DocumentCode
1718029
Title
M2M distance estimation in indoor wireless network
Author
Joonyoung Jung ; Changseok Bae
Author_Institution
Personal Comput. Platform Res. Team, Electron. & Telecommun. Res. Inst., Daejeon, South Korea
fYear
2013
Firstpage
287
Lastpage
290
Abstract
Distance estimation identifies the distance between two machines (M2M: Machine to Machine) in wireless network. Such estimates are an important component of localization systems, because they are used by the position computation and localization algorithm components. Different methods, such as received signal strength indication (RSSI), time of arrival (ToA), and time difference of arrival (TDoA), can be used to estimate a M2M distance. Nowadays, a lot of systems have tried to estimate M2M distance using different models in wireless networks. For example, the Active Badge System used an infrared signal. Cricket, developed at MIT, uses TDoA method. Global Positioning System (GPS) uses ToA. RADAR, developed at Microsoft, uses RSSI to estimate M2M distance. It is primarily based on an 802.11 Wireless LAN. SpotON is a RSSI based ad-hoc localization system. We describe and analyze some of the major approaches and systems for M2M distance estimation in indoor wireless network.
Keywords
Global Positioning System; ad hoc networks; direction-of-arrival estimation; indoor radio; time-of-arrival estimation; wireless LAN; Cricket; GPS; Global Positioning System; IEEE 802.11 wireless LAN; M2M distance estimation; RSSI based ad-hoc localization system; SpotON; TDoA estimation; active badge system; indoor wireless network; infrared signal; localization algorithm components; localization systems; machine to machine distance estimation; position computation components; radar; received signal strength indication; time difference of arrival estimation; Cloud computing; Estimation; Local area networks; Radar tracking; Ultrasonic imaging; Wireless sensor networks; Distance estimation; Machine to Machine; received signal strength indication; time difference of arrival; time of arrival; wireless network;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Communication Technology (ICACT), 2013 15th International Conference on
Conference_Location
PyeongChang
ISSN
1738-9445
Print_ISBN
978-1-4673-3148-7
Type
conf
Filename
6488190
Link To Document