胡毅, 王于波, 李振国, 姜亦刚, 李靖, 张帆. 一种基于压缩感知的无冗余通道时间交织ADC随机化方法[J]. 微电子学与计算机, 2022, 39(2): 101-106. DOI: 10.19304/J.ISSN1000-7180.2021.0598
引用本文: 胡毅, 王于波, 李振国, 姜亦刚, 李靖, 张帆. 一种基于压缩感知的无冗余通道时间交织ADC随机化方法[J]. 微电子学与计算机, 2022, 39(2): 101-106. DOI: 10.19304/J.ISSN1000-7180.2021.0598
HU Yi, WANG Yubo, LI Zhenguo, JIANG Yigang, LI Jing, ZHANG Fan. A non-redundant-channel randomization method for time-interleaved ADC based on compressed sensing[J]. Microelectronics & Computer, 2022, 39(2): 101-106. DOI: 10.19304/J.ISSN1000-7180.2021.0598
Citation: HU Yi, WANG Yubo, LI Zhenguo, JIANG Yigang, LI Jing, ZHANG Fan. A non-redundant-channel randomization method for time-interleaved ADC based on compressed sensing[J]. Microelectronics & Computer, 2022, 39(2): 101-106. DOI: 10.19304/J.ISSN1000-7180.2021.0598

一种基于压缩感知的无冗余通道时间交织ADC随机化方法

A non-redundant-channel randomization method for time-interleaved ADC based on compressed sensing

  • 摘要: 在时间交织ADC结构中,本文基于压缩感知理论提出一种无冗余通道随机化方法.利用随机数决定当前通道ADC是否采样,当有多个通道ADC空闲时随机选择某个通道进行采样,实现时间交织ADC的欠奈奎斯特随机化采样.在此基础上,基于观测矩阵和正交匹配追踪算法对时间交织ADC的数据进行重建,获得完整的ADC量化结果.通过MATLAB对本文提出的基于压缩感知的时间交织ADC通道随机化方法进行建模,在给定采样时间失配条件下,本方法将时间交织ADC的SFDR从53.1 dB提高到65.5 dB,提升12.4 dB,有效提高了ADC的动态性能.

     

    Abstract: Based on compressed sensing theory, this paper proposed a channel-randomization method without redundant channels for time-interleaved ADC. The proposed method uses random numbers to determine whether the current channel ADC samples the input signal. If not, this channel will be free. When multiple channels free, one of the free channels will be randomly selected to work. Thus, sub-Nyquist sampling with randomization is realized. Furthermore, based on the measurement matrix and orthogonal-matching-pursuit algorithm, the output data is reconstructed and thus full-data rate of time-interleaved ADC is recovered. The proposed channel randomization method based on compressed sensing for time-interleaved ADC is verified by MATLAB. Under the given timing mismatch, the time-interleaved ADC′s SFDR is improved from 53.1 dB to 65.5 dB, which improved 12.4 dB.

     

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