DocumentCode :
1755596
Title :
Low Complexity UWB Radios for Precise Wireless Sensor Network Synchronization
Author :
Carbone, Paolo ; Cazzorla, A. ; Ferrari, P. ; Flammini, A. ; Moschitta, Antonio ; Rinaldi, Stefano ; Sauter, T. ; Sisinni, Emiliano
Author_Institution :
Dept. of Electron. & Inf. Eng., Univ. of Perugia, Perugia, Italy
Volume :
62
Issue :
9
fYear :
2013
fDate :
Sept. 2013
Firstpage :
2538
Lastpage :
2548
Abstract :
Wireless sensor networks are becoming widely diffused because of the flexibility and scalability they offer. However, distributed measurements are significant only if the readout is coupled to time information. For this reason, network-wide time synchronization is the main concern. The objective of this paper is to exploit a very simple hardware implementation of an IR-UWB radio for realizing an accurate synchronization system for wireless sensors. The proposed solution relies on commercial-off-the-shelf discrete electronic components (rather than on specialized transceivers). It is designed for providing accurate timestamping of the packet time of arrival (TOA) to an adder-based tunable clock, which tracks the network time reference. The comprehensive set of experimental results based on prototypes, shows a TOA detection error with a standard deviation well below 1 ns. On the other hand, in the FPGA-based prototype, the synchronization performance reaches an overall synchronization error of few nanoseconds. Finally, in order to highlight the tradeoff between timestamping accuracy, clock stability, and synchronization performance, some additional simulations have been carried out: a synchronization error in the order of 1 ns is possible, if good local oscillator sources are available in the nodes and if the adjustable clock has a sufficient resolution.
Keywords :
adders; clocks; field programmable gate arrays; synchronisation; time-of-arrival estimation; ultra wideband communication; wireless sensor networks; FPGA-based prototype; IR-UWB radio; TOA detection error; adder-based tunable clock; clock stability; commercial-off-the-shelf discrete electronic components; low complexity UWB radios; network time reference; network-wide time synchronization; packet time-of-arrival; precise wireless sensor network synchronization; synchronization error; timestamping accuracy; Distributed systems; UWB systems; synchronization; wireless sensor network (WSN);
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2013.2259101
Filename :
6524047
Link To Document :
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