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Experimental study: a LQI-based ranging technique in ZigBee sensor networks

机译:实验研究:ZigBee传感器网络中基于LQI的测距技术

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摘要

Ranging technology which estimates the distance between two communicating wireless nodes has been widely used as a necessary component in localisation solutions for wireless sensor networks (WSN). Because of low system cost and less computational complexity, link quality indicator (LQI) based ranging techniques are increasingly applied in Zigbee sensor networks. However, due to the environmental affects and electronic noise generated by hardware, raw LQI data could not be directly aligned with distances. To eliminate errors in LQI data and obtain higher ranging accuracy, we design and evaluate a novel LQI-based ranging technique which includes three essential data processing components: pre-correction, error compensation and mixed regression analysis. The proposed ranging technique is implemented and evaluated on a Zigbee sensor prototype - Tarax. Experiment results show that the average ranging error is less than 1 m, confirming that the proposed technique is able to achieve higher ranging accuracy and suitable for localisation applications in WSN.
机译:估计两个通信无线节点之间距离的测距技术已广泛用作无线传感器网络(WSN)定位解决方案中的必要组件。由于低廉的系统成本和较少的计算复杂性,基于链路质量指示器(LQI)的测距技术越来越多地应用于Zigbee传感器网络中。但是,由于环境影响和硬件产生的电子噪声,原始LQI数据无法与距离直接对齐。为了消除LQI数据中的误差并获得更高的测距精度,我们设计和评估了一种基于LQI的新型测距技术,该技术包括三个基本的数据处理组件:预校正,误差补偿和混合回归分析。拟议的测距技术是在Zigbee传感器原型-Tarax上实施和评估的。实验结果表明,平均测距误差小于1 m,证实了该技术能够实现较高的测距精度,适用于无线传感器网络中的定位应用。

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