arrow
Volume 3, Issue 1
Dynamical Behaviors of a new Chaotic System and its Adaptive Control

J. Info. Comput. Sci. , 3 (2008), pp. 39-48.

Export citation
  • Abstract
Watchdog is a kind of behavior monitoring mechanism which is the base of many trust systems in ad hoc and wireless sensor networks. Current watchdog mechanism only evaluates its next-hop’s behavior and propagates the evaluation result to other nodes by broadcasting, which is neither energy efficient nor attack resilient. An extended watchdog mechanism is proposed in this paper. Besides the next-hop, node with extended watchdog will monitor all its neighbors’ behavior on the base of information collected from MAC layer. By overhearing the CTS packets, subsequent RTS or data packets and intervals between them, a node can judge whether its neighbor forwards the packet or not despite the location of the neighbor. The misbehaved node is punished by restricting its injected packets. Analysis and simulations on NS2 prove the effectiveness of extended watchdog mechanism. Its low communication overhead (about 1.76%) and attack resilience resulted from its fully distributed nature make it a competent solution in constructing a secure wireless sensor network.
  • AMS Subject Headings

  • Copyright

COPYRIGHT: © Global Science Press

  • Email address
  • BibTex
  • RIS
  • TXT
@Article{JICS-3-39, author = {}, title = {Dynamical Behaviors of a new Chaotic System and its Adaptive Control}, journal = {Journal of Information and Computing Science}, year = {2024}, volume = {3}, number = {1}, pages = {39--48}, abstract = {Watchdog is a kind of behavior monitoring mechanism which is the base of many trust systems in ad hoc and wireless sensor networks. Current watchdog mechanism only evaluates its next-hop’s behavior and propagates the evaluation result to other nodes by broadcasting, which is neither energy efficient nor attack resilient. An extended watchdog mechanism is proposed in this paper. Besides the next-hop, node with extended watchdog will monitor all its neighbors’ behavior on the base of information collected from MAC layer. By overhearing the CTS packets, subsequent RTS or data packets and intervals between them, a node can judge whether its neighbor forwards the packet or not despite the location of the neighbor. The misbehaved node is punished by restricting its injected packets. Analysis and simulations on NS2 prove the effectiveness of extended watchdog mechanism. Its low communication overhead (about 1.76%) and attack resilience resulted from its fully distributed nature make it a competent solution in constructing a secure wireless sensor network. }, issn = {1746-7659}, doi = {https://doi.org/}, url = {http://global-sci.org/intro/article_detail/jics/22782.html} }
TY - JOUR T1 - Dynamical Behaviors of a new Chaotic System and its Adaptive Control AU - JO - Journal of Information and Computing Science VL - 1 SP - 39 EP - 48 PY - 2024 DA - 2024/01 SN - 3 DO - http://doi.org/ UR - https://global-sci.org/intro/article_detail/jics/22782.html KW - sensor network, watchdog, misbehavior detection. AB - Watchdog is a kind of behavior monitoring mechanism which is the base of many trust systems in ad hoc and wireless sensor networks. Current watchdog mechanism only evaluates its next-hop’s behavior and propagates the evaluation result to other nodes by broadcasting, which is neither energy efficient nor attack resilient. An extended watchdog mechanism is proposed in this paper. Besides the next-hop, node with extended watchdog will monitor all its neighbors’ behavior on the base of information collected from MAC layer. By overhearing the CTS packets, subsequent RTS or data packets and intervals between them, a node can judge whether its neighbor forwards the packet or not despite the location of the neighbor. The misbehaved node is punished by restricting its injected packets. Analysis and simulations on NS2 prove the effectiveness of extended watchdog mechanism. Its low communication overhead (about 1.76%) and attack resilience resulted from its fully distributed nature make it a competent solution in constructing a secure wireless sensor network.
. (2024). Dynamical Behaviors of a new Chaotic System and its Adaptive Control. Journal of Information and Computing Science. 3 (1). 39-48. doi:
Copy to clipboard
The citation has been copied to your clipboard