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Doppler Diversity and PAPR Enhancement in 5G Systems Through New Radio Technique INVITED

机译:多普勒多样性和PAPR通过新的无线电技术在5G系统中提升邀请

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摘要

Next generation 5G communication systems will require better Doppler Diversity and higher Signal to Interference Ratio (SIR) in order to support high velocity and low latency applications. New Radio (NR) is the 5G radio technology proposed by 3GPP. The NR waveforms are more adaptable to different channel conditions due its filtering techniques and use of different sub-carrier spacing. Different sub-carrier filtering based waveforms are proposed for 5G, one of them is Universal Filtered Multi-carrier (UFMC) technique. UFMC is better for high velocity and low latency applications due to its flexibility of adapting waveform parameters over subcarriers as well as sub bands. The proposed prototype filter for UFMC that can be found in the literatures is Dolph-Chebyshev filter. This paper describes a novel and adaptive proto type filter (Fractional Powered Binomial Filter or FPBF) for UFMC [6] that can enhance the SIR in comparison to that of Dolph-Chebyshev filter based UFMC with different sub carrier spacing. The Peak to Average Power Ratio (PAPR) with FPBF based UFMC is also better than that of Dolph-Chebyshev filter based UFMC. The SIR performance improvement using FPBF is a novel technique and described first time in this paper.
机译:下一代5G通信系统将需要更好的多普勒分集和更高的信号到干扰比(SIR),以支持高速和低延迟应用。新电台(NR)是3GPP提出的5G无线电技术。由于其滤波技术和使用不同的子载波间隔,NR波形更适应于不同的通道条件。提出了基于不同的基于子载波滤波的波形5G,其中一个是通用滤波的多载波(UFMC)技术。由于其灵活性地调整波形参数以及子带,因此UFMC对高速和低延迟应用更好。可以在文献中找到的UFMC所提出的原型过滤器是Dolph-Chebyshev滤波器。本文介绍了用于UFMC [6]的新颖和自适应原型滤波器(分数供电二项式滤波器或FPBF),其可以增强基于Dolph-Chebyshev滤波器的UFMC具有不同子载波间隔的先生。基于FPBF的UFMC的平均功率比(PAPR)的峰值也比基于Dolph-Chebyshev滤波器的UFMC更好。使用FPBF的SIR性能改进是一种新颖的技术,并在本文中首次描述。

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