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CPW-OFDM(Cyclic Postfix Windowing OFDM) for the B5G (Beyond 5th Generation) Waveform

机译:B5G(超出第5代)波形的CPW-OFDM(循环Postfix窗口OFDM)

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For the new radio waveform of the beyond 5G mobile system, the spectrum efficiency is the most important factor. Especially, OOB (out-of-band) power spectrum must be reduced to increase the spectrum efficiency and to save the frequency resources. Filtering is the one way to get the sharp OOB spectrum. So, f-OFDM (filtered orthogonal frequency division multiplexing), UFMC (universal filtered multicarrier) and FBMC (filter bank multicarrier) belong to the filtering method and were suggested as 5G new radio waveform. However, there are still some problems such as the very complicated process and some difficulty to the realization. The other approach is the windowing method. WOLA-OFDM (weighted overlap and add - orthogonal frequency division multiplexing) system is the most representative windowing method. However, the WOLA-OFDM system has inherently some serious problem. Due to the overlap process of the copied and added extensions, the left extension part will invade into the right part of the previous OFDM symbol because left extension and right extension of two consecutive OFDM symbols must be overlapped in order not to sacrifice the time resource. This is very serious data collision in the transmitter even before the transmission. So, in order to improve the WOLA-OFDM system and to solve this data collision problem of WOLA-OFDM between the consecutive OFDM symbols, we like to propose a CPW-OFDM (cyclic postfix windowing - orthogonal frequency division multiplexing). In this proposed CPW-OFDM system, the first part of the OFDM symbol is copied and added on the right-end of the OFDM, which is the cyclic postfix. Then, windowing is made on this cyclic postfix and already existing cyclic postfix. WOLA-OFDM has right and left extensions and windowing is performed on these 2 extensions, but the proposed CPW-OFDM has only one extension on the right side and windowing is perform and on this right extension and left part of CP(cyclic prefix). Therefore, there is no data collision in the proposed CPW-OFDM. CPW-OFDM system is an improved and simplified version of the WOLA-OFDM system. Simulations results show that the proposed CPW-OFDM system has comparable OOB spectrum reduction characteristics and can be designed by simple some modification from the conventional OFDM system.
机译:对于超出5G移动系统的新无线电波形,频谱效率是最重要的因素。特别是,必须减少OOB(带外)功率谱以增加频谱效率并节省频率资源。过滤是获取夏普OOB频谱的一种方法。因此,F-OFDM(过滤正交频分复用),UFMC(通用滤波多载波)和FBMC(滤波器组多载波)属于过滤方法,并被建议为5G新的无线电波形。但是,仍然存在一些问题,例如非常复杂的过程和实现的一些难度。其他方法是窗口方法。 Wola-OFDM(加权重叠和添加 - 正交频分复用)系统是最代表性的窗口方法。然而,Wola-OFDM系统本质上存在一些严重的问题。由于复制和添加扩展的重叠过程,左延伸部分将被侵入前一个OFDM符号的右侧部分,因为两个连续的OFDM符号的左扩展和右延伸必须重叠,以便不牺牲时间资源。即使在传输之前,也是发射器中的非常严重的数据冲突。因此,为了改善Wola-OFDM系统并解决连续OFDM符号之间的Wola-OFDM的数据碰撞问题,我们喜欢提出一个CPW-OFDM(循环Postfix窗口 - 正交频分复用)。在这一提出的CPW-OFDM系统中,OFDM符号的第一部分被复制并在OFDM的右端添加,这是循环后的Postfix。然后,在此循环后修复和已经存在的循环后修补程序上进行了窗口。 Wola-ofdm具有右侧和左扩展和窗口,在这两个扩展上执行,但建议的CPW-OFDM在右侧和窗口中只有一个扩展,并且在该右侧扩展和左侧的CP(循环前缀)上执行一个扩展。因此,在提议的CPW-OFDM中没有数据冲突。 CPW-OFDM系统是WOLA-OFDM系统的改进和简化版本。仿真结果表明,建议的CPW-OFDM系统具有可比的OOB频谱减少特性,可以通过传统的OFDM系统简单的一些修改来设计。

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