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Mobility Management for Hybrid LiFi and WiFi Networks in the Presence of Light-path Blockage

机译:混合LIFI和WIFI网络在光线堵塞的情况下的移动性管理

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Hybrid light fidelity (LiFi) and wireless fidelity (WiFi) networks (HLWNets) have been recently proposed as a promising technique for indoor wireless communications. Such a network combines the high-speed transmission of LiFi and the ubiquitous coverage of WiFi. Meanwhile, in addition to user mobility, intermittent light-path blockages make the handover issue intricate in HLWNets. Also, load balancing (LB) is necessary because the coverage areas of LiFi and WiFi networks are completely overlapped. This further increases the difficulty in handover as the decision for a vertical or a horizontal handover in a mobile environment with ultra-small cells is non-trival. Aimed at providing an optimal solution to the access point selection (APS) with given channel state information (CSI), the conventional LB method might cause frequent and unnecessary handovers. In this paper, a joint optimisation problem is formulated to simultaneously consider LB and handover in HLWNets. Results show that compared with the conventional LB method, the proposed method can improve the system throughput by up to 60%.
机译:混合灯保资(LIFI)和无线保真(WiFi)网络(HLWNETs)已被提出作为室内无线通信的有希望的技术。这种网络结合了LIFI的高速传输和WiFi的无处不在的覆盖范围。同时,除了用户移动性之外,间歇式光路堵塞还使切换问题在HLWNET中复杂。此外,负载平衡(LB)是必要的,因为LIFI和WiFi网络的覆盖区域完全重叠。这进一步增加了切换的难度,因为具有超小单元的移动环境中的垂直或水平切换的决定是非三维。旨在向具有给定信道状态信息(CSI)的接入点选择(AP)提供最佳解决方案,传统的LB方法可能导致频繁和不必要的切换。在本文中,配制联合优化问题以同时考虑HLWNET中的磅和切换。结果表明,与传统的LB方法相比,所提出的方法可以将系统吞吐量提高至多60%。

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