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Automated secured cost effective key refreshing technique to enhance WiMAX privacy key management

机译:自动安全的经济高效的关键刷新技术,以增强WiMAX隐私重点管理

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In all walks of life the way of communication is transformed by the rapid growth of wireless communication and its pervasive use. A wireless network which is fixed and richer in bandwidth is specified as IEEE 802.16, promoted and launched by an industrial forum is termed as Worldwide Interoperability for Microwave Access (WiMAX). This technology enables seamless delivery of wireless broadband service for fixed and/or mobile users. The obscurity is the long delay which occurs during the handoff management in every network. Mobile WiMAX employs an authenticated key management protocol as a part of handoff management in which the Base Station (BS) controls the distribution of keying material to the Mobile Station (MS). The protocol employed is Privacy Key Management Version 2- Extensible Authentication Protocol (PKMV2-EAP) which is responsible for the normal and periodical authorization of MSs, reauthorization as well as key refreshing. Authorization key (AK) and Traffic Encryption key (TEK) plays a vital role in key exchange. When the lifetime of key expires, MS has to request for a new key to BS which in turn leads to repetition of authorization, authentication as well as key exchange. To avoid service interruption during reauthorization, two active keys are transmitted at the same time by BS to MS. The consequences of existing work are hefty amount of bandwidth utilization, time consumption and large storage. It is also endured by Man in the Middle attack and Impersonation due to lack of security in key exchange. This paper designs an automatic mutual refreshing of keys to minimize bandwidth utilization, key storage and time consumption by proposing Previous key and Iteration based Key Refreshing Function (PKIBKRF). By integrating PKIBKRF in key generation, the simulation results indicate that 21.8% of the bandwidth and storage of keys are reduced and PKMV2 mutual authentication time is reduced by 66.67%. The proposed work is simulated with Qualnet model and backed by MATLAB for processing and MYSQL for storing keys.
机译:在社会各界沟通的方式是通过无线通信的快速增长,其普遍使用转化。被固定和在带宽更丰富的被指定为IEEE 802.16,促进和由工业论坛推出了无线网络被称为全球微波互联接入(WiMAX)。该技术使用于固定和/或移动用户提供无线宽带服务的无缝传输。朦胧是每一个网络中的切换管理过程中出现长时间的延迟。移动WiMAX采用了认证密钥管理协议作为越区切换管理的一部分,其中基站(BS)控制的密钥材料向移动站(MS)的分布。所采用的协议是私有密钥管理版2-扩展认证协议(的PKMv2-EAP),其负责移动站的正常和周期性的授权,重新授权以及键清爽。授权密钥(AK)和业务加密密钥(TEK)起着密钥交换了至关重要的作用。当密钥的生存期过期时,MS必须请求新关键BS这反过来又导致授权的重复,认证以及密钥交换。为了避免再次授权期间的服务中断,两种活性键被同时由BS向MS发送。现有工作的后果是带宽利用率,时间消耗和大存储的大幅金额。它也通过中间人攻击和模拟忍受因密钥交换缺乏安全感。本文设计了按键的自动相互清爽通过提出一个键和基于迭代键刷新功能(PKIBKRF),以尽量减少带宽利用率,密钥存储和时间消耗。通过密钥生成整合PKIBKRF,仿真结果表明,带宽和密钥存储的21.8%减少和的PKMv2相互认证时间由66.67%减少。拟议的工作进行了模拟与QualNet的模型,并通过MATLAB进行处理和MYSQL支持存储键。

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