The 2.4 GHz Industrial, Science and Medical (ISM) band is a license free band allocated for a variety of consumer applications: environmental monitoring, agriculture, medical care, smart buildings, factory monitoring and automation, and numerous military applications. This project focuses on the Adaptive Interference Avoidance Scheme for IEEE 802.15.4 to allow coexistence with IEEE 802.11b/g in the 2.4GHz ISM band. A wireless sensor network (WSN) consists of small nodes with sensing, computation, and wireless communication capabilities. It is an exciting new technology and can also be considered as the underlying infrastructure that will be integral part of future ubiquitous and embedded computing applications. Due to the independent design and development in WSN, together with the unexpected dynamics during deployment of co-existing networks such as IEEE802.11b/g and devices within the same frequency spectrum, it is crucial to ensure that each wireless technology maintains and provides its desired performance requirement. Therefore, a method to determine and avoid the collision between IEEE 802.15.4 and IEEE 802.11b/g devices when co-exist within a certain environment needs to be carried out.
[1]
Wook Hyun Kwon,et al.
Packet Error Rate Analysis of IEEE 802.11b under IEEE 802.15.4 Interference
,
2006,
2006 IEEE 63rd Vehicular Technology Conference.
[2]
Nada Golmie,et al.
Performance analysis of low rate wireless technologies for medical applications
,
2005,
Comput. Commun..
[3]
Sofie Pollin,et al.
Harmful Coexistence Between 802.15.4 and 802.11: A Measurement-based Study
,
2008,
2008 3rd International Conference on Cognitive Radio Oriented Wireless Networks and Communications (CrownCom 2008).
[4]
Ivan Howitt,et al.
IEEE 802.15.4 low rate - wireless personal area network coexistence issues
,
2003,
2003 IEEE Wireless Communications and Networking, 2003. WCNC 2003..