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Signal propagation model calibration under metal noise factor for indoor localization by using RFID

机译:利用RFID在室内金属噪声因子下的信号传播模型校准

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Radio frequency identification (RFID) technologies as an effective indoor localization solution are acquiring increasing attention for its low cost and compactness and it plays a significant role in industrial engineering. However, the location accuracy strongly relies on environment factor that will affect the signal propagation property (using by position system). To alleviate limitation imposed by this reason unlike others, this paper proposes a new calibrated Received Signal Strength Indication (RSSI) propagation curve for high accuracy under metal noise factor. Therefore this curve is obtained by taking the metallic effect characteristic into consideration. The proposed results are obtained from practical experiments by RF Code M250 and R150 tags. Aimed at incorporating these features into localization algorithm appropriately and then the accuracy of RFDD-based positioning system under metal noise factor can be improved substantially.
机译:作为一种有效的室内定位解决方案的射频识别(RFID)技术因其低成本和紧凑性而受到越来越多的关注,并且在工业工程中起着重要的作用。但是,定位精度在很大程度上取决于环境因素,而环境因素会影响信号的传播特性(由定位系统使用)。为了减轻与其他原因不同的原因造成的限制,本文提出了一种新的经校准的接收信号强度指示(RSSI)传播曲线,以在金属噪声因子下实现高精度。因此,该曲线是通过考虑金属效应特性而获得的。建议的结果是通过RF Code M250和R150标签从实际实验中获得的。旨在将这些特征适当地结合到定位算法中,从而可以大幅度提高在金属噪声因素下基于RFDD的定位系统的精度。

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