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Flexible fast-convolution implementation of single-carrier waveform processing for 5G

机译:5G单载波波形处理的灵活快速卷积实现

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This paper proposes and analyzes the use of effective and flexible fast-convolution (FC) implementation for single-carrier (SC) waveforms with very small roll-offs to reach high spectrum efficiency and significantly lower peak-to-average power ratio (PAPR) than corresponding multicarrier schemes. The generated waveforms are spectrally well-contained, with very small power leakage to adjacent frequencies, and are thus good candidates for opportunistic and heterogeneous spectrum use scenarios. The SC-waveforms are found to exhibit similar PAPR characteristics as the OFDM based SC-FDMA scheme. On the receiver side, fast-convolution filter bank (FC-FB) approach supports effective frequency-domain equalization with low complexity. It can be used for simultaneous processing of multiple SC channels with individually tunable bandwidths, center frequencies and timing offsets. This solution enables different terminals to operate with different roll-offs and hence with different PAPR. The approach supports well asynchronous multi-user operation, which is considered as an important element in 5G networks.
机译:本文提出并分析了有效和灵活的快速卷积(FC)实现对具有很小滚降的单载波(SC)波形的使用,以达到高频谱效率并显着降低峰均功率比(PAPR)比相应的多载波方案。生成的波形在频谱上包含良好,对相邻频率的功率泄漏非常小,因此是机会性和异构频谱使用方案的良好候选者。发现SC波形表现出与基于OFDM的SC-FDMA方案相似的PAPR特性。在接收器端,快速卷积滤波器组(FC-FB)方法以低复杂度支持有效的频域均衡。它可用于同时处理具有单独可调带宽,中心频率和定时偏移的多个SC通道。该解决方案使不同的终端能够在不同的滚降下运行,从而在不同的PAPR下运行。该方法支持良好的异步多用户操作,这被认为是5G网络中的重要元素。

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