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Design Optimization of Mechanical Components Using an Enhanced Teaching-Learning Based Optimization Algorithm with Differential Operator

机译:使用增强的差分运算符的基于教学学习优化算法设计优化机械部件

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This paper studies in detail the background and implementation of a teaching-learning based optimization (TLBO) algorithm with differential operator for optimization task of a few mechanical components, which are essential for most of the mechanical engineering applications. Like most of the other heuristic techniques, TLBO is also a population-based method and uses a population of solutions to proceed to the global solution. A differential operator is incorporated into the TLBO for effective search of better solutions. To validate the effectiveness of the proposed method, three typical optimization problems are considered in this research: firstly, to optimize the weight in a belt-pulley drive, secondly, to optimize the volume in a closed coil helical spring, and finally to optimize the weight in a hollow shaft. have been demonstrated. Simulation result on the optimization (mechanical components) problems reveals the ability of the proposed methodology to find better optimal solutions compared to other optimization algorithms.
机译:本文详细研究了基于教学的基于教学优化(TLBO)算法的背景和实现了差分操作者,用于少数机械部件的优化任务,这对于大多数机械工程应用至关重要。与其他大多数的启发式技术一样,TLBO也是一种基于人口的方法,并使用群体的解决方案来进行全局解决方案。差分运算符被纳入TLBO,以有效地搜索更好的解决方案。为了验证所提出的方法的有效性,在本研究中考虑了三个典型的优化问题:首先,为了优化皮带轮驱动器中的重量,其次,以优化闭合线圈螺旋弹簧中的体积,最后优化空心轴的重量。已经证明了。优化(机械组件)问题的仿真结果显示,与其他优化算法相比,所提出的方法可以找到更好的最佳解决方案的能力。

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