,建立了统一的数学模型,用于从平面,球形到空间运动的机构运动学综合。最后,可以通过搜索两个近似特征点,或者特征点和特征线,甚至两个特征线,来合成平面机构或空间机构。该优化器为最佳解决方案的存在和最佳算法的收敛奠定了理论基础。

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