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Development of a Low-Cost Attitude and Heading Reference System Using a Three-Axis Rotating Platform

机译:利用三轴旋转平台开发低成本的航向参考系统

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摘要

A development procedure for a low-cost attitude and heading reference system (AHRS) with a self-developed three-axis rotating platform has been proposed. The AHRS consists of one 3-axis accelerometer, three single-axis gyroscopes, and one 3-axis digital compass. Both the accelerometer and gyroscope triads are based on micro electro-mechanical system (MEMS) technology, and the digital compass is based on anisotropic-magnetoresistive (AMR) technology. The calibrations for each sensor triad are readily accomplished by using the scalar calibration and the least squares methods. The platform is suitable for the calibration and validation of the low-cost AHRS and it is affordable for most laboratories. With the calibrated parameters and data fusion algorithm for the orientation estimation, the self-developed AHRS demonstrates the capabilities of compensating for the sensor errors and outputting the estimated orientation in real-time. The validation results show that the estimated orientations of the developed AHRS are within the acceptable region. This verifies the practicability of the proposed development procedure.
机译:提出了一种具有自主研发的三轴旋转平台的低成本姿态航向参考系统(AHRS)的开发程序。 AHRS包括一个3轴加速计,三个单轴陀螺仪和一个3轴数字罗盘。加速度计和陀螺仪三重轴均基于微机电系统(MEMS)技术,而数字罗盘则基于各向异性磁阻(AMR)技术。通过使用标量校准和最小二乘法,可以轻松完成每个传感器三元组的校准。该平台适用于低成本AHRS的校准和验证,对于大多数实验室而言,该平台价格可承受。借助校准的参数和用于方向估计的数据融合算法,自行开发的AHRS展示了补偿传感器误差并实时输出估计的方向的能力。验证结果表明,已开发的AHRS的估计方向在可接受的范围内。这验证了提议的开发过程的实用性。

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