A Lightweight Incognito Key Exchange Mechanism for LTE-A Assisted D2D Communication

S. Baskaran, G. Raja
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引用次数: 8

Abstract

Security, privacy, and availability are the crucial factors in Device-to-Device (D2D) communication. 5G is enabled with IPv6 to provide IP to the growing D2D communication and they are expected to operate over the LTE-Advanced (LTE-A) networks. With the increase in the 5G devices, there is a major security threat as any high-level device like smartphones has the ability to hack the network. The higher capability device can spoof IP of lower capability devices like household equipment to gain access into a trusted environment. Henceforth, there is a need for promising security architecture to protect a wide range of 5G devices and data. With the increase in the 5G devices, the device security and mobility management task at the core network will increase tremendously and impose huge core network overhead. Meanwhile 5G, multi-tier architecture has a stringent latency requirement which brings new security challenges due to frequent handovers and a wide range of authentication mechanisms in 5G small cells. Therefore we propose a Lightweight Incognito Key Exchange (LIKE) protocol for LTE-A supported D2D authentication and secret key sharing. Our objective is to provide a secure and user privacy ensured D2D communication that can promise a secure, low-cost and highly available D2D service for the upcoming delay and energy constrained 5G devices.
LTE-A辅助D2D通信的轻量级隐身密钥交换机制
安全性、隐私性和可用性是设备到设备(D2D)通信中的关键因素。5G支持IPv6,为不断增长的D2D通信提供IP,预计将在LTE-Advanced (LTE-A)网络上运行。随着5G设备的增加,存在重大的安全威胁,因为智能手机等任何高级设备都有能力入侵网络。功能较高的设备可以欺骗功能较低的设备(如家用设备)的IP,以获得对可信环境的访问。因此,需要有一个有前途的安全架构来保护广泛的5G设备和数据。随着5G设备的增加,核心网的设备安全和移动性管理任务将大幅增加,并带来巨大的核心网开销。同时,5G多层架构具有严格的延迟要求,由于5G小蜂窝中频繁的切换和广泛的认证机制,带来了新的安全挑战。因此,我们提出了一种轻量级的隐身密钥交换(LIKE)协议,用于LTE-A支持的D2D认证和秘密密钥共享。我们的目标是提供一种安全且确保用户隐私的D2D通信,为即将到来的延迟和能源受限的5G设备提供安全、低成本和高可用的D2D服务。
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