基于全光无线通信链路的下一代网络替代接入技术

M. Matsumoto, K. Kazaura, P. Dat, A. Shah, K. Omae, T. Suzuki, K. Wakamori, T. Higashino, K. Tsukamoto, S. Komaki
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引用次数: 12

摘要

为了在设想的下一代网络(NGN)中提供电信服务,需要一种基于分组的网络,利用多种宽带、支持qos的传输技术,其中业务相关功能独立于底层传输相关功能。在新兴的下一代网络中,光无线通信(OWC)系统将作为可替代的宽带接入技术发挥重要作用。我们开发了一种革命性的新型全光无线通信(F- OWC)系统,该系统通过使用F-OWC收发器直接从光纤终端通过自由空间传播光束。在接收端,相应的收发器将自由空间传播的光束直接耦合到光纤连接端口中。在本文中,我们介绍了这种新的F-OWC系统的设计概念和亮点,该系统利用一种创新技术将自由空间传播的光束无缝耦合到光纤中。基于原型系统的实验结果表明,该系统能够在较长时间内以每秒数千兆比特的数据速率提供稳定、无错误的传输。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An alternative access technology for next generation networks based on full-optical wireless communication links
In order to provide telecommunications services in the envisaged next generation network (NGN), a packet based network utilizing multiple broadband, QoS-enabled transport technologies and in which the service related functions are independent of the underlying transport related functions is required. Optical wireless communication (OWC) systems will play an important role as alternative broadband access technology in the emerging NGNs. We have developed a revolutionaiy new full-optical wireless communication (F- OWC) system which operates by directly propagating an optical beam from a fiber termination point through free-space using a F-OWC transceiver. At the receiving end a corresponding transceiver directly couples the free-space propagated optical beam into an optical fiber connection port. In this paper we present the design concept and highlights of this new F-OWC system utilizing an innovative technology for seamless coupling a free-space propagated optical beam to a fiber. Experimental results, based on a prototype system, demonstrate that the system is capable of offering stable, error-free transmission at multiple giga-bit per second data rates over extended periods of time.
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