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Cognitive Co-Existence of Unlicensed Wireless Networks through Beamforming

机译:通过波束成形的非许可无线网络的认知共存

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Wireless fidelity (Wi-Fi) has become a key access technology, which offloads significant percentage of mobile Internet traffic. Nevertheless, QoS provisioning over dense WiFi faces many challenges due to the nature of its contention-based protocol and poor inter-network coordination. In light of this, long-term evolution (LTE) technology, which benefits from centralized coordination, has been proposed to exploit unlicensed spectrum through LTE-U for data offloading. However, the prosperity of deploying LTE in very crowded unlicensed band relies on the effective coexistence among LTE-U and increasingly dense Wi-Fi networks. In this paper, we propose to use the space dimension and beamforming to facilitate the effective coexistence and inter-network coordination. Two distinct approaches to evaluate the proposed coexistence mechanism, namely, Wi-Fi received power minimization and LTE user signal to noise ratio (SNR) maximization, have been investigated. The two proposed algorithms are simulated to show the potential and effective feasibility of coexistence between Wi-Fi and LTE in unlicensed spectrum.
机译:无线保真(Wi-Fi)已成为一项关键的访问技术,可减轻很大一部分移动Internet流量的负担。然而,由于其基于竞争的协议的性质以及不良的网络间协调,在密集WiFi上进行QoS设置仍面临许多挑战。鉴于此,已经提出了受益于集中式协调的长期演进(LTE)技术,以通过LTE-U利用未经许可的频谱进行数据分载。但是,在非常拥挤的无执照频段中部署LTE的繁荣取决于LTE-U和日益密集的Wi-Fi网络之间的有效共存。在本文中,我们建议使用空间尺寸和波束成形来促进有效的共存和网络间的协调。研究了两种不同的方法来评估提出的共存机制,即Wi-Fi接收功率最小和LTE用户信噪比(SNR)最大化。对这两种提出的算法进行了仿真,以显示Wi-Fi和LTE在非授权频谱中共存的潜在和有效可行性。

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