A high gain active photonic antenna for high speed backhaul link: A system analysis

T. Prakoso, R. Ngah, T. A. Rahman, Zabih Ghassemlooy
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引用次数: 4

Abstract

A high-gain active photonic antenna is proposed to provide long distance optical and wireless backhaul link. To support service for long wireless distance, RF amplifier and high gain antenna is integrated to the photonic antenna concept. High speed feature is achieved through utilization of simultaneous multi-channel WLAN transmitted through the photonic antenna. Using this notion, the use of four simultaneous channels can potentially provide 216 Mbps at 5 km and 120 Mbps at 7.7 km. Utilization of two simultaneous channels is potentially capable of supporting 108 Mbps at 13.4 km and 72 Mbps at 16.3 km. The speed can be increased if modified WLAN protocol, such as Nstreme2, is employed. These results are significantly higher speed compared to current common practice. This study also remarks that the downlink side is the performance limiter of the photonic antenna system, therefore become the priority to be optimized. Cognitive radio can be adopted to improve the optical link bandwidth utilization and increase aggregate data rate.
用于高速回程链路的高增益有源光子天线:系统分析
提出了一种高增益有源光子天线,以提供远距离光与无线回程链路。为了支持长距离无线服务,将射频放大器和高增益天线集成到光子天线概念中。高速特性是通过利用通过光子天线传输的同时多通道WLAN来实现的。使用这个概念,使用四个同时信道可以在5公里处提供216 Mbps,在7.7公里处提供120 Mbps。利用两个同时信道可以在13.4公里处支持108 Mbps,在16.3公里处支持72 Mbps。如果采用改进的无线局域网协议,如Nstreme2,则可以提高速度。这些结果与目前的常用实践相比,速度明显更快。本研究还指出,下行端是光子天线系统的性能限制因素,因此成为优化的重点。采用认知无线电可以提高光链路带宽利用率,提高聚合数据速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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