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Improved internet protocol multimedia subsystem authentication for long term evolution

机译:改进的网际协议多媒体子系统认证,用于长期演进

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摘要

Long Term Evolution (LTE) is a major technology to be used in the 4th generation (4G) mobile network and the core network is evolving towards a converged packet based framework for all services. As a part of the evolved core network, Internet Protocol (IP) Multimedia Subsystem (IMS) provides multimedia services (data, voice, video and variations) over packet switched networks. LTE and IMS are both defined by the 3rd Generation Partnership Project (3GPP) group, and the specification identifies that a LTE user device has to carry out two authentication steps to access IP multimedia services. The first authentication step is used to gain LTE network admission and the second authentication step is the IMS authentication used to gain access to the multimedia services. It is observed that the 4G standardized authentication protocols include double execution of the Authentication and Key Agreement (AKA) which increases the system’s complexity, results in significant authentication delay and high terminal energy consumption. Authentication is very important for a terminal to gain access to a network and therefore considerable previous research into this topic has occurred. However a common limitation of previously proposed authentication systems is either a lack of security or significant system modification. This research proposes the Improved AKA (IAKA) authentication protocol which binds the two layer’s authentication procedures by using the unified IP Multimedia Private-user Identity (IMPI). The proposed IAKA only executes the AKA protocol once in the network layer and generates authentication credentials which would be used in the second IMS service layer authentication. This research work included providing IAKA authentication protocol, developing a LTE IMS integrated network by using OPNET Modeller, simulation of the IAKA and the legacy 3GPP defined 4G LTE AKA authentication protocol under different environments, and in-depth analysis of the system performance, security and terminal’s energy consumption. It is shown that the proposed IAKA carries out terminal authentication correctly, improves security, reduces IMS layer authentication delay by up to 38%, and provides an 81.82% terminal energy consumption saving.
机译:长期演进(LTE)是将在第四代(4G)移动网络中使用的一项主要技术,并且核心网络正在朝着面向所有服务的基于融合分组的框架发展。作为演进的核心网络的一部分,Internet协议(IP)多媒体子系统(IMS)通过分组交换网络提供多媒体服务(数据,语音,视频和变体)。 LTE和IMS均由第三代合作伙伴计划(3GPP)组定义,并且该规范标识LTE用户设备必须执行两个身份验证步骤才能访问IP多媒体服务。第一认证步骤用于获得LTE网络准入,第二认证步骤是用于获得对多媒体服务的访问的IMS认证。可以看出,4G标准化身份验证协议包括双重执行身份验证和密钥协议(AKA),这会增加系统的复杂性,导致严重的身份验证延迟和高终端能耗。身份验证对于终端获得网络访问权限非常重要,因此以前对此主题进行了大量研究。然而,先前提出的认证系统的共同限制是缺乏安全性或重大的系统修改。这项研究提出了一种改进的AKA(IAKA)身份验证协议,该协议通过使用统一的IP多媒体专用用户身份(IMPI)来绑定两层身份验证过程。所提出的IAKA在网络层中仅执行一次AKA协议,并生成将在第二个IMS服务层身份验证中使用的身份验证凭据。这项研究工作包括提供IAKA身份验证协议,使用OPNET Modeller开发LTE IMS集成网络,模拟IAKA和3GPP定义的传统4G LTE AKA身份验证协议,以及对系统性能,安全性和性能的深入分析。终端的能耗。结果表明,所提出的IAKA能够正确执行终端认证,提高安全性,减少IMS层认证延迟达38%,并节省了81.82%的终端能耗。

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