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RAKE Reception for IR-UWB Systems in High Mobile Environments

机译:在高移动环境中的IR-UWB系统耙接收

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摘要

A new method of RAKE reception for Impulse Radio Ultra Wideband (IR-UWB) systems in high mobile environments is described. The conventional multipath diversity reception method for UWB is RAKE receiver, which is usually applied under static environments. In high mobile environments, due to extremely wide bandwidth of UWB signals, frequency components are shifted differently and this makes the pulse-width change in the time domain. Aiming at block-transmission UWB systems, pilot symbols are inserted to estimate the scale change factor. Template signal for RAKE receiver is resampled to compensate the Doppler effect. Simulation results demonstrate that this method could eliminate the Doppler effect and improve the bit error rate (BER) performance. Simulation results also show that the BER performance is not only related to relative velocity, but also related to block length and pilot symbol period. When pilot symbol period increases, the performance degrades. So in the practise block structure should be well designed according to the mobile environments.
机译:描述了一种新的高移动环境中脉冲无线电超宽带(IR-UWB)系统的新方法。 UWB的传统多径分集接收方法是Rake接收机,其通常在静态环境下应用。在高移动环境中,由于UWB信号极宽带宽,频率分量不同地移动,这使得时间域中的脉冲宽度变化。针对块传输UWB系统,插入导频符号以估计刻度变化因子。 Rake接收器的模板信号重新采样以补偿多普勒效果。仿真结果表明,该方法可以消除多普勒效应并提高误码率(BER)性能。仿真结果还表明,BER性能不仅与相对速度有关,还与块长度和导频符号周期相关。当导频符号周期增加时,性能下降。因此,在实践中,块结构应根据移动环境进行充分设计。

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