Wireless Networked Embedded System with Real Time Kernel

  IJRES-book-cover  International Journal of Recent Engineering Science (IJRES)         
  
© 2014 by IJRES Journal
Volume-1 Issue-6
Year of Publication : 2014
Authors : R.Jegadees, Dr.U.Yaluni
DOI : 10.14445/23497157/IJRES-V1I6P101

How to Cite?

R.Jegadees, Dr.U.Yaluni, "Wireless Networked Embedded System with Real Time Kernel," International Journal of Recent Engineering Science, vol. 1, no. 6, pp. 1-6, 2014. Crossref, https://doi.org/10.14445/23497157/IJRES-V1I6P101

Abstract
Emerging low power, embedded wireless sensor devices are useful for a wide range of applications, yet have very limited processing, storage and energy resources. As the range of application grows, the need arises to network several embedded systems to perform complex tasks. The use of small, cheap and customizable embedded sensors capable of wireless communication among each other provides the possibility to develop new versatile systems, with very high new functionalities. In this paper, we describe the development process of small low cost and powerful wireless embedded systems based on open source kernel and ZigBee protocol.

Keywords
WSN, ZigBee, RTOS, Kr51, EDF.

Reference
[1] Handa T., Ichimura, J., Nishi H., Roesener, C. (2007). KNIVES: Network based Demand and Supply Control System - Enhancement for Network and Environmental Affinity. Industrial Informatics, 5th IEEE International Conference on Volume 2, Issue 23-27, June 2007 Page(s):1171 – 1176.
[2] Cox, D., Jovanov, E., Milenkovic, A. (2005) Time Synchronization for ZigBee networks. In: IEEE System Theory Symposium. pp135-138
[3] Facchinetti, Tullio, Giorgio Buttazzo and Luis Almeida (2005). Dynamic reource reservation and connectivity tracking to support realtime communication among mobile units. In: EURASIP Journal on Wireless Communications and Networking.
[4] Hui Dai, Richard Han (2004). Tsync: a lightweight bidirectional time synchronization service for wireless sensor networks. In: Mobile Computing and Communications Review. pp. 125– 139.
[5] Li, Huan, Prashant J. Shenoy and Krithi Ramamritham (2004). Scheduling communication in real-time sensor applications. In: IEEE Real-Time and Embedded Technology and Applications Symposium. pp.10-18.
[6] Scholten, Hans, Pierre G. Jansen and Laurens Hop (2004). Routing in wireless multimedia home networks.. In: Proceedings of the IEEE International Conference on Multimedia and Expo on Volume 3, June 2004. pp. 1799-1802.
[7] Stankovic, John A., Tarek F. Abdelzaher, Chenyang Lu, Lui Sha and Jennifer C. Hou (2003). Real-time communication and coordination in embedded sensor networks. Proceedings of the IEEE 91(7), 1002–1022.
[8] Buttazzo, G. C. (1997). Hard real-time computing systems-predictable scheduling algorithms and applications. In: Kluwer Academic Publishers.
[9] http://ZigBeealliance.com