Proposal of generalized vernier effect and its practical advantage for RF time-of-flight ranging between sensor nodes in wireless sensor networks
Accurate ranging technique is indispensable for node localization in wireless sensor networks (WSNs), and there are various ranging techniques/systems using physical characteristics of RF signals. The RF time-of-flight (ToF) ranging technique in a short distance is still difficult to implement since...
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Published in | Sensors and actuators. A. Physical. Vol. 167; no. 2; pp. 537 - 547 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.06.2011
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Abstract | Accurate ranging technique is indispensable for node localization in wireless sensor networks (WSNs), and there are various ranging techniques/systems using physical characteristics of RF signals. The RF time-of-flight (ToF) ranging technique in a short distance is still difficult to implement since both a high precision clock system and complex signal processing are required to exactly measure RF ToF. This paper presents an improvement of time resolution based on the generalized vernier effect (GVE) by which it is possible to accurately measure short-range RF ToF using low operating clocks of several megahertz. The GVE-based RF ToF measurement methodology is certified through experiments to measure a singular sensing pattern with respect to RF round-trip time using a prototype of the synch-free RF ToF measurement system, which is a practical RF ToF ranging system for application to the localization of WSNs. |
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AbstractList | Accurate ranging technique is indispensable for node localization in wireless sensor networks (WSNs), and there are various ranging techniques/systems using physical characteristics of RF signals. The RF time-of-flight (ToF) ranging technique in a short distance is still difficult to implement since both a high precision clock system and complex signal processing are required to exactly measure RF ToF. This paper presents an improvement of time resolution based on the generalized vernier effect (GVE) by which it is possible to accurately measure short-range RF ToF using low operating clocks of several megahertz. The GVE-based RF ToF measurement methodology is certified through experiments to measure a singular sensing pattern with respect to RF round-trip time using a prototype of the synch-free RF ToF measurement system, which is a practical RF ToF ranging system for application to the localization of WSNs. |
Author | Ohyama, Shinji Takayama, Jun-ya Ko, Sang-il |
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Cites_doi | 10.1109/25.554753 10.1023/B:INET.0000038388.84416.36 10.1155/2010/254345 10.1109/TSP.2002.800420 10.1109/TWC.2006.256985 10.1093/ietcom/e89-b.10.2687 10.1109/TSMCC.2007.905750 10.1109/TNS.1973.4327349 10.1016/j.eswa.2010.02.111 |
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Keywords | RF time-of-flight (ToF) RF round-trip time Conventional vernier effect (CVE) Heterogeneous clocks Generalized vernier effect (GVE) Wireless sensor networks (WSNs) |
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References | Ko, Takayama, Ohyama (bib0075) 2009 Ko, Aikawa, Takayama, Ohyama (bib0080) 2010 Chen, Hudson, Yao (bib0050) 2002; 50 Elnahrawy, Xiaoyan Li, Martin (bib0020) 2004 Bahl, Padmanabhan (bib0005) 2000 Alvarez, de Cos, Lorenzo, Las-Heras (bib0010) 2010; 2010 Lanzisera, Lin, Pister (bib0045) 2006 Liu, Darabi, Banerjee, Liu (bib0040) 2007; 37 Gurin, Dyatlov, Konnov, Popov, Sevastyanov (bib0065) 2004; 47 . Valenzuela, Landron, Jacobs (bib0025) 1997; 46 Ko, Takayama, Ohyama (bib0070) 2008 Mengual, Marban, Eibe (bib0015) 2010; 37 Li (bib0030) 2006; 5 Dardari, Conti, Lien, Win (bib0055) 2008; 2008 Takizawa, Davis, Kawai, Iwai, Yamaguchi, Obana (bib0035) 2006; E89-B Porat (bib0060) 1973; 20 Valenzuela (10.1016/j.sna.2011.02.032_bib0025) 1997; 46 Ko (10.1016/j.sna.2011.02.032_bib0080) 2010 Liu (10.1016/j.sna.2011.02.032_bib0040) 2007; 37 Gurin (10.1016/j.sna.2011.02.032_bib0065) 2004; 47 Dardari (10.1016/j.sna.2011.02.032_bib0055) 2008; 2008 Porat (10.1016/j.sna.2011.02.032_bib0060) 1973; 20 10.1016/j.sna.2011.02.032_bib0090 Mengual (10.1016/j.sna.2011.02.032_bib0015) 2010; 37 Bahl (10.1016/j.sna.2011.02.032_bib0005) 2000 Li (10.1016/j.sna.2011.02.032_bib0030) 2006; 5 Lanzisera (10.1016/j.sna.2011.02.032_bib0045) 2006 10.1016/j.sna.2011.02.032_bib0085 Alvarez (10.1016/j.sna.2011.02.032_bib0010) 2010; 2010 Ko (10.1016/j.sna.2011.02.032_bib0075) 2009 Ko (10.1016/j.sna.2011.02.032_bib0070) 2008 Elnahrawy (10.1016/j.sna.2011.02.032_bib0020) 2004 Takizawa (10.1016/j.sna.2011.02.032_bib0035) 2006; E89-B Chen (10.1016/j.sna.2011.02.032_bib0050) 2002; 50 |
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SubjectTerms | Actuators Clocks Conventional vernier effect (CVE) Generalized vernier effect (GVE) Heterogeneous clocks Localization Networks Position (location) Proposals Radio frequencies RF round-trip time RF time-of-flight (ToF) Sensors Wireless sensor networks (WSNs) |
Title | Proposal of generalized vernier effect and its practical advantage for RF time-of-flight ranging between sensor nodes in wireless sensor networks |
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