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Performance analysis of fast convolution based FBMC-OQAM system

机译:基于快速卷积的FBMC-OQAM系统性能分析

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Filter Bank based Multicarrier (FBMC) system is a multicarrier scheme that has recently gained attention due to its better spectral properties compared to OFDM systems. FBMC system is one among the strong contenders for 5G implementations. While better designs of FBMC systems are evolving with time, it is imperative that the hardware complexity is not overlooked. It is important that filter bank designs with reduced computational resources are sought. Reducing computational complexity offers advantages like less power consumption, faster computations and reduced runtime resources. These advantages have more significance in 5G where ultra high speed and ultra low latency are the highlights. Filter bank designs using fast convolution employ less arithmetic resources compared to polyphase filter bank implementations. The fast convolution filter design makes use of only filter's frequency domain sample values for filtering since the filtering is restricted to frequency domain. So the conventional polyphase implementation of filter is completely done away with. In this paper, we present FBMC/OQAM system using Fast Convolution and the performance of the system is evaluated in a communication channel. The system is compared with conventional polyphase FBMC/OQAM system and it is found that fast convolution based system outperforms polyphase implementation of FBMC system in computational complexity and BER performance.
机译:基于滤波器组的多载波(FBMC)系统是一种多载波方案,由于其比OFDM系统更好的频谱特性,最近引起了人们的关注。 FBMC系统是5G实施的强大竞争者之一。尽管FBMC系统的更好的设计会随着时间而发展,但必须确保硬件的复杂性不容忽视。寻找具有减少的计算资源的滤波器组设计是很重要的。降低计算复杂度具有诸如降低功耗,加快计算速度和减少运行时资源等优点。这些优势在5G中尤为重要,其中超高速和超低延迟是重点。与多相滤波器组实现相比,使用快速卷积的滤波器组设计使用的算术资源更少。快速卷积滤波器设计仅使用滤波器的频域样本值进行滤波,因为滤波仅限于频域。因此,传统的滤波器多相实现方式完全被淘汰了。在本文中,我们介绍了使用快速卷积的FBMC / OQAM系统,并在通信通道中评估了系统的性能。该系统与传统的多相FBMC / OQAM系统进行了比较,发现基于快速卷积的系统在计算复杂度和BER性能方面优于FBMC系统的多相实现。

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