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Improved Handover Through Dual Connectivity in 5G mmWave Mobile Networks

机译:通过5G mmWave移动网络中的双连接性改善了切换

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The millimeter wave (mmWave) bands offer the possibility of orders of magnitude greater throughput for fifth-generation (5G) cellular systems. However, since mmWave signals are highly susceptible to blockage, channel quality on any one mmWave link can be extremely intermittent. This paper implements a novel dual connectivity protocol that enables mobile user equipment devices to maintain physical layer connections to 4G and 5G cells simultaneously. A novel uplink control signaling system combined with a local coordinator enables rapid path switching in the event of failures on any one link. This paper provides the first comprehensive end-to-end evaluation of handover mechanisms in mmWave cellular systems. The simulation framework includes detailed measurement-based channel models to realistically capture spatial dynamics of blocking events, as well as the full details of Medium Access Control, Radio Link Control, and transport protocols. Compared with conventional handover mechanisms, this paper reveals significant benefits of the proposed method under several metrics.
机译:毫米波(mmWave)频段可为第五代(5G)蜂窝系统提供更大数量级的吞吐量。但是,由于mmWave信号极易受到阻塞的影响,因此任何一个mmWave链路上的信道质量都可能是非常断断续续的。本文实现了一种新颖的双重连接协议,该协议使移动用户设备能够同时保持与4G和5G小区的物理层连接。结合本地协调器的新型上行链路控制信令系统可在任何一条链路发生故障的情况下实现快速路径切换。本文对mmWave蜂窝系统中的切换机制进行了首次全面的端到端评估。该模拟框架包括详细的基于测量的信道模型,以现实地捕获阻塞事件的空间动态,以及媒体访问控制,无线电链路控制和传输协议的完整细节。与传统的切换机制相比,本文揭示了该方法在多个指标下的显着优势。

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