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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Radio-Over-Fiber Access Network Architecture Based on New Optimized RSOA Devices With Large Modulation Bandwidth and High Linearity
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Radio-Over-Fiber Access Network Architecture Based on New Optimized RSOA Devices With Large Modulation Bandwidth and High Linearity

机译:基于新型优化的具有大调制带宽和高线性度的RSOA设备的光纤无线接入网络架构

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摘要

Next-generation wireless communications systems need to have high throughputs to satisfy user demand, to be low-cost, and to have an efficient management as principal features. Using a high-performance, low-cost reflective semiconductor optical amplifier (RSOA) as a colorless remote modulator at the antenna unit, the wavelength-division multiplexing (WDM) technique can be used for supporting distributed antenna systems (DASs). Each antenna unit is connected to the central unit using optical fiber and all links are used to transmit radio signals. Due to a large optical bandwidth, RSOAs are potential candidates for cost effective WDM systems. In this paper, simulations are carried out to determine optimized RSOA devices for wireless technology. New RSOA structures are fabricated and evaluated. The optimized RSOA is electrically driven by a standard Wi-Fi input signal (IEEE 802.11 g) with a 64-quadrature amplitude modulation (QAM) format. A large modulation bandwidth and a high electrooptic gain are demonstrated, which are confirmed by good performance when using orthogonal frequency-division multiplexing techniques. Characteristics such as high linearity and large electrooptic modulation bandwidth of our RSOA are sufficient to ensure an error vector magnitude (EVM) lower than 5% with a dynamic range exceeding 35 dB in a back-to-back configuration (at ${rm P}_{rm in}=$ 0 dBm). Uplink transmission over a 20 km of single-mode fiber is also demonstrated with EVM lower than 5% and a dynamic range exceeding 25 dB (at ${rm P}_{rm in} = - $5 $~$dBm).
机译:下一代无线通信系统需要具有高吞吐量以满足用户需求,成本低廉并具有有效管理作为主要特征。通过在天线单元上使用高性能,低成本的反射型半导体光放大器(RSOA)作为无色远程调制器,可将波分复用(WDM)技术用于支持分布式天线系统(DAS)。每个天线单元使用光纤连接到中央单元,并且所有链路都用于传输无线电信号。由于较大的光带宽,RSOA是经济高效的WDM系统的潜在候选者。在本文中,进行了仿真以确定用于无线技术的优化RSOA设备。制作并评估了新的RSOA结构。优化的RSOA由具有64正交幅度调制(QAM)格式的标准Wi-Fi输入信号(IEEE 802.11 g)电驱动。展示了大的调制带宽和高的电光增益,当使用正交频分复用技术时,良好的性能证实了这一点。 RSOA的高线性度和较大的电光调制带宽等特性足以确保误差矢量幅度(EVM)低于5%,并且背靠背配置的动态范围超过35 dB(在$ {rm P} _ {rm in} = $ 0 dBm)。还证明了在20 km的单模光纤上的上行链路传输,EVM低于5%,动态范围超过25 dB(在$ {rm P} _ {rm in} =-$ 5 $〜$ dBm)。

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