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首页> 外文期刊>Journal of Lightwave Technology >Software-synchronized all-optical sampling for fiber communication systems
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Software-synchronized all-optical sampling for fiber communication systems

机译:光纤通信系统的软件同步全光采样

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This paper describes a software-synchronized all-optical sampling system that presents synchronous eye diagrams and data patterns as well as calculates accurate Q values without requiring clock recovery. A synchronization algorithm is presented that calculates the offset frequency between the data bit rate and the sampling rate, and as a result, synchronous eye diagrams can be presented. The algorithm is shown to be robust toward poor signal quality and adds less than 100-fs timing drift to the eye diagrams. An extension of the software synchronization algorithm makes it possible to automatically find the pattern length of a periodic data pattern in a data signal. As a result, individual pulses can be investigated and detrimental effects present on the data signal can be identified. Noise averaging can also be applied. To measure accurate Q values without clock recovery, a high sampling rate is required in order to establish the noise statistics of the measured signal before any timing drift occurs. This paper presents a system with a 100-MHz sampling rate that measures accurate Q values at bit rates as high as 160 Gb/s. The high bandwidth of the optical sampling system also contributes to sampling more noise, which in turn results in lower Q values compared with conventional electrical sampling with a lower bandwidth. A theory that estimates the optically sampled Q values as a function of the sampling gate width is proposed and experimentally verified.
机译:本文介绍了一种软件同步的全光采样系统,该系统提供了同步眼图和数据模式,并且无需时钟恢复即可计算出准确的Q值。提出了一种同步算法,该算法计算数据比特率和采样率之间的偏移频率,因此,可以给出同步眼图。该算法显示出对不良信号质量的鲁棒性,并在眼图中增加了小于100 fs的时序漂移。软件同步算法的扩展使得可以自动找到数据信号中周期性数据模式的模式长度。结果,可以研究单个脉冲,并且可以识别出存在于数据信号上的有害影响。也可以应用噪声平均。为了在没有时钟恢复的情况下测量准确的Q值,需要高采样率,以便在出现任何时序漂移之前建立被测信号的噪声统计数据。本文提出了一种具有100MHz采样率的系统,该系统可在高达160 Gb / s的比特率下测量准确的Q值。光学采样系统的高带宽也有助于采样更多的噪声,与具有较低带宽的常规电采样相比,这又导致较低的Q值。提出并通过实验验证了根据采样门宽度来估计光学采样Q值的理论。

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