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Evaluation of radio-over-fiber link for 45-GHz- and 60-GHz-band simultaneous transmissions

机译:评估45 GHz和60 GHz频段同时传输的光纤无线电链路

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The demand for a high-capacity radio link is an emerging issue to enhance the availability of broadband access not only on wireline (optical) but also on wireless (radio) links. In fact, a recently developed optical technology achieves 100-Gb/s capacity with a single carrier; however, advanced radio communication in the microwave region limits its capacity to 1 Gb/s. Therefore, a high-capacity radio link with a high-frequency carrier is highly demanded and is being developed rapidly. A millimeter-wave radio communication technology developed on the basis of the IEEE802.11ad standard at the 60-GHz band is one of the possible solutions to increase the radio link capacity; however, its high atmospheric attenuation limits the transmission distance to several tens of meters [1]. Therefore, a high-capacity interconnection between the service areas is necessary to expand the service areas. A radio-over-fiber (RoF) technology is a promising method to connect the radio access units (RAUs) via an optical fiber with a low loss feature, and the demonstration of the principle of RoF signal transmission at the 60-GHz band has already been reported [2, 3]. The recent progress in the IEEE802.11aj standard, which focuses on the radio standards in China, has achieved a high-capacity link at the 60-GHz band as well as at the 45-GHz band [4]. Thus, simultaneous transmissions at the millimeter-wave band are required; however, the evaluation results of the IEEE802.11aj RoF transmission could not be obtained owing to its broadband feature. In this study, we have evaluated 45-GHz- and 60-GHz-band simultaneous transmissions with an extremely high-bandwidth RoF transceiver.
机译:对大容量无线电链路的需求是一个新兴问题,不仅要提高有线(光学)链路上的宽带接入的可用性,而且要增强无线(无线电)链路上的宽带接入的可用性。实际上,最近开发的光学技术可以通过单个载波实现100 Gb / s的容量;但是,微波区域中的高级无线电通信将其容量限制为1 Gb / s。因此,对带有高频载波的高容量无线电链路的需求很高,并且正在迅速发展。在60 GHz频段上基于IEEE802.11ad标准开发的毫米波无线电通信技术是增加无线电链路容量的可能解决方案之一。然而,其高的大气衰减将传输距离限制在几十米[1]。因此,服务区域之间的大容量互连对于扩展服务区域是必要的。光纤无线电(RoF)技术是一种通过具有低损耗功能的光纤连接无线电接入单元(RAU)的有前途的方法,并且在60 GHz频段上RoF信号传输原理的演示具有已有报道[2,3]。 IEEE802.11aj标准的最新进展侧重于中国的无线电标准,已经在60 GHz频段和45 GHz频段实现了高容量链路[4]。因此,需要在毫米波波段上同时发射。但是,由于其宽带特性,无法获得IEEE802.11aj RoF传输的评估结果。在这项研究中,我们评估了具有极高带宽RoF收发器的45 GHz和60 GHz频带同时传输。

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