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An FPGA-based adaptable 200 MHz bandwidth channel sounder for wireless communication channel characterisation

机译:基于FpGa的自适应200 mHz带宽信道发声器,用于无线通信信道表征

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摘要

This paper describes the development of a fast adaptable FPGA-based wideband channel sounder with signal bandwidths of up to 200 MHz and channel sampling rates up to 5.4 kHz. The application of FPGA allows the user to vary the number of real-time channel response averages, channel sampling interval, and duration of measurement. The waveform, bandwidth, and frequency resolution of the sounder can be adapted for any channel under investigation. The design approach and technology used has led to a reduction in size and weight by more than 60%. This makes the sounder ideal for mobile time-variant wireless communication channels studies. Averaging allows processing gains of up to 30 dB to be achieved for measurement in weak signal conditions. The technique applied also improves reliability, reduces power consumption, and has shifted sounder design complexity from hardware to software. Test results show that the sounder can detect very small-scale variations in channels.
机译:本文介绍了一种基于FPGA的快速适应性宽带信道探测仪的开发,其信号带宽高达200 MHz,通道采样率高达5.4 kHz。 FPGA的应用允许用户改变实时通道响应平均值的数量,通道采样间隔和测量持续时间。测深仪的波形,带宽和频率分辨率可适用于所研究的任何通道。使用的设计方法和技术已使尺寸和重量减少了60%以上。这使发声器成为移动时变无线通信信道研究的理想选择。在微弱信号条件下进行测量时,平均可实现高达30 dB的处理增益。所采用的技术还提高了可靠性,降低了功耗,并将更合理的设计复杂性从硬件转移到了软件。测试结果表明,发声器可以检测到通道中很小的变化。

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