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首页> 外文期刊>International journal of communication systems >Millimeter-wave signal generation and transmission to multiple radio access units by employing nonlinearity of the optical link
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Millimeter-wave signal generation and transmission to multiple radio access units by employing nonlinearity of the optical link

机译:通过采用光学链路的非线性,毫米波信号产生和传输到多个无线电接入单元

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Fifth-generation communication demands seamless multi-giga-bit per second data transmission in its small-sized ultradense cells. The congestion-free millimeter-wave spectrum is the best option to be utilized for high data rate transmission. Generation and transmission of millimeter-wave signals in the electrical domain is challenging mainly owing to bandwidth limitation of electronic components. Therefore, optical generation and transmission of these high-frequency signals are a feasible option. In this work, we propose all-optical millimeter-wave signal generation and transmission in a centralized radio-over-fiber architecture. The proposed architecture performs all the major optical signal processing tasks at the central unit by eliminating the requirement of light sources and local oscillators at the multiple radio access units. Therefore, a potentially simplified and cost-effective solution for fifth-generation mobile networks is demonstrated through simulation results. Nonlinearity of the Mach-Zehnder modulator and of a highly nonlinear dispersion-shifted fiber is exploited to generate coherent optical carriers from a single centralized laser source instead of several separate laser sources. The coherent optical carriers are used to perform remote heterodyne detection at the radio access units and at the central unit to generate millimeter-wave signals. Each of the four radio access units receives data from the central unit at a rate of 512 Mbps over two subcarrier multiplexed signals. Each of the radio access unit transmits the uplink data received from the mobile units at a rate of 128 Mbps and centered at a frequency of 25 GHz. It has been demonstrated through simulations that the proposed system gives acceptable bit error rate results.
机译:第五代通信要求在其小型超阵小区中每秒数据传输无缝多GIGA位。无充塞的毫米波频谱是用于高数据速率传输的最佳选择。电域中的毫米波信号的产生和传输主要是由于电子元件的带宽限制而具有挑战性。因此,这些高频信号的光学产生和传输是可行的选项。在这项工作中,我们提出了集中式无线电过光纤架构中的全光毫米波信号生成和传输。该架构通过在多个无线电接入单元处消除光源和本地振荡器的要求,在中央单元执行所有主要光信号处理任务。因此,通过仿真结果证明了对第五代移动网络的潜在简化和成本有效的解决方案。 Mach-Zehnder调制器的非线性和高度非线性色散偏移光纤被利用以产生来自单个集中式激光源代替几个单独的激光源的相干光载波。相干光载波用于在无线电接入单元和中央单元处执行远程外差检测以产生毫米波信号。四个无线电接入单元中的每一个以两个子载波多路复用信号以512 Mbps的速率从中央单元接收数据。每个无线电接入单元以128 Mbps的速率发送从移动单元接收的上行链路数据,并以25GHz的频率为中心。通过模拟已经证明了所提出的系统提供可接受的误码率结果。

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