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A Flexible Concept for Designing Multiaxis Force/Torque Sensors Using Force Closure Theorem

机译:使用力闭合定理设计多轴力/扭矩传感器的灵活概念

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Multiaxis force/torque sensors have many applications in the areas of robotics and automation. A building blocks concept to design multiaxis force/torque sensors is introduced to provide a flexible and low-cost solution to measure multidimensional force/torque signals using a modularized assembly of several off-the-shelf 1-D force sensors. Based on the force closure theorem, we first identify the relationship between the required number of the 1-D force sensors and the dimensions of the measured force/torque signal. Furthermore, we formulate alternatives of the design solution for a multiaxis force/torque sensor, including the location and direction of each 1-D sensor. A virtual prototype of a six-axis force/torque is developed using this concept. Matrix-based force measuring models are derived to compute the six-axis force/torque signals from the output signals of seven 1-D force sensors. The matrix-based force measuring equations are validated using automatic dynamic analysis of mechanical systems. The output signals of the six-axis force/torque signal is consistent with the reference signals measured by an ATI Nano-17 force/torque sensor. One major advantage of this design concept is its flexibility; we can easily adapt the mechanical structure to design multidimensional force/torque sensors ranging from two degrees of freedom (2-DOFs) to 6-DOFs.
机译:多轴力/扭矩传感器在机器人技术和自动化领域具有许多应用。引入了用于设计多轴力/扭矩传感器的构建块概念,以提供一种灵活且低成本的解决方案,该方法使用多个现成的一维力传感器的模块化组件来测量多维力/扭矩信号。基于力闭合定理,我们首先确定一维力传感器的所需数量与测得的力/扭矩信号的尺寸之间的关系。此外,我们为多轴力/扭矩传感器制定了设计解决方案的替代方案,包括每个一维传感器的位置和方向。使用此概念开发了六轴力/扭矩的虚拟原型。推导出基于矩阵的力测量模型,以从七个一维力传感器的输出信号中计算六轴力/扭矩信号。使用机械系统的自动动态分析验证了基于矩阵的力测量方程。六轴力/扭矩信号的输出信号与ATI Nano-17力/扭矩传感器测得的参考信号一致。这种设计概念的主要优点是灵活性。我们可以轻松地调整机械结构来设计多维力/扭矩传感器,其范围从两个自由度(2-DOF)到6-DOF。

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