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Constrained Total Least Squares Algorithm Applied to Three-axis Magnetometer Calibration

机译:约束总量最小二乘算法应用于三轴磁力计校准

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Strapdown three-axis magnetometer is becoming increasingly used in navigation systems and in biomedical applications. A calibration must be performed before the magnetometer can be used, because its outputs are often corrupted by various magnetic field sources. This paper presents a new calibration algorithm based on constrained total least squares (CTLS) to determine different calibration parameters such as sensor non-orthogonality, scale factors, offsets, hard iron and soft iron errors. The basic idea is to convert the calibration problem into an unconstrained nonlinear optimization problem. An iterative technique based on Newton's method is applied to give a numerical solution. Simulation results show that the proposed CTLS algorithm gives more accurate solutions than compared algorithms.
机译:挂轴三轴磁力计越来越多地用于导航系统和生物医学应用。必须在使用磁力计之前进行校准,因为其输出通常由各种磁场源损坏。本文介绍了一种基于约束总量(CTL)的新校准算法,以确定不同的校准参数,例如传感器非正交性,缩放因子,偏移,硬铁和软铁误差。基本思想是将校准问题转换为无约束的非线性优化问题。应用基于牛顿方法的迭代技术来提供数字解决方案。仿真结果表明,所提出的CTLS算法提供比比较算法更准确的解决方案。

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