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Low Complexity Implementation of Universal Filtered Multi-Carrier Transmitter

机译:通用过滤多载波发射器的低复杂性实现

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摘要

Universal Filtered Multi-Carrier (UFMC) is a promising multi-carrier modulation scheme. It can be considered as the combine of filtered OFDM and Filter Bank Multi-Carrier (FBMC) modulations. The difference among them is that filtered OFDM filters the entire band and FBMC filters the single subcarrier, while UFMC filters groups of subcarriers. It is evaluated their performance for the new conditions. While UFMC offers superior advantages, such as higher spectral efficiency, lower overhead, more robustness and less out-of-band (OOB) emission, the introduction of filters and the application of FFTs for the subband increase the implementation complexity of the transmitter. In terms of complexity, based on the analysis of UFMC transceiver structure, few low complexity implementation methods for UFMC systems are recently put forward. The low complexity solutions need to be found. In this paper, the computational complexity of different UFMC implementation methods based on lightweight structure which combines with the FIR filter and the poly-phase filter is evaluated. It is shown that the computational complexity of the UFMC transmitter can be reduced to be similar to OFDM, which is a promising solution for the advanced waveform. In addition, we analyze the effect of the filter on the power spectral density (PSD) of the proposed structure. Analysis shows that the system can be implemented with better performance by adjusting the filter parameters.
机译:通用过滤的多载波(UFMC)是一个有前途的多载波调制方案。它可以被认为是过滤器的OFDM和滤波器组多载波(FBMC)调制的组合。它们之间的差异是过滤的OFDM过滤整个频带和FBMC过滤单个子载波,而UFMC过滤子载波组。它评估了他们对新条件的表现。虽然UFMC提供了卓越的优势,例如较高的频谱效率,较低的开销,更稳健性和较少的带外(OOB)发射,滤波器引入和用于子带的FFT的应用增加了变送器的实现复杂性。在复杂性方面,基于UFMC收发器结构的分析,最近提出了一些用于UFMC系统的低复杂性实现方法。需要找到低复杂性解决方案。在本文中,评估基于与FIR滤波器和多相滤波器相结合的轻质结构的不同UFMC实现方法的计算复杂性。结果表明,UFMC发射器的计算复杂性可以减少以类似于OFDM,这是用于高级波形的有希望的解决方案。此外,我们分析过滤器对所提出的结构的功率谱密度(PSD)的影响。分析表明,通过调整滤波器参数,可以通过更好的性能来实现系统。

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