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Low-Cost MIMO Radio Over Fiber System for Multiservice DAS Using Double Sideband Frequency Translation

机译:使用双边带频率转换的用于多业务DAS的低成本MIMO光纤无线电系统

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摘要

Inthis paper, a novel low-cost DSB frequency translation system is experimentally demonstrated and its theory is mathematically proved. The new system is capable of transmitting wideband LTE MIMO signals and supporting multiple services. Experimentally, 2 × 2 LTE MIMO channels with 20 MHz bandwidth, and a 700 MHz carrier frequency, are transmitted simultaneously along with an IEEE 802.11 g signal (54 Mbps) over a 300 m length of multi-mode fiber (MMF). The MIMO channel matrix of the system is retrieved and the condition number is calculated. It can be seen in the experimental results that the system is well conditioned, has a low-error vector magnitude (EVM) and the transmission of the MIMO signals has negligible effect on the IEEE 802.11 g signal. The use of a preamplifier minimizes the nonlinearity introduced by the frequency mixers, resulting in a high spurious-free dynamic range (SFDR). Compared to a single sideband (SSB) system, where multiple filters are used and two channels encounter different EVMs, the new DSB system avoids unnecessary filtering and the impairments introduced will be the same for both channels. Therefore it can be concluded that the improved MIMO over fiber system using DSB frequency translation technology is a potential low-cost solution for multiservice MIMO-enabled distributed antenna systems (DAS).
机译:本文通过实验证明了一种新型的低成本DSB频率转换系统,并通过数学方法对其理论进行了证明。新系统能够传输宽带LTE MIMO信号并支持多种服务。实验上,具有300 MHz带宽和700 MHz载波频率的2×2 LTE MIMO信道与IEEE 802.11 g信号(54 Mbps)同时通过300 m长的多模光纤(MMF)传输。检索系统的MIMO信道矩阵并计算条件编号。从实验结果中可以看出,该系统状况良好,具有低误差矢量幅度(EVM),并且MIMO信号的传输对IEEE 802.11 g信号的影响可忽略不计。前置放大器的使用最大程度地降低了混频器引入的非线性,从而实现了高无杂散动态范围(SFDR)。与使用多个滤波器且两个通道遇到不同的EVM的单边带(SSB)系统相比,新的DSB系统避免了不必要的滤波,并且引入的损伤对于两个通道都是相同的。因此,可以得出结论,使用DSB频率转换技术的光纤系统上改进的MIMO是针对启用多服务MIMO的分布式天线系统(DAS)的潜在低成本解决方案。

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