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Body attenuation and path loss exponent estimation for RSS-based positioning in WSN

机译:WSN中基于RSS的定位的身体衰减和路径损耗指数估计

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摘要

The influence of the human body in antenna systems has significant impact in the received signal strength (RSS) of wireless transmissions. Accounting for body effect is generally considered as being able to improve position estimation based on RSS measurements. In this work we perform several experiments with a wireless sensor network, using a sensor node equipped with an inertial measurement unit (IMU), in order to obtain the relative orientation between the sensor node and multiple anchor nodes. A model of the RSS attenuation induced by the body was created using experimental measurements in a controlled environment and applied to a real-time positioning system. A path loss exponent (PLE) estimation method using RSS information from neighbor anchors was also implemented and evaluated. Weighted centroid localization (WCL) algorithm was the positioning method used in this work. When the sensor node was placed on the user’s body, accounting for body effect produced negligible improvements (6%) in the best-case scenario and consistently degraded accuracy under real conditions, whether the node was placed on the user’s body (in the order of 3%), 10 cm away (from 14% to 35%) or 20 cm away from the body (from 42% to 105%) for results in the 70th percentile. The PLE estimation method showed improvements (in the order of 11%) when the sensor node is further away from the body. Results demonstrate that the distance between sensor node and the body has an extremely important influence on the accuracy of the position estimate.
机译:人体在天线系统中的影响对无线传输的接收信号强度(RSS)具有重大影响。考虑身体效应通常被认为能够改善基于RSS测量的位置估计。在这项工作中,我们使用配备有惯性测量单元(IMU)的传感器节点对无线传感器网络进行了几次实验,以便获得传感器节点与多个锚点之间的相对方向。通过在受控环境中进行实验测量来创建由人体引起的RSS衰减的模型,并将其应用于实时定位系统。还实现并评估了使用来自相邻锚点的RSS信息的路径损耗指数(PLE)估计方法。加权质心定位(WCL)算法是这项工作中使用的定位方法。当传感器节点放置在用户的身体上时,考虑到身体效果,在最佳情况下,可以忽略不计(6%),并且在实际情况下,无论是否将节点放置在用户的身体上,精度始终会降低(按顺序排列)。 3%),10厘米(从14%到35%)或20厘米(从42%到105%)的距离,以得出第70个百分点。当传感器节点离身体较远时,PLE估计方法显示出了改进(大约11%)。结果表明,传感器节点与身体之间的距离对位置估计的准确性有非常重要的影响。

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