AbstractMulti-hop localization schemes are low cost, easy to implement and suitable for large-scale application. However, in practi'/> An anisotropic-tolerant and error control localization algorithm in wireless sensor network
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An anisotropic-tolerant and error control localization algorithm in wireless sensor network

机译:无线传感器网络中的各向异性耐受和误差控制定位算法

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AbstractMulti-hop localization schemes are low cost, easy to implement and suitable for large-scale application. However, in practical applications, the performances of multi-hop localizations are often affected by anisotropic networks, such as irregular deployment of nodes and uneven distribution of nodes. The anisotropic problem makes the application of multi-hop localization limited, so we propose a new multi-hop approach for anisotropic network. This scheme constructs the mapping relation between hop-counts and physical distance and this algorithm views the process of location estimation as a regression prediction. In addition, we employ the geometric precision factor (Geometric Dilution Precision) to select the anchors, and effectively avoid the problem of the error amplification of the geometric relations of the anchors. Theoretical analysis and simulation results show that our proposed method can adapt to different environments, and the method has the advantages of small overhead, high precision without setting complex parameters.]]>
机译:<![cdata [ <标题>抽象 ara>多跳定位方案是低成本,易于实现,适用于大规模应用。然而,在实际应用中,多跳本地化的性能通常受到各向异性网络的影响,例如不规则的节点部署和节点的不均匀分布。各向异性问题使得多跳定位有限公司的应用,因此我们为各向异性网络提出了一种新的多跳方法。该方案构造跳通和物理距离之间的映射关系,并且该算法将位置估计的过程视为回归预测。另外,我们采用几何精密因子(几何稀释精度)来选择锚点,并有效地避免锚的几何关系的误差放大的问题。理论分析和仿真结果表明,我们所提出的方法可以适应不同的环境,并且该方法具有小的开销,高精度的优点,无需设置复杂的参数。 ]]>

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