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A Novel Algorithm for Optimal Placement of Multiple Inertial Sensors to Improve the Sensing Accuracy

机译:一种改进的惯性传感器优化放置算法,以提高传感精度

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This paper proposes a novel algorithm to determine the optimal orientation of sensing axes of redundant inertial sensors such as accelerometers and gyroscopes (gyros) for increasing the sensing accuracy. In this paper, we have proposed a novel iterative algorithm to find the optimal sensor configuration. The proposed algorithm utilizes the majorization-minimization (MM) algorithm and the duality principle to find the optimal configuration. Unlike the state-of-the-art approaches which are mainly geometrical in nature and restricted to sensors' noise being uncorrelated, the proposed algorithm gives the exact orientations of the sensors and can easily deal with the cases of correlated noise. The proposed algorithm has been implemented and tested via numerical simulation in the MATLAB. The simulation results show that the algorithm converges to the optimal configurations and shows the effectiveness of the proposed algorithm.
机译:本文提出了一种新的算法来确定冗余惯性传感器(如加速度计和陀螺仪(陀螺仪))的传感轴的最佳方向,以提高传感精度。在本文中,我们提出了一种新颖的迭代算法来找到最佳传感器配置。该算法利用主最小化算法和对偶原理来寻找最优配置。与本质上主要是几何的并且限制传感器的噪声不相关的最新方法不同,所提出的算法给出了传感器的精确方向,并且可以轻松处理相关噪声的情况。所提出的算法已经在MATLAB中通过数值模拟实现并进行了测试。仿真结果表明,该算法收敛于最优配置,并且证明了该算法的有效性。

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