Optical MIMO multimode fiber links channel measurements and system performance analysis

A. Ahrens, J. Pankow, S. Aust, S. Lochmann
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引用次数: 5

Abstract

Wireless communication is nowadays one of the areas attracting a lot of research activity due to the strongly increasing demand in high-data rate transmission systems. The use of multiple antennas at both the transmitter and receiver side has stimulated one of the most important technical breakthroughs in recent communications allowing increasing the capacity and dropping the bit-error rate. However, multiple-input multiple-output (MIMO) systems are not limited to wireless MIMO systems and can be observed in a huge variety of transmission links and network parts and have attracted a lot of attention since the mid 90's. In the field of optical MIMO transmission systems, multi-mode (MM) fibre offers the possibility to transmit different signals by different mode groups. The perspective of the MIMO philosophy within the field of optical transmission systems is elaborated in this contribution based on channel measurements within a (2 × 2) MIMO system. For the channel measurements the second optical window and a fibre length of 1.4 km was chosen. Computer simulations on an overall data rate of 10.24 Gbps underline the potential of multi-mode fibres in optical high-data rate MIMO communication systems and show that in order to achieve the best bit-error rate, not necessarily all MIMO layers have to be activated.
光MIMO多模光纤链路通道测量和系统性能分析
由于高数据速率传输系统的需求日益增长,无线通信成为当今研究热点之一。在发送端和接收端同时使用多个天线已经刺激了最近通信中最重要的技术突破之一,允许增加容量并降低误码率。然而,多输入多输出(MIMO)系统不仅限于无线MIMO系统,而且可以在各种传输链路和网络部件中观察到,自90年代中期以来引起了人们的广泛关注。在光MIMO传输系统中,多模光纤提供了通过不同模组传输不同信号的可能性。基于(2 × 2) MIMO系统内的通道测量,在此贡献中阐述了光传输系统领域内MIMO哲学的观点。对于通道测量,选择了第二个光学窗口和长度为1.4公里的光纤。总体数据速率为10.24 Gbps的计算机模拟强调了多模光纤在光学高数据速率MIMO通信系统中的潜力,并表明为了实现最佳误码率,不一定要激活所有MIMO层。
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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