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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Dimensional synthesis of the optimal RSSR mechanism for a set of variable design parameters
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Dimensional synthesis of the optimal RSSR mechanism for a set of variable design parameters

机译:一组变量设计参数的最佳RSSR机制的尺寸合成

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摘要

This paper deals with the dimensional synthesis of the RSSR mechanism, also known as spatial four-bar linkage (R and S stand for revolute and spherical kinematic pairs respectively). To univocally describe the geometry of the RSSR mechanism a specific set of geometry parameters is necessary. Generally speaking, in a synthesis problem a subset of these parameters, defined as design parameters, is usually considered as assigned whereas the remaining ones, defined as design variables, have to be found by the synthesis procedure. That is, the goal of the synthesis procedure is to find the values of the design variables, while satisfying both functional requirements of the mechanism and constraints on the design parameters. In this paper each design parameter is assigned as variable within a given range rather than being assigned as a single value. In general, varying a design parameter means obtaining a different mechanism which has different functional performances as a consequence. This feature gives raise to a novel synthesis problem, which has not been treated in the literature yet. In particular, the RSSR mechanism synthesis presented in this paper takes the optimization of the force transmission as an objective function, while referring to a given range of values of each design parameter. In addition, prescribed constraints on given extreme angular positions for both the input and the output links, on the upper and lower bounds for the transmission ratio, and on the upper and lower bounds for the design variable values have to be satisfied. The synthesis problem, set as a constrained minimization problem, is solved numerically in two steps by means of a Genetic algorithm followed by a quasi-Newton algorithm. As an example of application, a dimensional synthesis of an RSSR mechanism used in a hand exoskeleton is reported.
机译:本文涉及RSSR机构的尺寸合成,也称为空间四杆连杆(分别用于旋转和球形运动对的r和S代表)。本书来描述RSSR机制的几何形状,是必要的一组几何参数。一般而言,在综合问题中,定义为设计参数的这些参数的子集通常被认为是分配的,而综合过程必须找到剩余的那样,定义为设计变量。也就是说,合成过程的目标是找到设计变量的值,同时满足设计参数的机制和约束的功能要求。在本文中,每个设计参数都在给定范围内分配为变量,而不是被分配为单个值。通常,改变设计参数意味着获得具有不同功能性能的不同机制。该特征给出了一种新的合成问题,尚未在文献中进行治疗。特别地,本文所呈现的RSSR机制合成将力传输优化为目标函数,同时参考每个设计参数的给定值范围。另外,对于对传输比的上限和下界面的给定极点角位置以及设置变量值的上限​​和下限的给定极点角位置的规定约束必须满足。通过遗传算法随后是一种遗传算法,将其作为约束最小化问题设置为约束最小化问题的合成问题。作为应用的示例,报道了在手中使用的RSSR机制的尺寸合成。

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