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Measuring metastability and its effect on communication signal processing systems

机译:测量亚稳定性及其对通信信号处理系统的影响

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New digital communication receivers often oversample an intermediate frequency (IF) or baseband signal at a very high rate (16 to 32 times the IF frequency or bit rate) as a means to demodulate the encoded data and synchronize the recovered clock. Unfortunately, an asynchronous data source can result in metastable errors and its effect on communications system performance has not been analyzed before now. Fortunately, our results demonstrate the vitality of 1-bit quantized IF high-speed digital signal processing. We review a practical measurement technique using a digital sampling oscilloscope that can be easily applied to today's digital signal processing systems. This method is used to collect data on a high-speed digital gate array technology used for a digital communication receiver, and the statistics of packet error rate are calculated. The analysis shows the substantial robustness of fast gate array logic and the importance of selecting the right technology. The technique and analysis presented can be applied to other digital systems.
机译:新型数字通信接收器通常以很高的速率(IF频率或比特率的16到32倍)对中频(IF)或基带信号进行过采样,以解调编码数据并同步恢复的时钟。不幸的是,异步数据源可能会导致亚稳态错误,并且迄今为止它尚未对通信系统性能产生影响。幸运的是,我们的结果证明了1位量化IF高速数字信号处理的生命力。我们回顾了一种使用数字采样示波器的实用测量技术,该技术可以轻松应用于当今的数字信号处理系统。该方法用于在用于数字通信接收器的高速数字门阵列技术上收集数据,并计算分组错误率的统计信息。分析显示了快速门阵列逻辑的强大鲁棒性和选择正确技术的重要性。提出的技术和分析可以应用于其他数字系统。

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