Title :
Temperature-aware methodology for time synchronisation protocols in wireless sensor networks
Author :
Castillo-Secilla, J.M. ; Palomares, J.M. ; Olivares, J.
Author_Institution :
Dept. of Comput. Archit., Electron. & Electron. Technol., Univ. of Cordoba, Cordoba, Spain
Abstract :
To exploit distributed computation in wireless sensor networks (WSNs) time synchronisation protocols are required. These protocols support advanced distributed and synchronous tasks between several nodes. Temperature changes have a strong influence in oscillators and may vary the clock of the nodes. The flooding time synchronisation protocol (FTSP) is a common time-sync protocol in WSNs. It cannot deal with rapid temperature changes and needs several long periods to readjust the clock drift. Proposed is an innovative correction factor, implemented in a module called advanced adjustment temperature (A2T), that minimises the impact of temperature in the clock skew. This module may be placed on top of any clock-skew based time synchronisation protocol with minimum coding modifications. For this work, the module has been linked to the FTSP, producing A2T-FTSP. Experiments show that A2T-FTSP reduces noticeably the average synchronisation errors compared to FTSP for the same varying temperature conditions.
Keywords :
clocks; protocols; synchronisation; wireless sensor networks; A2T-FTSP; WSN; advanced adjustment temperature; clock drift; clock-skew based time synchronisation protocol; common time-sync protocol; distributed computation; distributed task; flooding time synchronisation protocol; innovative correction factor; minimum coding modification; oscillator; synchronous task; temperature change; temperature condition; temperature-aware methodology; wireless sensor network;
Journal_Title :
Electronics Letters
DOI :
10.1049/el.2012.3911