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The Rainfall Intensity Effects on 1–13 GHz UWB-Based 5G System for Outdoor Applications

机译:降雨强度对基于1-13 GHz UWB的5G系统在户外应用中的影响

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This paper reports a research contribution on tropical outdoor channel characterization in 1–13?GHz band for 5G systems. This 1–13?GHz ultra-wideband (UWB) channel characterization is formulated with rain intensity as the most important variable, from 20?mm/h to 200?mm/h. Tropical rain will cause pulse broadening and distorts the transmitted symbols, so the probability of symbol errors will increase. In this research, the bit error rate (BER) performance evaluation is done using both matched filtering or correlator-based receivers. At no rain conditions, BER 10?6 will be attained at signal to noise ratio (SNR) 5?dB, but at rainfall intensity 200?mm/h, the BER will fall to 10?2 for matched filter and for correlator-based receivers. For improving the BER performance, an adaptive nonlinear phase equalizer is proposed which adopts multiple allpass biquad infinite impulse response (IIR) filters combined with low-order finite impulse response (FIR) filter to mitigate the nonlinearity phase and differential attenuation of magnitude responses due to antenna and tropical outdoor UWB channel effects. Our simulation results show that the proposed equalizer has worked successfully with BER 10?6 on the rain rate that is exceeded for 0.01% of the time () rain intensity or 99.99% availability. In addition, at rainfall rate 120?mm/h, the proposed nonlinear phase equalizer can give 9?dB signal improvement.
机译:本文报告了有关5G系统在1-13 GHz GHz频段上的热带室外信道表征的研究贡献。这个1-13 GHz超宽带(UWB)信道特性以雨强度为最重要的变量,从20?mm / h到200?mm / h来制定。热带雨水将导致脉冲展宽并使传输的符号失真,因此符号错误的可能性将增加。在这项研究中,使用匹配滤波或基于相关器的接收器来完成误码率(BER)性能评估。在无雨条件下,信噪比(SNR)为5dB时,BER为10?6,但在降雨强度为200?mm / h时,对于匹配滤波器和基于相关器的BER,其BER将降至10?2。接收者。为了提高BER性能,提出了一种自适应非线性相位均衡器,该均衡器采用多个全通双二阶无限冲激响应(IIR)滤波器与低阶有限冲激响应(FIR)滤波器相结合,以减轻非线性相位和幅值响应引起的差分衰减。天线和热带室外UWB信道效应。我们的仿真结果表明,所提出的均衡器已经成功地在BER 10?6下工作,降雨率超过了0.01%的时间()降雨强度或99.99%的可用性。此外,在降雨量为120?mm / h时,所提出的非线性相位均衡器可以使信号改善9?dB。

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