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Parameters Optimization Design of 3-UPU Parallel Mechanism based on the Spectral Norm

机译:基于谱范数的3-UPU并联机构参数优化设计

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For the same type of the parallel mechanism, the structure parameters affect the performance of the movement of kinematics and the static stiffness, so the design of the reasonable structure parameters becomes a key problem in the structural design of parallel mechanism. Taking the 3-UPU parallel mechanism as the research object, an optimum design method of parallel mechanism structure parameters based on the spectral norm is proposed. Firstly, the structure of the parallel mechanism deduces the mathematical model of the end executor and establishes Jacobi matrix, and then the mathematical model of Jacobi matrix condition number is established in the form of spectral norm according to the parallel mechanism dexterity evaluation system in the condition number of the evaluation index. Through the first-order influence coefficient and the eigenvalue of matrix, the analysis of the optimization and simulation is made on the structure parameters of the parallel mechanism whose workspace is known by using the Matlab software. The results show that: in the known workspace and considering the requirements of the design of mechanical structure, when the condition number is 1. $58leq Eleq 1.72$, the optimized parameters meet the initial design requirements and the data lays a theoretical foundation for the follow-up analysis of the error of parallel mechanism.
机译:对于相同类型的并联机构,结构参数影响运动学运动的性能和静刚度,因此合理的结构参数的设计成为并联机构结构设计中的关键问题。以3-UPU并联机构为研究对象,提出了一种基于谱范数的并联机构结构参数优化设计方法。首先,通过并联机构的结构推导最终执行器的数学模型,建立雅可比矩阵,然后根据该条件下的并联机构灵巧性评价系统,以谱范数的形式建立雅可比矩阵条件数的数学模型。评价指标编号。通过一阶影响系数和矩阵特征值,利用Matlab软件对已知工作空间的并联机构的结构参数进行了优化和仿真分析。结果表明:在已知工作空间中,并考虑机械结构设计的要求,当条件数为1时。$ 58 \ leq E \ leq 1.72 $,优化后的参数满足初始设计要求,数据奠定了理论基础。为并联机构误差的后续分析奠定基础。

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