Title :
Performance Evaluation of 3D-LOCUS Advanced Acoustic LPS
Author :
Prieto, José Carlos ; Jiménez, Antonio Ramón ; Guevara, Jorge ; Ealo, Joao L. ; Seco, Fernando ; Roa, Javier O. ; Ramos, Francisco
Author_Institution :
Consejo Super. de Investig. Cientificas (CSIC), Inst. de Autom. Ind., Madrid, Spain
Abstract :
Local positioning systems (LPSs) based on acoustic transducers (mainly ultrasonic) offer accurate localization in indoor environments. However, their performance is commonly limited by the transducers´ frequency bandwidth and emission pattern. 3D-LOCUS is a new advanced acoustic LPS that claims subcentimeter accuracy even in turbulent environments. This is achieved through the use of broadband omnidirectional transducers, suitable design of emitted signals, proper calibration, and bidirectional emissions. This paper evaluates the 3D-LOCUS LPS by providing results in terms of some positioning metrics such as accuracy, resolution, and coverage, which show how it outperforms other state-of-the-art LPS prototypes. 3D-LOCUS operating in bidirectional mode minimizes environmental effects, such as temperature and airflows, attaining localization errors below 9 mm with a 90% confidence level, an RMS error below 7.4 mm, and 5 mm resolution in a localization volume of 2 times 2 times 0.4 m3.
Keywords :
acoustic applications; acoustic transducers; calibration; navigation; 3D-LOCUS; RMS error; accuracy; acoustic location system; acoustic transducers; advanced acoustic LPS; airflows; bidirectional emissions; broadband omnidirectional transducers; calibration; coverage; emitted signals; environmental effects; indoor environments; local positioning systems; localization errors; localization volume; positioning metrics; resolution; temperature; turbulent environments; Accurate localization; Local Positioning Systems (LPSs); broadband transducers; system evaluation; ubiquitous computing;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2009.2016378