DocumentCode :
270594
Title :
Software platform for wireless indoor localization planning based on the strength of received radio signal
Author :
Vitas, Igor ; Lukovac, Bojan ; Šimunić, Dina
Author_Institution :
Fac. of Electr. Eng. & Comput, Univ. of Zagreb, Zagreb, Croatia
fYear :
2014
fDate :
26-30 May 2014
Firstpage :
495
Lastpage :
500
Abstract :
Radiofrequency positioning problem within indoor space becomes significant with respect to the specific area for which the radiolocation is required. The area of interest may be an apartment, shop or storage area of any shape and size. The specificity of the space defines various requirements on the radiolocation system and the need for software that would facilitate the planning of such a system is obvious. Using well-known empirical and deterministic models for propagation of electromagnetic waves in enclosed spaces and precise analysis of specific closed areas, localization based on the RSS (Received Signal Strength) method should give good positioning results in any enclosed space. Software solution that was developed in this work allows you to determine the optimal position of the receiver on the walls of any space that is selected as an area in which implementation of a system of RSS indoor localization is required. The optimal position of the receiver provides precise and reliable localization within the indoor enclosure. The software can be used to optimize the indoor localization of people or objects, with the requirement that special radio frequency tags or radio frequency transmitters are mounted on them. The software supports the ability to import an arbitrary layout of indoor space over which optimization will be carried out from AutoCAD or a CAD tool.
Keywords :
CAD; indoor radio; radio direction-finding; radio receivers; radio transmitters; radiowave propagation; AutoCAD; CAD tool; RSS indoor localization; electromagnetic wave propagation; radio frequency tags; radio frequency transmitters; radio signal; radiofrequency positioning problem; radiolocation system; received signal strength method; receiver; wireless indoor localization planning; Equations; Mathematical model; Mobile nodes; Radio transmitters; Software; Wireless communication; radiofrequency indoor positioning; received radio signal strength; software tool;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information and Communication Technology, Electronics and Microelectronics (MIPRO), 2014 37th International Convention on
Conference_Location :
Opatija
Print_ISBN :
978-953-233-081-6
Type :
conf
DOI :
10.1109/MIPRO.2014.6859618
Filename :
6859618
Link To Document :
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