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Design and Optimization of a Novel Three-Dimensional Force Sensor with Parallel Structure

机译:新型并联结构三维力传感器的设计与优化

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摘要

To measure large external forces exerted on a loading platform, a novel three-dimensional force sensor is developed in this paper. The proposed sensor was designed with a parallel mechanism with three degrees of freedom. Kinematic analysis of this sensor was performed. Due to its structural characteristics, the working principle of the sensor was analyzed using a Jacobian matrix. The sensitivity diversity index and measuring capability were both calculated. The analysis showed that the proposed sensor is more suitable for measuring large forces than existing strain sensors. In addition, compared with existing strain sensors, this sensor is more suitable for measuring forces along the x and y axes. By changing the stiffness coefficients of the springs, the proposed sensor has reconfigurability. This sensor can change its measuring capability to meet different requirements. Next, the mode shapes and natural frequencies of the proposed sensor were performed. Finally, based on these performance indices, the design variables were optimized using a Multi-Objective Genetic Algorithm.
机译:为了测量施加在加载平台上的较大外力,本文开发了一种新型的三维力传感器。所提出的传感器设计有具有三个自由度的并联机构。对该传感器进行了运动学分析。由于其结构特点,使用雅可比矩阵分析了传感器的工作原理。计算灵敏度多样性指数和测量能力。分析表明,与现有的应变传感器相比,该传感器更适合于测量大的力。另外,与现有的应变传感器相比,该传感器更适合于测量沿x和y轴的力。通过改变弹簧的刚度系数,所提出的传感器具有可重构性。该传感器可以更改其测量能力以满足不同的要求。接下来,执行所提出的传感器的模式形状和固有频率。最后,基于这些性能指标,使用多目标遗传算法对设计变量进行了优化。

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