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Non-Redundant OFDM Receiver Windowing for 5G Frames and Beyond

机译:适用于5G帧及以上的非冗余OFDM接收器开窗

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Contemporary receiver windowed-orthogonal frequency division multiplexing (RW-OFDM) algorithms have limited adjacent channel interference (ACI) rejection capability under high delay spread and small fast Fourier transformation (FFT) sizes. Cyclic prefix (CP) is designed to be longer than the maximum excess delay (MED) of the channel to accommodate such algorithms in current standards. The robustness of these algorithms can only be improved against these conditions by adopting additional extensions in a new backward incompatible standard. Such extensions would deteriorate the performance of high mobility vehicular communication systems in particular. In this paper, we present a low-complexity Hann RW-OFDM scheme that provides resistance against ACI without requiring any intersymbol interference (ISI)-free redundancies. While this scheme is backward compatible with current and legacy standards and requires no changes to the conventionally transmitted signals, it also paves the way towards future spectrotemporally localized and efficient schemes suitable for higher mobility vehicular communications. A Hann window effectively rejects unstructured ACI at the expense of structured and limited inter-carrier interference (ICI) across data carriers. A simple maximum ratio combining (MRC)-successive interference cancellation (SIC) receiver is therefore proposed to resolve this induced ICI and receive symbols transmitted by standard transmitters currently in use. The computational complexity of the proposed scheme is comparable to that of contemporary RW-OFDM algorithms, while ACI rejection and bit-error rate (BER) performance is superior in both long and short delay spreads. Channel estimation using Hann RW-OFDM symbols is also discussed.
机译:当代的接收机开窗正交频分复用(RW-OFDM)算法在高延迟扩展和小的快速傅立叶变换(FFT)大小下具有有限的相邻信道干扰(ACI)抑制能力。循环前缀(CP)设计为比通道的最大超额延迟(MED)长,以适应当前标准中的此类算法。这些算法的鲁棒性只能通过在新的向后不兼容标准中采用其他扩展来针对这些条件进行改进。这样的扩展将特别使高移动性车载通信系统的性能恶化。在本文中,我们提出了一种低复杂度的Hann RW-OFDM方案,该方案可提供对ACI的抵抗力,而无需任何无符号间干扰(ISI)的冗余。尽管该方案与当前和遗留标准向后兼容,并且不需要改变传统传输的信号,但是它也为将来的适用于更高移动性车辆通信的光谱时本地化和高效方案铺平了道路。 Hann窗口有效地拒绝了非结构化ACI,但代价是跨数据载波的结构化和有限的载波间干扰(ICI)。因此,提出了一种简单的最大比合并(MRC)-成功干扰消除(SIC)接收机,以解决该诱发的ICI并接收当前使用的标准发射机发送的符号。所提出方案的计算复杂度可与现代RW-OFDM算法相媲美,而ACI抑制和误码率(BER)性能在长时延和短时延扩展方面均表现出色。还讨论了使用Hann RW-OFDM符号的信道估计。

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