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OPTIMAL DESIGN OF LIGHTWEIGHT MACHINES USING FLEXIBLE MULTIBODY SYSTEM DYNAMICS

机译:使用灵活的多体系系统动态的轻量级机的优化设计

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In many machine and robotic applications energy efficiency is an increasingly crucial issue. In order to achieve energy efficiency lightweight structural designs are necessary. However, undesired elastic deformations might occur due to the light wight design. In order to achieve good system performance the actual dynamic loads must be taken into account in the design of the system's components. In this paper optimization approaches for lightweight machine designs are employed to improve the tracking behavior the systems. Thereby, fully dynamical simulations of flexible multibody systems are coupled with both shape or topology optimization for the elastic members of the multibody system. It is shown, that by these approaches the end-effector trajectory tracking error of light wight manipulators can be decreased significantly.
机译:在许多机器和机器人应用中,能源效率是一个日益关键的问题。为了实现能量效率,需要轻量化结构设计。然而,由于光控设计,可能会出现不期望的弹性变形。为了实现良好的系统性能,必须在系统组件的设计中考虑实际的动态负载。在本文中,采用轻质机械设计的优化方法来改善系统的跟踪行为。因此,柔性多体系的完全动态模拟与多体体系的弹性构件的形状或拓扑优化相结合。示出了,通过这些方法可以显着降低灯具操纵器的最终效应器轨迹跟踪误差。

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