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Time and Frequency Synchronization Characteristics in Rapid Prototyping Environments

机译:快速原型环境中的时间和频率同步特性

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This paper presents the transfer of a real-time testbed communication system, where the wireless measured bit error rate (BER) matches the theoretical one, into a Matlab-Simulink and GNURadio model. With this model we investigate the characteristics of the time and frequency synchronization algorithm with respect to several frequency offsets and different matched filter interpolations. The chosen frequency offset up to 10 % is identical to one expected in radio frequency identification (RFID) systems. In the following we show that the constructed GNURadio model acts in combination with an Ettus Research universal software radio peripheral (USRP) as the theoretically expected BER. Finally, we will highlight the benefits of the development of test-beds combining USRP, GNURadio, and Matlab-Simulink in the context of rapid prototyping.
机译:本文介绍了一种实时测试台通信系统的传输方法,该系统将无线测量的误码率(BER)与理论值相匹配,并将其转换为Matlab-Simulink和GNURadio模型。利用该模型,我们针对几个频率偏移和不同的匹配滤波器插值,研究了时间和频率同步算法的特性。所选的高达10%的频偏与射频识别(RFID)系统中预期的频偏相同。在下面的内容中,我们证明构造的GNURadio模型与Ettus Research通用软件无线电外围设备(USRP)结合使用,可以作为理论上期望的BER。最后,我们将重点介绍在快速原型设计的背景下开发结合USRP,GNURadio和Matlab-Simulink的测试台的好处。

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