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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >A New Fast Convergent Blind Timing Skew Error Correction Structure for TIADC
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A New Fast Convergent Blind Timing Skew Error Correction Structure for TIADC

机译:TIADC新的快速收敛盲定时偏斜误差校正结构

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摘要

The timing errors and especially the timing skew mismatch errors are one of the main errors that cause substantial degradation in the resolution of high-speed Time-Interleaved analog-to-digital converters (TIADCs). These errors cannot be completely corrected using blind methods such as ANC, BSS etc., because of the correlation between the desired signal and the noise as both are sampled from the same input signal. In this brief, a new algorithm using oversampling is proposed to guarantee independence between the signal and the noise. The compensation structure is a typical Adaptive Noise Cancelling (ANC) block which uses special cost function gained from the oversampling concept. To estimate the noise signal caused by the timing skew error, a new structure using modulation concept is derived from the reformulation of the timing skew error effect on the TIADC signal and oversampling assumptions. The simulation results are presented for a four-channel 10-bit TIADC in order to verify the effectiveness of the proposed method. Low computational complexity and fast convergence speed are the main advantages of the proposed algorithm.
机译:定时错误尤其是定时偏斜错配错误是在高速时间交错的模数转换器(TIADCS)的分辨率中导致大量劣化的主要错误之一。由于所需信号与噪声之间的相关性,可以使用诸如ANC,BSS等的盲方法完全校正这些误差,因为从相同的输入信号采样,所需信号和噪声之间的相关性。在此简介中,建议使用过采样的新算法来保证信号与噪声之间的独立性。补偿结构是一种典型的自适应噪声消除(ANC)块,其使用从过采样概念中获得的特殊成本函数。为了估计由定时偏差误差引起的噪声信号,使用调制概念的新结构源于对TIADC信号和过采样假设的定时偏斜误差效应的重新定义。仿真结果以四通道10位TiADC呈现,以验证所提出的方法的有效性。低计算复杂性和快速收敛速度是所提出的算法的主要优点。

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