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首页> 外文期刊>Journal of Lightwave Technology >All-Analog Adaptive Equalizer for Coherent Data Center Interconnects
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All-Analog Adaptive Equalizer for Coherent Data Center Interconnects

机译:用于相干数据中心互连的全模拟自适应均衡器

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摘要

In a high-speed coherent optical transmission system, typically the signals obtained at the receiver front-end are digitized using very high-speed ADCs and then processed in the digital domain to remove optical channel impairments. In this work, we show that these signals can instead be processed in the analog domain, which can significantly reduce the power consumption and the complexity of the receiver. The first all-analog adaptive equalizer for receivers of coherent dual-polarization optical links has been presented with its detailed architecture and measurement results. The proof-of-concept equalizer uses the constant modulus algorithm for blind adaptation of its weight coefficients to implement a 4 x 4 2-tap FIR filter in 130 nm SiGe BiCMOS technology. Its functionality is evaluated experimentally for 40 Gb/s data rate and 10 km standard single mode fiber channel. This demonstration shows that the use of all-analog processing for short reach data-center interconnects is feasible and is a much simpler solution than the use of the high-speed ADC+DSP based approach. Moreover, when implemented in advanced CMOS or FinFET technologies, the power consumption of the equalizer is expected to be significantly lower than the DSP based implementations in similar process technologies.
机译:在高速相干光传输系统中,通常使用非常高速ADC在接收器前端获得的信号在数字域中进行数字化,以去除光学通道损伤。在这项工作中,我们表明这些信号可以在模拟域中进行处理,这可以显着降低功耗和接收器的复杂性。已经介绍了相干双极化光学链路接收器的第一全模拟自适应均衡器,其详细的架构和测量结果呈现。概念验证均衡器使用恒定模量算法来实现其重量系数的盲适应,实现130nm SiGe Bicmos技术中的4×4 2抽头FIR滤波器。它的功能是通过实验评估40 GB / s的数据速率和10公里标准的单模光纤通道。该演示表明,使用用于短路数据中心互连的全模模拟是可行的,并且是比使用高速ADC + DSP的方法的使用更简单。此外,当在高级CMOS或FinFET技术中实现时,均衡器的功耗预计将显着低于基于DSP的类似过程技术的实现。

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