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首页> 外文期刊>Journal of Sensors >Simplified Attitude Determination Algorithm Using Accelerometer and Magnetometer with Extremely Low Execution Time
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Simplified Attitude Determination Algorithm Using Accelerometer and Magnetometer with Extremely Low Execution Time

机译:执行时间极短的使用加速度计和磁力计的简化姿态确定算法

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摘要

Accelerometer-magnetometer attitude determination is a common and vital medium processing technique in industrial robotics and consumer electronics. In this paper, we report a novel analytic attitude solution to the accelerometer-magnetometer combination in the sense of Wahba’s problem. The Davenport matrix is analytically given and its eigenvalues are computed. Through derivations, the eigenvalues are simplified to very short expressions. Then, the corresponding eigenvectors are given accordingly via matrix row operations. The system is highly optimized based on the factorization and simplification of the obtained row-echelon form, which makes it computationally fast in practice. In this way, it is named as the fast accelerometer-magnetometer combination (FAMC). Experiments on the correctness and advantages of the proposed solution are conducted. The results show that compared with conventional solutions, the proposed analytic solution is not only correct and accurate, but to our knowledge, the most time efficient as well.
机译:加速度计-磁力计的姿态确定是工业机器人技术和消费电子产品中常见且至关重要的介质处理技术。在本文中,我们报告了Wahba问题意义上的加速度计与磁力计组合的一种新颖的解析姿态解决方案。通过解析给出Davenport矩阵,并计算其特征值。通过推导,特征值简化为非常短的表达式。然后,通过矩阵行操作相应地给出相应的特征向量。基于获得的行梯形形式的因式分解和简化,对系统进行了高度优化,从而使其在实践中计算速度更快。这样,它被称为快速加速度计-磁力计组合(FAMC)。对提出的解决方案的正确性和优点进行了实验。结果表明,与传统解决方案相比,所提出的解析解决方案不仅正确,准确,而且据我们所知,也是最省时的。

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