基于Delta-Sigma调制和复值神经网络均衡的有限带宽亚太赫兹1024-QAM传输
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国家自然科学基金项目(62127802; 62331004; 61720106015; 61835002)


Bandwidth-Limited Sub-THz 1024-QAM Transmission Based on Delta-Sigma Modulation and Complex-Valued Neural Network Equalization
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National Natural Science Foundation of China (No. 62127802, 62331004, 61720106015, 61835002)

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    摘要:

    太赫兹技术由于频谱资源丰富,在下一代无线通信中有着巨大潜力。基于电子设备的系统用于生成太赫兹波时设备带宽非常有限,限制了系统吞吐量增长,而光子辅助太赫兹系统价格昂贵且结构复杂。为了解决这个问题,提出了一种使用Delta-Sigma调制(Delta-Sigma Modulation, DSM)的太赫兹系统。在研究中生成一组0.15 THz的1024-QAM信号并成功演示了一个2 m自由空间无线太赫兹波传输系统。此外,受到DSM解调中快速误差传播的启发,提出将数字信号处理(Digital Signal Processing, DSP)与复值神经网络(Complex-Valued Neural Network, CVNN)相结合的方法以提高1024-QAM信号的误码率(Bit Error Rate, BER)性能。当BER软判决为2×10-2时,接收机的灵敏度提高了0.5 dB。本文方法能够有效解决传统正交幅度调制(Quadrature Amplitude Modulation, QAM)中噪音带来的问题,以提高适应于带宽不足的电子设备的频谱效率。

    Abstract:

    Terahertz (THz) technology has great potential in the next generation of wireless communications due to its abundant spectrum resources. Electronic device-based systems have very limited device bandwidth when used to generate THz waves, which restricts the growth of system throughput, while photonics-aided THz systems are expensive and complex in structure. To solve this problem, a terahertz system using Delta-Sigma modulation (DSM) is proposed. In the study, a set of 0.15 THz 1024-QAM signals is generated and a 2-meter free-space wireless THz wave transmission system is successfully demonstrated. In addition, inspired by the rapid error propagation in DSM demodulation, a method combining digital signal processing (DSP) with complex-valued neural network (CVNN) is proposed to improve the bit error rate (BER) performance of 1024-QAM signals. When the BER soft-decision is 2×10-2, the sensitivity of the receiver is improved by 0.5 dB. The method proposed in this paper can effectively solve the problems caused by noise in traditional quadrature amplitude modulation (QAM) to improve the spectrum efficiency of electronic devices with insufficient bandwidth.

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马源,龙健宇,徐思聪,等.基于Delta-Sigma调制和复值神经网络均衡的有限带宽亚太赫兹1024-QAM传输[J].红外,2025,46(6):34-41.

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