论文标题
用于启用安全NC的小单元的能节能移交和关键分布协议的集成方法
An Integrated Approach for Energy Efficient Handover and Key Distribution Protocol for Secure NC-enabled Small Cells
论文作者
论文摘要
未来的无线网络必须为具有较高数据速率的密集移动网络提供服务,并将能源需求保持在可能的最低限度。基于小单元的小型网络体系结构和设备对设备(D2D)通信已经被视为5G网络及以后的一部分。在这种环境中,可以使用网络编码(NC)来实现更高的吞吐量和能源效率。但是,支持NC的系统需要解决NC特定的安全挑战,例如污染攻击。针对污染攻击的所有完整性计划通常都需要适当的密钥分配和管理,以确保移动环境中的安全性。此外,小单元环境中的移动性要求在信号开销方面更具挑战性和要求。本文提出了针对基于MAC的完整性方案量身定制的区块链辅助的密钥分布协议,该协议与上行链路参考信号(UL RS)交换机制相结合,实现了节能的安全NC。在移交场景中对协议的性能分析表明,它适合确保在密集的小细胞环境中具有高度的污染攻击,并存在多个对手。此外,与传统方案相比,交换过程中提出的方案在交换过程中达到了较低的带宽和信号传导开销,随着通信的进行,信号传导的成本大大降低,从而提高了网络的累积能源效率。
Future wireless networks must serve dense mobile networks with high data rates, keeping energy requirements to a possible minimum. The small cell-based network architecture and device-to-device (D2D) communication are already being considered part of 5G networks and beyond. In such environments, network coding (NC) can be employed to achieve both higher throughput and energy efficiency. However, NC-enabled systems need to address security challenges specific to NC, such as pollution attacks. All integrity schemes against pollution attacks generally require proper key distribution and management to ensure security in a mobile environment. Additionally, the mobility requirements in small cell environments are more challenging and demanding in terms of signaling overhead. This paper proposes a blockchain-assisted key distribution protocol tailored for MAC-based integrity schemes, which combined with an uplink reference signal (UL RS) handover mechanism, enables energy efficient secure NC. The performance analysis of the protocol during handover scenarios indicates its suitability for ensuring high level of security against pollution attacks in dense small cell environments with multiple adversaries being present. Furthermore, the proposed scheme achieves lower bandwidth and signaling overhead during handover compared to legacy schemes and the signaling cost reduces significantly as the communication progresses, thus enhancing the network's cumulative energy efficiency.