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Capacity enhancement by terminal originated beamforming for wireless local area networks

机译:通过终端发起的波束成形来增强无线局域网的容量

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摘要

In dense traffic areas, wireless local area networks (WLANs) suffer from interference problems due to the usage of the crowded unlicensed ISM band and the lack of available spectrum. To mitigate these problems, a terminal side beamforming framework is proposed—this beamforming is capable of focusing the transmission and the reception in the relevant direction of the access point to exploit the directivity of the indoor propagation channel. It provides network transparency to achieve the backwards compatibility to the existing WLAN networks, and vendor transparency to ease the system design process and thereby achieve low complexity and costs. The beamforming enabled terminal benefits in terms of capacity, energy efficiency, and security while it does not require any change on the network side costing network providers new investments. It will be an attractive value-added feature as well as low-cost solution for the future WLAN terminal design opening the door for WLAN terminal manufacturers to include the proposed solution into their product line. In this work, a WLAN terminal beamforming demonstrator has been developed to demonstrate the capacity enhancement in real environments. Signal to interference ratio (SIR) improvement as well as array gain were investigated by simulations with IEEE 802.11n cluster channel models and by experiments with the demonstrator in a typical office environment. The comparable results of simulations and experiments show significant array gain and SIR improvement. The significant capacity increase has been demonstrated in the experiments in both an interference free scenario and an interference limited scenario.
机译:在拥挤的交通区域中,由于拥挤的无执照ISM频段的使用和可用频谱的缺乏,无线局域网(WLAN)遭受了干扰问题。为了缓解这些问题,提出了一种终端侧波束成形框架,该波束成形能够将发射和接收集中在接入点的相关方向上,以利用室内传播信道的方向性。它提供网络透明性以实现与现有WLAN网络的向后兼容性,并提供供应商透明性以简化系统设计过程,从而实现较低的复杂性和成本。启用波束成形的终端在容量,能效和安全性方面均受益,而无需在网络侧进行任何更改,从而使网络提供商付出新的投资。对于未来的WLAN终端设计而言,这将是有吸引力的增值功能以及低成本解决方案,这为WLAN终端制造商将拟议的解决方案纳入其产品线打开了方便之门。在这项工作中,已经开发了WLAN终端波束成形演示器,以演示实际环境中的容量增强。通过使用IEEE 802.11n群集通道模型进行仿真,并通过在典型办公环境中的演示器进行实验,研究了信噪比(SIR)的提高以及阵列增益。仿真和实验的可比结果显示出显着的阵列增益和SIR改善。在无干扰场景和受限干扰场景中的实验中已经证明了容量的显着增加。

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