Title :
Simulation & performance study of wireless sensor network (WSN) using MATLAB
Author :
Ali, Qutaiba Ibrahem ; Abdulmaowjod, Akram ; Mohammed, Hussein Mahmood
Author_Institution :
Comput. Eng. Dept., Mosul Univ., Mosul, Iraq
fDate :
Nov. 30 2010-Dec. 2 2010
Abstract :
A wireless sensor network consists of spatially distributed autonomous sensors to cooperatively monitor physical or environmental conditions, such as temperature, sound, vibration, pressure, motion or pollutants. Different approaches have used for simulation and modeling of SN (Sensor Network) and WSN. Traditional approaches consist of various simulation tools based on different languages such as C, C++ and Java. In this paper, MATLAB (7.6) Simulink was used to build a complete WSN system. Simulation procedure includes building the hardware architecture of the transmitting nodes, modeling both the communication channel and the receiving master node architecture. Bluetooth was chosen to undertake the physical layer communication with respect to different channel parameters (i.e., Signal to Noise ratio, Attenuation and Interference). The simulation model was examined using different topologies under various conditions and numerous results were collected. This new simulation methodology proves the ability of the Simulink MATLAB to be a useful and flexible approach to study the effect of different physical layer parameters on the performance of wireless sensor networks.
Keywords :
Bluetooth; C++ language; Java; mathematics computing; telecommunication computing; wireless sensor networks; Bluetooth; C++; Java; MATLAB; WSN; communication channel; hardware architecture; physical layer communication; transmitting nodes; wireless sensor network; Bluetooth; Intelligent sensors; MATLAB; Mathematical model; Temperature sensors; Wireless sensor networks; Bluetooth; Interference; MATLAB Simulation; Signal to Noise Ratio; Wireless sensor networks;
Conference_Titel :
Energy, Power and Control (EPC-IQ), 2010 1st International Conference on
Conference_Location :
Basrah
Electronic_ISBN :
978-0-9568330-0-6