WF-OFDM(加窗滤波OFDM)系统用于5G新无线电波形

Changyoung An, Byeongjae Kim, H. Ryu
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引用次数: 12

摘要

5G新无线电波形设计的两种方法是滤波和加窗,通过减少带外功率谱来提高频谱效率。作为滤波方法,UFMC(通用滤波多载波)、FBMC(滤波组多载波)和f-OFDM(滤波正交频分复用)波形是5G系统新波形的潜在候选。另一种可能的方法是在传统的CP-OFDM系统中使用加窗来减小OOB功率谱。W-OFDM(窗口正交频分复用)是典型的,表现出相当的性能。每种方法都有一些优点和缺点。在FBMC系统中可以表现出最好的OOB消减性能。然而,FBMC系统是最复杂的,不能支持一般的M-QAM (M-ary正交调幅)格式。因此,设计一种新的基于ofdm的波形,使其具有与FBMC相似的OOB功率谱,并支持一般的M-QAM调制是非常重要的。在本文中,我们提出了一种WF-OFDM系统,用于5G和5G超越移动系统的波形设计。该WF-OFDM系统采用滤波和加窗相结合的方法来获得协同效应,通过减小带外功率谱来提高频谱效率。根据滤波和开窗位置的不同,设计了4种WF-OFDM系统,以提高OOB性能。仿真结果表明,WF-OFDM系统具有与FBMC系统相当或更好的OOB频谱缩减特性。特别是所提出的WF-OFDM # 3和#4系统,即使在6或8的短窗口长度下也表现出显著的OOB消减性能。
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WF-OFDM (windowing and filtering OFDM) system for the 5G new radio waveform
The 2 approaches for the 5G new radio waveform design are the filtering and windowing for the spectrum efficiency improvement by reducing the OOB(out-of-band) power spectrum. As filtering method, UFMC (universal filtered multicarrier), FBMC (filter bank multicarrier) and f-OFDM (filtered orthogonal frequency division multiplexing) waveforms are the potential candidates for a new waveform for 5G system. Another possible approach is to use the windowing in the conventional CP-OFDM system in order to reduce the OOB power spectrum. W-OFDM (window orthogonal frequency division multiplexing) is typical and show comparable performance. Each approach has some advantages and disadvantages together. The best OOB reduction performance can be shown in FBMC system. However, FBMC system is the most complicated and cannot support the general M-QAM (M-ary quadrature amplitude modulation) format. So, it is very important to design a novel OFDM-based waveform that has the similar OOB power spectrum to the FBMC and support the general M-QAM modulation as well. In this paper, we like to propose a WF-OFDM System for the 5G and 5G beyond mobile system waveform design. This WF-OFDM system uses a combination method of the filtering and windowing to get the synergy effect, so that the spectrum efficiency may be increased by reducing the OOB (out-of-band) power spectrum. 4 kinds of WF-OFDM systems are devised depending on the filtering and windowing positions for the OOB performance improvement. Simulations results show that the proposed WF-OFDM system has comparable or better OOB spectrum reduction characteristics to FBMC system. Especially, the proposed system WF-OFDM # 3 and #4 show the remarkable OOB reduction performance even in the short window length of 6 or 8.
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