精度稀释
非视线传播
公制(单位)
计算机科学
定位系统
均方误差
无线
室内定位系统
鉴定(生物学)
定位技术
实时计算
混合定位系统
模拟
加速度计
全球定位系统
工程类
电信
数学
统计
全球导航卫星系统应用
操作系统
生物
结构工程
节点(物理)
植物
运营管理
作者
Abbas Albaidhani,Ahlam Alsudani
出处
期刊:IET wireless sensor systems
日期:2020-12-15
卷期号:11 (1): 22-31
被引量:14
摘要
In wireless localization systems, the performance enhancement of location estimation is an important goal. In recent years, different positioning systems using an ultra-wide band (UWB) technology have been created, and always an evaluation metric to test such systems is needed for ensuring a suitable system for a specified application. Also, a non-line-of-sight (NLOS) identification and mitigation method is needed usually when utilizing the UWB technology. The mean-square-error (MSE) and geometric dilution of precision (GDOP) evaluation metrics are widely implemented as standard for choosing a perfect system. In a harsh environment, a novel algorithm of indoor positioning (IP) system is presented using the UWB technology without implementing any NLOS identification and mitigation technique and the localization accuracy is evaluated online. The UWB is used to communicate a mobile station (M) with n anchor nodes distributed randomly and clustered by utilizing a combination method to create different groups, and then a conventional linearized least square (LLS) method is utilized by each group for locating M. A weighted GDOP metric is implemented online to assess the positioning accuracy of each group. Then, the group having the lowest positioning error among other groups is selected to relocate M using a proposed LLS, named modified LLS, for the selected group to enhance the positioning accuracy. The created system outperforms different IP systems in the market for the last decade in terms of time, complexity, and accuracy. The created IP system has a positioning error around 25 cm2 of MSE in a hard environment, which is less than those of different IP systems created recently in the market.
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