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首页> 外文期刊>Selected Areas in Communications, IEEE Journal on >On-Off Keying Communication Over Optical Channels With Crosstalk
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On-Off Keying Communication Over Optical Channels With Crosstalk

机译:具有串扰的光通道上的开关键控通信

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摘要

We investigate the fundamental limits of communication over optical on-off-keying channels with crosstalk, where a light pulse may span over multiple time slots or spatial pixels, and the receiver is equipped with single-photon detectors. First, we analyze achievable rates of communication over such channels, and observe that increasing transmission power (expected number of photons emitted per slot or pixel) does not necessarily lead to higher rates. Under simple but reasonable models, the highest rates are often achieved in a low-photon regime, with an average of 3 to 7 photons received in each slot or pixel. We further characterize the tradeoff between information rate and photon efficiency (in terms of the expected number of bits transmitted per photon) in the presence of crosstalk. Finally, we develop guidelines for slot length and pixel size selection for different application scenarios. Our analysis reveals that optimum optical-communication systems do not minimize the level of crosstalk.
机译:我们研究了具有串扰的光学开关键控通道上的通信的基本限制,其中光脉冲可能跨越多个时隙或空间像素,并且接收器配备有单光子检测器。首先,我们分析了通过此类通道可实现的通信速率,并观察到传输功率的增加(每个插槽或像素发射的光子的预期数量)并不一定会导致更高的速率。在简单但合理的模型下,通常在低光子状态下可获得最高速率,每个插槽或像素平均接收3至7个光子。我们进一步描述了在存在串扰的情况下,信息速率和光子效率(根据每个光子传输的预期位数)之间的权衡。最后,我们针对不同的应用场景制定了插槽长度和像素尺寸选择的准则。我们的分析表明,最佳的光通信系统不会使串扰水平最小化。

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