1. College of Electrical and Information Engineering, Hunan University, Changsha 410082, China; 2. College of Physics and Electronic Science, Hunan University of Science and Technology, Xiangtan 411201, China
Clc Number:
TP393TH89
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Abstract:
The accuracy of RSSIbased ranging is severely affected by multipath effect and external radio interference in underground mine tunnel environments. To solve this problem, a novel RSSIbased ranging algorithm is proposed which overcomes the multipath effect by applying geometrical optics rules in analyzing RSSI measurements in both Lineof Sight and NonLineofSight scenario. The proposed algorithm can reconstruct a function for path loss and the physical distance which can help minimize the ranging error caused by multipath transport. Extensive real experiments are conducted in underground tunnel environments and the accuracy of the proposed ranging algorithm is analyzed. The impact of representative system parameters on the ranging, including multipath attenuation factor and path loss exponent, are discussed. Experiment and simulation results demonstrate that the proposed algorithm outperforms conventional RSSIbased ranging method without using any radio map information nor a calibration stage.