RAILS: 3-D Real-Time Angle of Arrival Ultrasonic Indoor Localization System

被引:0
|
作者
Gabbrielli, Andrea [1 ]
Bordoy, Joan [2 ]
Xiong, Wenxin [2 ]
Fischer, Georg K. J. [3 ]
Schaechtle, Thomas [1 ]
Wendeberg, Johannes [2 ]
Hoeflinger, Fabian [1 ]
Schindelhauer, Christian [2 ]
Rupitsch, Stefan J. [1 ]
机构
[1] Univ Freiburg, Dept Microsyst Engn, D-79110 Freiburg, Germany
[2] Univ Freiburg, Dept Comp Sci, D-79110 Freiburg, Germany
[3] Fraunhofer Inst High Speed Dynam, D-79104 Freiburg, Germany
关键词
Location awareness; Acoustics; Receivers; Signal processing algorithms; Ultrasonic variables measurement; Wireless fidelity; Chirp; Angle of arrival (AoA); sensor networks; signal processing; time delay estimation; ultrasonic indoor localization;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The demand for a replacement of global navigation satellite systems in indoor environments has led researchers to investigate the field of indoor localization. In this contribution, we propose RAILS, a 3-D real-time angle of arrival ultrasonic indoor localization system. The proposed system is capable of accurately and precisely locating a source in three-dimensions using angle of arrival (AoA) measurements. Our acoustic AoA technique relies on a constellation of spatially distributed arrays of microphones and on a source emitting inaudible ultrasonic chirp signals. Real-time features are enabled by introducing a localization chirp detector that constantly listens to the medium and triggers the localization algorithms only when signals of interest are approaching. The core of the 3-D localization method are the time delay estimates, aiming to compute the 3-D direction vectors. In order to overcome the challenges introduced by the acoustic indoor channel and to provide accuracy and robustness in the delay estimates, we have designed a time delay estimator. Furthermore, an ad hoc 3-D positioning algorithm based on 3-D vector intersection has been developed to furnish reliable 3-D source positions. The performance of our proposed ultrasonic indoor localization system has been evaluated through static single-source real-world experiments in a warehouse-like scenario, covering an area of 40 m(2) with a maximum source-receiver range of 10 m. The system achieved an outstanding average of 10 cm 3-D positioning accuracy, with an average standard deviation of 1 cm over all the measurements. Furthermore, dynamic single-source experiments have been carried out demonstrating that our system is capable not only of locating a source but also to track it.
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页数:15
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