DocumentCode
85943
Title
Timestamping and Ranging Performance for IEEE 802.15.4 CSS Systems
Author
Ferrari, P. ; Flammini, A. ; Sisinni, Emiliano ; Depari, A. ; Rizzi, Maurizio ; Exel, Reinhard ; Sauter, T.
Author_Institution
Dept. of Inf. Eng., Univ. of Brescia, Brescia, Italy
Volume
63
Issue
5
fYear
2014
fDate
May-14
Firstpage
1244
Lastpage
1252
Abstract
This paper deals with the characterization of IEEE 802.15.4 using the chirp spread spectrum (CSS) physical layer. A new test bench, which has full bandwidth capability and extreme flexibility because of the field programmable gate array-based probes, is used for managing reproducible measurement results. Several scenarios and algorithms have been considered for the estimation of the IEEE 802.15.4 CSS performance in real indoor environments. The absolute timestamping errors have been evaluated using the distributed synchronization feature (synchronous Ethernet) of the test bench probes. The ranging performance has been evaluated using both two-way ranging (TWR) and symmetrical double-sided TWR approaches. The characterization results in indoor situations show that the tested implementation of IEEE 802.15.4 CSS achieves mean timestamping errors of 200 ps, and a ranging root mean square error down to 0.5 m. Moreover, the CSS modulation highlights a good robustness against interference.
Keywords
Zigbee; field programmable gate arrays; mean square error methods; spread spectrum communication; CSS modulation; FPGA; IEEE 802.15.4 systems; absolute timestamping errors; bandwidth capability; chirp spread spectrum physical layer; distributed synchronization feature; field programmable gate array-based probes; mean timestamping errors; real indoor environments; root mean square error; symmetrical double-sided TWR approaches; synchronous Ethernet; test bench probes; time 200 ps; two-way ranging; Cascading style sheets; Chirp; Distance measurement; IEEE 802.15 Standards; Receivers; Synchronization; Chirp modulation; IEEE 802.15.4; clock synchronization; time of flight measurements; timestamping;
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/TIM.2013.2286958
Filename
6657804
Link To Document