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首页> 外文期刊>Fortschritte der Physik >A 2-D FFT-Based Transceiver Architecture for OAM-OFDM Systems With UCA Antennas
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A 2-D FFT-Based Transceiver Architecture for OAM-OFDM Systems With UCA Antennas

机译:具有UCA天线的OAM-OFDM系统的基于2-D FFT的收发器架构

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摘要

Radio orbital angular momentum (OAM) provides another perspective of spatial multiplexing to improve the spectrum efficiency. However, multipath induces severe intra-and interchannel crosstalk. To solve the problem in a uniform circular array (UCA)-based OAM system, we first incorporate the effect of sign changing of OAM reflection in modeling the multipath OAM channel. Then, we propose a transceiver architecture for broadband OAM orthogonal frequency-division multiplexing (OFDM) wireless communication systems, which uses baseband digital 2-D fast Fourier transform (FFT) rather than existing radio frequency analog phase shifters to generate and receive the OAM-OFDM signal, thus reducing energy consumption and hardware cost. At last, a flexible 2-D FFT algorithm is developed. Analysis and simulation results show that compared with the traditional row-column FFT algorithm, the proposed 2-D FFT algorithm could reduce the multiplication complexity by 1/4 MN log(2) N, where N and M are the number of UCAantenna elements and the number of subcarriers, respectively.
机译:无线电轨道角动量(OAM)提供了一种空间多路复用的另一种观点,以提高频谱效率。然而,MultiPath诱导严重的内部串扰串扰。为了解决统一的圆形阵列(UCA)的OAM系统中的问题,我们首先结合了OAM反射在模拟多径OAM通道中的效果。然后,我们提出了一种用于宽带OAM正交频分复用(OFDM)无线通信系统的收发器架构,它使用基带数字2-D快速傅里叶变换(FFT)而不是现有的射频模拟相移器来生成和接收OAM- OFDM信号,从而降低能量消耗和硬件成本。最后,开发了一种灵活的2-D FFT算法。分析和仿真结果表明,与传统的行列FFT算法相比,所提出的2-D FFT算法可以减少1/4 Mn log(2)n的乘法复杂性,其中n和m是ucaantenna元素的数量和分别是子载波的数量。

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