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A Wireless Swing Angle Measurement Scheme Using Attitude Heading Reference System Sensing Units Based on Microelectromechanical Devices

机译:基于微机电装置的姿态航向参考系统传感单元的无线摆角测量方案

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摘要

Feasible real-time swing angle measurement is significant to improve the efficiency and safety of industrial crane systems. This paper presents a wireless microelectromechanical system (MEMS)-based swing angle measurement system. The system consists of two attitude heading reference system (AHRS) sensing units with a wireless communication function, which are mounted on the hook (or payload) and the jib (or base) of the crane, respectively. With a combination of a three-axis accelerometer, a three-axis gyroscope and a three-axis magnetometer, the standard extended Kalman filter (EKF) is used to estimate the desired orientation of the payload and the base. Wireless ZigBee communication is employed to transmit the orientation of the payload to the sensing unit mounted on the base, which measures the orientation of the base. Because several physical parameters from the payload to the base can be acquired from the original crane control system, the swing angles of the payload can be calculated based on the two measured orientation parameters together with the known physical parameters. Experiments were performed to show the feasibility and effectiveness of the proposed swing angle measurement system.
机译:可行的实时摆角测量对于提高工业起重机系统的效率和安全性具有重要意义。本文提出了一种基于无线微机电系统(MEMS)的摆角测量系统。该系统由两个具有无线通信功能的姿态航向参考系统(AHRS)感应单元组成,分别安装在起重机的吊钩(或有效载荷)和副臂(或基座)上。结合使用三轴加速度计,三轴陀螺仪和三轴磁力计,标准扩展卡尔曼滤波器(EKF)用于估算有效载荷和基座的所需方向。无线ZigBee通信用于将有效载荷的方向传输到安装在底座上的传感单元,该传感单元测量底座的方向。因为可以从原始起重机控制系统获取从有效载荷到基座的几个物理参数,所以可以基于两个测得的定向参数以及已知的物理参数来计算有效载荷的摆角。实验表明了所提出的摆角测量系统的可行性和有效性。

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