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Distributed Angle Estimation by Multiple Frequencies Synthetic Array in Wireless Sensor Localization System

机译:无线传感器定位系统中多频率合成阵列的分布式角度估计

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In this paper, we address the problem of distributed angle estimation in wireless sensor localization system. Given that the practical limitations on size and cost, i.e., anchor node cannot equip a complicated antenna or antenna array, we devise an alternative measure based on a fixed-spacing two-antenna equipment. Through the multiple frequencies tuning, a virtual non-uniform linear array, called multiple frequencies synthetic array (MFSA), can be rebuilt independently at each sensor node. We first provide in theory the angle unambiguity conditions for such virtual array and then propose two different algorithms to achieve the distributed angle of departure (AOD) estimation. The first algorithm is based on the spectral searching technique, which is an improved version of the conventional rank reduction estimator (RARE) and has the same performance but less computational complexity. To further alleviate the computational burden at sensor node end, we convert the above angle estimation into a congruence problem and provide another closed-form solution based on Chinese remainder theorem (CRT). We also derive the Cramer-Rao bound for the MFSA and demonstrate theoretically that the latter algorithm from the perspective of cumulative circular distance is suboptimal when compared with the former one. Numerical examples are provided to show the validity of the proposed algorithms and the corresponding conclusions.
机译:在本文中,我们解决了无线传感器定位系统中分布角度估计的问题。鉴于大小和成本方面的实际限制,即锚节点无法配备复杂的天线或天线阵列,我们设计了一种基于固定间隔的两天线设备的替代措施。通过多频率调谐,可以在每个传感器节点上独立地重建虚拟的非均匀线性阵列,称为多频率合成阵列(MFSA)。我们首先在理论上为这种虚拟阵列提供角度明确性条件,然后提出两种不同的算法来实现分布式偏离角(AOD)估计。第一种算法基于频谱搜索技术,它是常规秩降估计器(RARE)的改进版本,具有相同的性能,但计算复杂度较低。为了进一步减轻传感器节点端的计算负担,我们将上述角度估计转换为一个全等问题,并提供了基于中文余数定理(CRT)的另一种封闭形式的解决方案。我们还推导了MFSA的Cramer-Rao界,并从理论上证明,从累积圆距离的角度来看,与前一种算法相比,后一种算法是次优的。数值算例表明了所提算法的有效性和相应的结论。

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