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Design of channel sounder using an agile RF transceiver based USRP3 and Matlab/Simulink

机译:使用基于USRP3的灵活RF收发器和Matlab / Simulink设计通道探测仪

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Channel sounders are used to characterize the wireless channels, they work by sounding the channel with known signal and then measure received signal to calculate the channel impulse response. From the channel impulse response the power delay profile of the channel can be obtained and channel parameters such as maximum excessive delay, mean excessive delay and RMS delay spread can be calculated to get more insight into the channel. This helps to do signal design for robust and energy efficient data transfer across wireless channel. This paper presents the design of a channel sounder which uses a wideband 70MHz - 6.0GHz RF agile transceiver based USRP3 B210 board with tunable bandwidth of up to 56MHz. Two USRP3 boards interfaced to the Matlab/Simulink through USB3.0 port; one USRP3 acts as transmit and the other acts as receive. Channel is sounded using an OFDM like signal whose peak-to-average-power is optimized and channel response is measured using Simulink models. Later Matlab scripts are used to post process and extract channel parameters. Channel response of metallic rack is measured and the channel parameters reported.
机译:通道探测器用于表征无线信道,它们通过用已知信号发出声音,然后测量接收信号以计算通道脉冲响应的通道。从通道脉冲响应响应可以获得通道的功率延迟分布,并且可以计算诸如最大延迟,意味着过度延迟和rms延迟扩展的信道参数以获得更多地洞察通道。这有助于跨无线通道进行强大和节能数据传输的信号设计。本文介绍了一种频道测声仪的设计,它使用宽带70MHz - 6.0GHz射频收发器的USRP3 B210板,可调带宽高达56MHz。通过USB3.0端口将两个USRP3板连接到MATLAB / SIMULINK;一个usrp3充当传输,另一个充当接收。频道使用类似OFDM的信号响起,其峰值平均功率得到优化,并且使用Simulink模型测量信道响应。后来的MATLAB脚本用于发布过程和提取通道参数。测量金属架的频道响应,并报告了通道参数。

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