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首页> 外文期刊>IEEE Transactions on Communications >Slot clock recovery in optical PPM communication systems with avalanche photodiode photodetectors
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Slot clock recovery in optical PPM communication systems with avalanche photodiode photodetectors

机译:具有雪崩光电二极管光电探测器的光学PPM通信系统中的时隙时钟恢复

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Slot timing recovery in a direct-detection optical PPM communication system can be achieved by processing the photodetector output waveform with a nonlinear device whose output forms the input to a phase-locked loop. The choice of a simple transition detector as the nonlinearity is shown to give satisfactory synchronization performance. The RMS phase error of the recovered slot clock and the effect of slot timing jitter on the bit error probability were directly measured. The experimental system consisted of an AlGaAs laser diode ( lambda =834 nm) and a silicon avalanche photodiode photodetector. The system used Q=4 PPM signaling and operated at a source data rate of 25 Mb/s. The mathematical model developed to compute the RMS phase error of the recovered clock is shown to be in good agreement with results of actual measurements of phase errors. The use of the recovered slot clock in the receiver resulted in no significant degradation in receiver sensitivity compared to a system with perfect slot timing. The system achieved a bit error probability of 10/sup -6/ at a received optical signal energy of 55 detected photons per information bit.
机译:通过使用非线性器件处理光电检测器的输出波形,可以实现直接检测光学PPM通信系统中的时隙定时恢复,该非线性器件的输出构成了锁相环的输入。选择了简单的跃迁检测器作为非线性,可以提供令人满意的同步性能。直接测量恢复的时隙时钟的RMS相位误差和时隙定时抖动对误码率的影响。实验系统由一个AlGaAs激光二极管(λ= 834 nm)和一个硅雪崩光电二极管光电探测器组成。该系统使用Q = 4 PPM信令,并以25 Mb / s的源数据速率运行。开发出的用于计算恢复时钟的RMS相位误差的数学模型与相位误差的实际测量结果非常吻合。与具有完美时隙时序的系统相比,在接收机中使用恢复的时隙时钟不会导致接收机灵敏度的显着降低。该系统在每个信息位接收到55个检测到的光子的光信号能量下,实现了10 / sup -6 /的误码率。

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