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The Optimum Design of Torsional Spring for Series Elastic Actuator

机译:串联弹性执行器扭转弹簧的优化设计。

摘要

The use of series elastic actuators (SEA) in the applications with presence of human machine coupling has received extensive attention. One of the important research questions is how to design more efficient and compact flexible joints using physical springs. In this research work, we propose an optimization method for designing a planar torsional spiral spring with a shape of Archimedes curve. To define this optimization problem, the objective function and the constraint condition equations are put forward. We set the minimization of final volume, diameter and height of the spring as the optimization goal, the fixed stiffness of the spring as an equality constraint, the maximum deformation angle and the maximum stress of the spring when it reaches this angle, which should be less than the allowable, as two inequality constraints. To solve this optimization problem, the Spiral Dynamics Algorithm (SDA) is utilized to obtain the optimal parameter vector for this nonlinear constrained optimization problem. To validate the optimal result, a simulation with finite element analysis (FEA) is carried out, and the result shows that the obtained solution vector meets the design goal.
机译:在存在人机耦合的应用中使用串联弹性执行器(SEA)受到了广泛的关注。重要的研究问题之一是如何使用物理弹簧设计更高效,更紧凑的柔性接头。在这项研究工作中,我们提出了一种用于设计具有阿基米德曲线形状的平面扭转螺旋弹簧的优化方法。为了定义该优化问题,提出了目标函数和约束条件方程。我们将弹簧的最终体积,直径和高度的最小化作为优化目标,将弹簧的固定刚度作为等式约束,将弹簧达到该角度时的最大变形角和最大应力设为最大。小于允许值,这是两个不平等约束。为了解决该优化问题,利用螺旋动力学算法(SDA)来获得针对该非线性约束优化问题的最优参数向量。为了验证最优结果,进行了有限元分析(FEA)仿真,结果表明所获得的解矢量满足设计目标。

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