Systems Engineering and Electronics
Previous Articles Next Articles
LIU Xing-chuan, WU Zhen-feng, ZHAO Ke-jian
Online:
Published:
Abstract:
Heterogeneous wireless sensor networks (HWSN) is a more practical network model because of an improved network performance such as a shorter datagathering delay and lower network energy consumption. The k-faulttolerant topology control is a kind of NP-hard problem in the HWSN. The paper designs an approach of constructing network reduced graphs based on comprehensive analysis on the network model of HWSN. And the k-faulttolerant distributed topology control (k-FTDTC) algorithm is proposed based on the ordered reachable neighborhood which is used to restrict the maximum transmission power of the nodes, with the objective of minimizing the total power consumption and preserving k-vertex faulttolerant property. The experimental results indicate that the k-FTDTC algorithm not only reduces the computational complexity and improves network robustness, but also reduces the total network power consumption and the maximum node power consumption, as compared with the distributed adaptive topology control (DATC) algorithm.
LIU Xing-chuan, WU Zhen-feng, ZHAO Ke-jian. Algorithm for faulttolerant topology control in heterogeneous and multi-hop wireless sensor networks[J]. Systems Engineering and Electronics, doi: 10.3969/j.issn.1001-506X.2015.08.28.
0 / / Recommend
Add to citation manager EndNote|Reference Manager|ProCite|BibTeX|RefWorks
URL: https://www.sys-ele.com/EN/10.3969/j.issn.1001-506X.2015.08.28
https://www.sys-ele.com/EN/Y2015/V37/I8/1902