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首页> 外文期刊>Communications Letters, IEEE >High Bit Rate Pulse Position Modulation Signal Generation Based on Rare-Earth-Doped Crystals
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High Bit Rate Pulse Position Modulation Signal Generation Based on Rare-Earth-Doped Crystals

机译:基于稀土掺杂晶体的高比特率脉冲位置调制信号生成

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摘要

A novel approach for generating a high bit rate m-ary pulse position modulation (PPM) signal is proposed. This approach is implemented by using two temporally overlapping linear frequency chirps (TOLFC) and multiple probe pulses interact with rare-Earth-doped crystal (REIC). By simply adjusting the start frequency of the probe pulse, the time interval of compressed pulse in the PPM signal was controlled. The relationship between the time interval of compressed pulse and the start frequency shift of probe pulse is theoretically analyzed and verified by simulation. In the last part, a simulation is performed, which shows a 4-PPM signal at a bit rate of 10 Gbit/s by using the aforementioned method.
机译:提出了一种用于生成高比特率的三进制脉冲位置调制(PPM)信号的新颖方法。该方法通过使用两个时间重叠的线性频率线性调频(TOLFC)来实现,并且多个探测脉冲与稀土掺杂晶体(REIC)相互作用。通过简单地调整探测脉冲的开始频率,可以控制PPM信号中压缩脉冲的时间间隔。从理论上分析和验证了压缩脉冲的时间间隔与探测脉冲的起始频率偏移之间的关系。在最后一部分中,进行了仿真,该仿真通过使用上述方法以10 Gbit / s的比特率显示了4-PPM信号。

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