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AOA-Based Three-Dimensional Multi-Target Localization in Industrial WSNs for LOS Conditions

机译:基于AOA的Industrial WSN的三维多目标定位,用于LOS条件

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摘要

High-precision and fast relative positioning of a large number of mobile sensor nodes (MSNs) is crucial for smart industrial wireless sensor networks (SIWSNs). However, positioning multiple targets simultaneously in three-dimensional (3D) space has been less explored. In this paper, we propose a new approach, called Angle-of-Arrival (AOA) based Three-dimensional Multi-target Localization (ATML). The approach utilizes two anchor nodes (ANs) with antenna arrays to receive the spread spectrum signals broadcast by MSNs. We design a multi-target single-input-multiple-output (MT-SIMO) signal transmission scheme and a simple iterative maximum likelihood estimator (MLE) to estimate the 2D AOAs of multiple MSNs simultaneously. We further adopt the skew line theorem of 3D geometry to mitigate the AOA estimation errors in determining locations. We have conducted extensive simulations and also developed a testbed of the proposed ATML. The numerical and field experiment results have verified that the proposed ATML can locate multiple MSNs simultaneously with high accuracy and efficiency by exploiting the spread spectrum gain and antenna array gain. The ATML scheme does not require extra hardware or synchronization among nodes, and has good capability in mitigating interference and multipath effect in complicated industrial environments.
机译:大量移动传感器节点(MSNS)的高精度和快速定位对智能工业无线传感器网络(SIWSN)至关重要。然而,在三维(3D)空间中同时定位多个目标已经不太探索。在本文中,我们提出了一种新的方法,称为到达角(AOA)的三维多目标定位(ATML)。该方法利用具有天线阵列的两个锚点(ANS)来接收由MSN广播广播的扩频信号。我们设计了多目标单输入多输出(MT-SIMO)信号传输方案和简单的迭代最大似然估计器(MLE),以同时估计多个MSN的2D AOA。我们进一步采用了3D几何的偏斜线定理来减轻确定位置时的AOA估计误差。我们已经进行了广泛的模拟,并开发了建议的ATML的测试平台。数值和现场实验结果证明,通过利用扩频增益和天线阵列增益,所提出的ATML可以以高精度和效率同时定位多个MSN。 ATML方案不需要节点之间的额外硬件或同步,并且在复杂的工业环境中缓解干扰和多径效果具有良好的能力。

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