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Adapting a Low-Cost Selective Compliant Articulated Robotic Arm for Spillage Avoidance

机译:改编低成本选择性合规的铰接式机械臂,避免溢出

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Flexible automation systems provide the needed adaptability to serve shorter-term projects and specialty applications in biochemical analysis. A low-cost selective compliant articulated robotic arm designed for liquid spillage avoidance is developed here. In the vertical-plane robotic arm movement test, the signals from an inertial measurement unit (IMU) and accelerometer were able to sense collisions. In the horizontal movement test, however, only the signals from the IMU enabled collision to be detected. Using a calculation method developed, it was possible to chart the regions where the obstacle was likely to be located when a collision occurred. The low cost of the IMU and its easy incorporation into the robotic arm offer the potential to meet the pressures of lowering operating costs, apply laboratory automation in resource-limited venues, and obviate human intervention in response to sudden disease outbreaks.
机译:灵活的自动化系统可提供所需的适应性,以服务于生化分析中的短期项目和特殊应用。在此开发了一种用于避免液体溢出的低成本选择性顺应性铰接式机械臂。在垂直平面机器人手臂运动测试中,来自惯性测量单元(IMU)和加速度计的信号能够感应到碰撞。但是,在水平运动测试中,只有来自IMU的信号才能够检测到碰撞。使用开发的计算方法,可以绘制发生碰撞时障碍物可能位于的区域的图表。 IMU的低成本及其易于集成到机械臂中的潜力,有可能满足降低运营成本的压力,在资源有限的场所应用实验室自动化以及避免对突发疾病的人工干预。

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