首页> 外文期刊>Mechanism and Machine Theory: Dynamics of Machine Systems Gears and Power Trandmissions Robots and Manipulator Systems Computer-Aided Design Methods >Size and configuration syntheses of rigid-link mechanisms with multiple rotary actuators using the constraint force design method
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Size and configuration syntheses of rigid-link mechanisms with multiple rotary actuators using the constraint force design method

机译:使用约束力设计方法的具有多个旋转致动器的刚性连杆机构的尺寸和构造综合

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摘要

This study presents a new synthetic approach for path-generating or function-generating rigid-body mechanisms in the framework of a new hybrid genetic algorithm. In spite of some advantages of synthesis methods in designing rigid-body mechanisms, some inherent issues remain in determining optimal sizes and configurations of rigid links with multiple rotary actuators. To alleviate these difficulties and limitations, we improve our previous contribution, called the constraint force design method, by parameterizing and optimizing the existence of links, the x-y locations of joints modeled by unit masses (particles), and the kind of selection between rigid and string links, using binary, integer, and binary design variables, respectively. This new genotype coding system for GA for the integer and binary phenotypes makes it possible to use a smaller number of unit masses to synthesize manifold configurations of rigid-body mechanisms. In addition, the locations and types of rotary actuators are parameterized with additional integer design variables for the synthesis of realistic rigid-body mechanisms. Furthermore, for efficient optimization of GA, a new h-GA integrated with the Sequential Quadratic Programming (SQP) optimization algorithm is also developed to optimize the locations of joints. To demonstrate the validity of the present constraint force design method, several mechanism synthesis problems are solved.
机译:这项研究提出了一种新的综合方法,用于在新的混合遗传算法的框架内生成路径或生成函数的刚体机制。尽管合成方法在设计刚体机构方面有一些优势,但在确定具有多个旋转致动器的刚性链节的最佳尺寸和配置时,仍然存在一些固有的问题。为了减轻这些困难和局限性,我们通过参数化和优化链接的存在,以单位质量(粒子)建模的关节的xy位置以及在刚度和刚度之间进行选择的方式,改进了我们以前的贡献,即约束力设计方法。字符串链接,分别使用二进制,整数和二进制设计变量。这种用于GA的整数和二进制表型的新基因型编码系统,可以使用较少的单位质量来合成刚体机构的歧管构型。此外,旋转执行器的位置和类型通过附加的整数设计变量进行参数化,以合成实际的刚体机构。此外,为了有效地优化GA,还开发了一种与顺序二次规划(SQP)优化算法集成的新h-GA,以优化关节的位置。为了证明本约束力设计方法的有效性,解决了几种机构综合问题。

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