论文标题

5G新无线电中的频域信号处理,用于光谱增强的CP OFDM波形

Frequency-Domain Signal Processing for Spectrally-Enhanced CP-OFDM Waveforms in 5G New Radio

论文作者

Yli-Kaakinen, Juha, Loulou, AlaaEddin, Levanen, Toni, Pajukoski, Kari, Palin, Arto, Renfors, Markku, Valkama, Mikko

论文摘要

正交频划分多路复用(OFDM)已被选为第五代新无线电(5G-NR)波形发展的基础。但是,需要有效的信号处理工具来增强各种高级传输方案中的OFDM频谱。在较早的工作中,我们已经表明,快速卷积(FC)处理是用于过滤的OFDM信号生成和接收器端子带滤波的非常灵活,有效的工具,例如,对于5G-NR的混合杂种学方案。 FC滤波通过有效的快速傅立叶变换(FFT)的圆形卷积近似线性卷积,使用部分重叠的处理块。但是,由于具有固定块大小和固定重叠的连续重叠和循环和重叠和ADD处理模型,FC处理块无法与传输帧的所有OFDM符号对齐。此外,5G-NR命理学不允许使用比128短的变换长度,因为这会导致非整数循环前缀(CP)长度。在本文中,我们提出了解决上述限制的新FC处理方案。这些方案基于动态调整重叠周期并推断CP样品,这使得即使在可变的CP长度的情况下,也可以将FC块与每个OFDM符号对齐。这会降低复杂性和潜伏期,例如,在迷你插槽传输中,例如,在12-累积范围范围内的子带分配中,可以使用16点转换,从而大大降低了实现复杂性。在接收器侧,提出的方案使得可以有效地将级联的逆FFT单元和FC滤波器中的cascccade组合在一起。转换分解用于简化这些计算。就无线电链接性能和相关的处理复杂性而言,还提供了非常广泛的数值结果集。

Orthogonal frequency-division multiplexing (OFDM) has been selected as the basis for the fifth-generation new radio (5G-NR) waveform developments. However, effective signal processing tools are needed for enhancing the OFDM spectrum in various advanced transmission scenarios. In earlier work, we have shown that fast-convolution (FC) processing is a very flexible and efficient tool for filtered-OFDM signal generation and receiver-side subband filtering, e.g., for the mixed-numerology scenarios of the 5G-NR. FC filtering approximates linear convolution through effective fast Fourier transform (FFT)-based circular convolutions using partly overlapping processing blocks. However, with the continuous overlap-and-save and overlap-and-add processing models with fixed block-size and fixed overlap, the FC-processing blocks cannot be aligned with all OFDM symbols of a transmission frame. Furthermore, 5G-NR numerology does not allow to use transform lengths shorter than 128 because this would lead to non-integer cyclic prefix (CP) lengths. In this article, we present new FC-processing schemes which solve the mentioned limitations. These schemes are based on dynamically adjusting the overlap periods and extrapolating the CP samples, which make it possible to align the FC blocks with each OFDM symbol, even in case of variable CP lengths. This reduces complexity and latency, e.g., in mini-slot transmissions and, as an example, allows to use 16-point transforms in case of a 12-subcarrier-wide subband allocation, greatly reducing the implementation complexity. On the receiver side, the proposed scheme makes it possible to effectively combine cascaded inverse and forward FFT units in FC-filtered OFDM processing. Transform decomposition is used to simplify these computations. Very extensive set of numerical results is also provided, in terms of radio-link performance and associated processing complexity.

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