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Low latency of re-authentication during handover: Re-authentication using a signed token in heterogeneous wireless access networks

机译:切换过程中重新认证的低延迟:在异构无线接入网络中使用符号令牌重新认证

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Wireless networks provide several advantages over wired networks. They offer: a satisfactory bandwidth, mobility, easy deployment in difficult areas, long-term savings and the speed more and more higher. However, they also have some disadvantages in regard to security, performances during re-authentication, execution of real-time applications and interference from other electromagnetic sources (Bluetooth, microwave, etc.). The existing solutions to reduce delays of Handover intercellular are specific solutions to a particular network or manufacturer of this technology. The main objective of this paper is to propose novel mechanisms based on digital signatures to obtain low latency re-authentication during Handover in Wireless Access Networks. Our infrastructure will be based on trusted relationship between the heterogeneous access points and the authentication servers, in order to allow the mobility anytime anywhere to any user, and the ubiquitous access to the Future Internet, while ensuring the right level of security to both the end users as well to the wireless networks. In this context, the main issues are to resolve the seamless Handover and the re-authentication during mobility of station. By using a signed token in our trusted infrastructure, we achieve a unique authentication and a fast re-authentication. Therefore, the requests to the authentication server are considerably limited.
机译:无线网络提供了有线网络的几个优点。他们提供了:一个满意的带宽,移动性,易于部署在困难的地区,长期储蓄和速度越来越高。然而,他们也有一些缺点,在安全方面,重新认证,实时应用程序的执行和干扰其他电磁源(蓝牙,微波等)中的表演。现有的解决方案,以减少交接延误间对这项技术的特定网络或特定制造商的解决方案。本文的主要目的是提出了一种基于数字签名的新机制切换中的无线接入网络中获得低延迟重新认证。我们的基础设施将基于异构接入点和认证服务器之间的信任关系,从而使流动性随时随地向任何用户,并且给未来互联网的无处不在的接入,同时确保安全的适当水平,以两端用户以及到无线网络。在此背景下,主要的问题是站的移动过程中解决无缝切换和重新认证。通过在我们的信任基础设施使用签名令牌,我们实现了一个独特的认证和快速重认证。因此,在认证服务器的请求很大限制。

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