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An Optimum Synthesis of a Planar Mechanism Using a Dynamic-based Approach

机译:基于动态方法的平面机构的最佳综合

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This paper presents a dynamic approach to the synthesis of a crank-rocker four-bar mechanism, that is obtained by an optimization problem and its solution using the Bio-inspired algorithm called Differential Evolution (DE). The proposed dynamic approach states a mono-objective dynamic optimization problem (MODOP), in order to obtain a set of optimal parameters of the system. In this MODOP, the kinematic and dynamic models of the whole system are considered as well as a set of constraints including a dynamic constraint. The DE algorithm is adapted to solve the optimization problem by adding a suitable constraint-handling mechanism that is able to incorporate the kinematic and dynamic constraints of the system. A set of independent computational runs were carried out in order to validate the dynamic approach. An analysis from the mechanical and computational point of view is presented, based on the obtained results. From the analysis of the simulation and its results, it is shown that the solutions for the proposed algorithm lead to a more suitable design based on the dynamic approach.
机译:本文提出了一种动态方法来合成曲柄摇杆四连杆机构,该机构通过优化问题及其解决方案,使用称为“差异进化”(DE)的生物启发算法来求解。所提出的动态方法陈述了单目标动态优化问题(MODOP),以便获得系统的一组最佳参数。在此MODOP中,考虑了整个系统的运动学模型和动态模型以及包括动态约束在内的一组约束。 DE算法适用于通过添加适当的约束处理机制来解决优化问题,该机制可以合并系统的运动学和动态约束。为了验证动态方法,进行了一组独立的计算运行。基于获得的结果,从机械和计算的角度进行了分析。通过对仿真及其结果的分析,表明所提出算法的解决方案导致基于动态方法的更合适的设计。

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