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An Efficient Key Agreement Framework to MANET
作者姓名:王顺满  陶然  王越
作者单位:Department of Electronic Engineering, Beijing Institute of Technology, Beijing 100081, China
基金项目:国家高技术研究发展计划(863计划) , 国家部委基金 , 教育部高等学校骨干教师资助计划
摘    要:Protocols for key management are compared and evaluated from the point of view on mobile ad hoe networks (MANET). The issues of fault-tolerance and efficiency of key distribution protocols for group communications in MANET are addressed. Most key distribution protocols existing today are primarily designed for wlre-line networks. These protocols either fail to work as intended or cannot work at all when they are applied to the demanding environment of MANET. Parameters and performance of different protocols are analyzed, and then a fiat is given out, on which new protocols or existing ones are designed and modified, so that they can be robust, scalable and efficient in MANET.

关 键 词:移动网络  MANET  网络节点  系统安全
文章编号:1673-002X(2006)01-0067-06
收稿时间:2005-08-02

An Efficient Key Agreement Framework to MANET
WANG Shun-man,TAO Ran,WANG Yue.An Efficient Key Agreement Framework to MANET[J].Journal of China Ordnance,2006,2(1):67-72.
Authors:WANG Shun-man  TAO Ran  WANG Yue
Abstract:Protocols for key management are compared and evaluated from the point of view on mobile ad hoc networks (MANET). The issues of fault-tolerance and efficiency of key distribution protocols for group communications in MANET are addressed. Most key distribution protocols existing today are primarily designed for wire-line networks. These protocols either fail to work as intended or cannot work at all when they are applied to the demanding environment of MANET. Parameters and performance of different protocols are analyzed, and then a flat is given out, on which new protocols or existing ones are designed and modified, so that they can be robust, scalable and efficient in MANET.
Keywords:mobile ad hoc networks  contributory and non-contributory  Diffie-Hellman  tree-based  key management  MANET  Framework  Key Agreement  scalable  efficient  robust  modified  flat  Parameters  performance  different  fail  environment  networks  issues  efficiency  key distribution protocols  group  communications  Protocols
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