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河北省自然科学基金(F2014203239)

作品数:4 被引量:6H指数:1
相关作者:刘彬韩丽赵磊静李雅倩刘浩然更多>>
相关机构:燕山大学更多>>
发文基金:河北省自然科学基金更多>>
相关领域:自动化与计算机技术电子电信机械工程更多>>

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Cascading failure in the wireless sensor scale-free networks被引量:1
2015年
In the practical wireless sensor networks(WSNs), the cascading failure caused by a failure node has serious impact on the network performance. In this paper, we deeply research the cascading failure of scale-free topology in WSNs. Firstly,a cascading failure model for scale-free topology in WSNs is studied. Through analyzing the influence of the node load on cascading failure, the critical load triggering large-scale cascading failure is obtained. Then based on the critical load,a control method for cascading failure is presented. In addition, the simulation experiments are performed to validate the effectiveness of the control method. The results show that the control method can effectively prevent cascading failure.
刘浩然董明如尹荣荣韩丽
关键词:无标度网络连锁故障级联故障临界载荷
基于圆环划分的能耗均衡WSNs拓扑控制研究被引量:1
2014年
针对无线传感器网络中节点与Sink节点距离不同导致的能耗不均衡问题,提出一种基于圆环划分的无标度拓扑构建方法(EHSR),将以Sink为中心的圆域划分成面积不等的圆环块状区域,建立块状区域的整体能耗模型,给出能耗与平均最短路径、数据量的关系式,解析出平均最短路径与幂律指数、平均边长的变化关系以及数据量与节点密度的变化关系,通过在不同圆环块内,构建幂律指数和节点密度不同的无标度拓扑来实现网络的能耗均衡,仿真结果表明,EHSR拓扑在保证容错的基础上实现能耗平衡,延长网络的生命周期。
韩丽刘彬刘浩然尹荣荣
关键词:无线传感器网络能耗均衡
能量异构的无线传感器网络加权无标度拓扑研究被引量:4
2014年
针对无线传感器网络节点能耗不均和如何高效获得节点和边的负载问题,提出一种局域范围内能量异构的加权无标度拓扑演化模型.通过对节点能量与负载、能耗的关系建模,建立节点能量与点权和边权的联系,进而结合点权和加权模型给出网络的演化方式,推出点权、度和边权的幂率分布规律,最终根据网络获得的点权和边权来分析负载和能耗.仿真结果表明,提出的模型不仅能够准确计算点边的负载,而且缓解了无标度网络的节点能耗不均衡问题.
韩丽刘彬李雅倩赵磊静
关键词:无线传感器网络加权能耗均衡
Fault-tolerant topology in the wireless sensor networks for energy depletion and random failure
2014年
Nodes in the wireless sensor networks(WSNs) are prone to failure due to energy depletion and poor environment,which could have a negative impact on the normal operation of the network. In order to solve this problem, in this paper, we build a fault-tolerant topology which can effectively tolerate energy depletion and random failure. Firstly, a comprehensive failure model about energy depletion and random failure is established. Then an improved evolution model is presented to generate a fault-tolerant topology, and the degree distribution of the topology can be adjusted. Finally, the relation between the degree distribution and the topological fault tolerance is analyzed, and the optimal value of evolution model parameter is obtained. Then the target fault-tolerant topology which can effectively tolerate energy depletion and random failure is obtained. The performances of the new fault tolerant topology are verified by simulation experiments. The results show that the new fault tolerant topology effectively prolongs the network lifetime and has strong fault tolerance.
刘彬董明如尹荣荣尹文晓
关键词:故障容错拓扑结构能源消耗能量消耗
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