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A highly re-configurable Instruments-in-Matlab Software-Defined Radio platform for 4G SC-FDMA signal measurements and analysis

机译:用于4G SC-FDMA信号测量和分析的高度可重新配置的Matlab-in-Matlab软件定义无线电平台

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This paper presents a highly re-configurable Instruments-in-Matlab Software-Defined Radio (IM-SDR) platform for 4G LTE Single Carrier Frequency Division Multiplexing (SC-FDMA) signal measurement and analysis. The high configurability of the SDR comes from the real-time seamless integration of the versatile MATLAB software with many high-end instruments like arbitrary waveform generator (AWG), vector signal generator, channel emulator, wideband IQ demodulator, and digital storage scope etc., for transmitting and receiving the real-world 4G signals. Via Ethernet/GPIB, each instrument is controlled by and interfaced to either Matlab TX or RX program to serve as a block in the complete radio chain. Moreover, the SC-FDMA TX/RX programs also implement all the required algorithms and functional blocks for the baseband transceiver, including FFT-based modulation/demodulation, packet formation/detection, CFO estimation/compensation, and channel estimation/ equalization, etc‥ Finally, experimental results are included to verify the proposed IM-SDR approach.
机译:本文为4G LTE单载波频分多路复用(SC-FDMA)信号测量和分析提供了一种高度可重新配置的Matlab的Matlab软件定义无线电(IM-SDR)平台。 SDR的高可配置性来自多功能MATLAB软件与许多高端仪器的实时无缝集成,例如任意波形发生器(AWG),矢量信号发生器,通道仿真器,宽带IQ解调器和数字存储示波器等。 ,用于发送和接收实际的4G信号。通过以太网/ GPIB,每台仪器都由Matlab TX或RX程序控制并与之连接,以充当完整无线电链中的模块。此外,SC-FDMA TX / RX程序还实现了基带收发器所需的所有算法和功能块,包括基于FFT的调制/解调,包形成/检测,CFO估计/补偿以及信道估计/均衡等。最后,包括实验结果以验证所提出的IM-SDR方法。

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