Title :
Using Data Compression for Delay Constrained Applications in Wireless Sensor Networks
Author :
Capo-Chichi, M. Eugène Pamba ; Friedt, Jean-Michel ; GUyennet, Hervé
Author_Institution :
Lab. of Comput. Sci., Univ. of Franche-Comte, Besanςon, France
Abstract :
Data compression is a technique used to save energy in Wireless Sensor Networks by reducing the quantity of data transmitted and the number of transmission. Actually, the main cause of energy consumption in WSN is data transmission. There exist critical applications such as delay constrained activities in which the data have to arrive quickly to the Sink for rapid analysis. In this article, we explore the use of data compression algorithms for delay constrained applications by evaluating a recent data compression algorithm for WSN named K-RLE with optimal parameters on an ultra-low power microcontroller from TI MSP430 series. The relevance of the parameter K for the lossy algorithm K-RLE led us to propose and compare two methods to characterize K: the Standard deviation and the Allan deviation. The last one allow us to control the percentage of data modified. Experimental results show that data compression is an energy efficient technique which can also perform in certain cases the global data transfer time (compression plus transmission time) compared to direct transmission.
Keywords :
data compression; microcontrollers; wireless sensor networks; Allan deviation; K-RLE; TI MSP430 series; data compression algorithms; data transmission; delay constrained applications; energy consumption; energy efficient technique; global data transfer time; standard deviation; ultra-low power microcontroller; wireless sensor networks; Data compression; Delay; Dictionaries; Energy consumption; Random access memory; Temperature distribution; Wireless sensor networks; data compression; delay constrained application; energy saving; wireless sensor network;
Conference_Titel :
Sensor Technologies and Applications (SENSORCOMM), 2010 Fourth International Conference on
Conference_Location :
Venice
Print_ISBN :
978-1-4244-7538-4
DOI :
10.1109/SENSORCOMM.2010.23