首页> 外文期刊>IEEE transactions on circuits and systems. II, Express briefs >Digital Iterative Harmonic Rejection and Image Cancellation for LPF-Less Frequency-Interleaved Analog-to-Digital Converters
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Digital Iterative Harmonic Rejection and Image Cancellation for LPF-Less Frequency-Interleaved Analog-to-Digital Converters

机译:LPF少频率交错模数转换器的数字迭代谐波抑制和图像取消

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The frequency-interleaved analog-to-digital converter features large bandwidth, high speed, medium-to-high resolution with respectable jitter robustness, albeit suffering from circuit impairments such as spectral leakages, harmonic interferences, in-phase/quadrature and aliasing images. For the first time, a digital compensation framework is introduced to minimize these impacts simultaneously. In this framework, channel recombination is performed before calibration. It circumvents the needs for analog harmonic rejection and channel separation, thus enabling significant simplification of the complex analog frontend design. A comprehensive system model that incorporates all the aforementioned distortions is formulated and leads to an iterative solution. Given the mismatch parameters, simulation outcomes validate the feasibility of this proposed framework and promise impressive performance benefits.
机译:频率交错的模数转换器具有具有可爱的抖动稳健性的大带宽,高速,高分辨率,尽管诸如光谱泄漏,谐波干扰,同相/正交和叠片图像的电路损伤,尽管是诸如诸如光谱泄漏,谐波干扰,同步/正交图像的电路障碍。首次引入数字补偿框架以同时最小化这些影响。在该框架中,频道重组在校准之前进行。它绕过模拟谐波抑制和通道分离的需求,从而实现了复杂的模拟前端设计的显着简化。制定了一种包含所有上述失真的综合系统模型,并导致迭代解决方案。鉴于不匹配参数,模拟结果验证了这一提议的框架的可行性,并承诺令人印象深刻的绩效效益。

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