宽带光通信接收机用射频等效理想滤波器的频率交织ADC

Ryo Kabeya, Y. Umeda, K. Takano
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引用次数: 0

摘要

为了使用窄带模数转换器(adc)处理超宽带信号,迄今为止已经报道了将超宽带信号分割为窄带信号的频率交错(FI)接收器技术。传统的FI adc使用模拟滤波器,如LC滤波器,将超宽带信号划分为分离的较窄频带信号。然而,在滤波器的交叉频率区域发生的信号混叠和电平偏差会降低使用FI adc的接收器的信号传输质量。为了缓解这种退化,已经报道了数字信号处理技术来补偿由于混叠和电平偏差造成的失真。但是,对混叠和电平偏差的补偿需要进行大规模的信号处理。此外,由于信噪比降低导致的信号传输质量下降和电平偏差引起的非线性失真也不能完全消除。为了消除这些退化并改善信号传输质量,我们提出了带有RF等效理想滤波器(EIF)的FI adc。理想电路元件的计算机仿真表明,在不需要大规模信号处理进行失真补偿的情况下,具有优异的带分离能力和高精度的信号传输质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency-Interleaved ADC with RF Equivalent Ideal Filter for Broadband Optical Communication Receivers
To process an ultra-wideband signal with narrower-band analog-to-digital converters (ADCs), frequency-interleaved (FI) receiver technique that divides an ultra-broadband signal to narrower-band signals has been reported to date. Conventional FI ADCs use analog filters such as LC filters to divide an ultrawideband signal to separated narrower band signals. However, aliasing and level deviation of the signals that occurs in crossover frequency region of the filters degrades the signal transmission quality of the receivers that use FI ADCs. To mitigate this degradation digital signal processing technique to compensate the distortion due to the aliasing and level deviation has been reported. However, the compensation of the aliasing and level deviation need large-scale signal processing. In addition, degradation in signal transmission quality due to decrease in signal to noise ratio and distortion due to nonlinearity caused by the level deviation cannot be removed completely. To omit these degradations and improve the signal transmission quality we propose FI ADCs with an RF equivalent ideal filter (EIF). Computer simulation with ideal circuit components shows a potential to have an excellent band-separation capability and highly-accurate signal transmission quality without large-scale signal processing for the distortion compensation.
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