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Low-SNR Capacity of Parallel IM-DD Optical Wireless Channels

机译:并行IM-DD光学无线信道的低SN​​R容量

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摘要

The capacity of parallel intensity-modulation and direct-detection optical wireless channels with total average intensity and per-channel peak intensity constraints is studied. The optimal intensity allocation at low signal-to-noise ratio (SNR) is derived, leading to the capacity-achieving ON–OFF keying distribution. Interestingly, while activating the strongest channel is optimal if 1) the peak intensity is fixed, this is not the case if 2) the peak intensity is proportional to the average intensity. The minimum average optical intensity per bit is also studied, and is characterized for case 1) where it is achievable at low SNR. However, in case 2), the average optical intensity per bit grows indefinitely as SNR decreases, indicating that lower optical intensity per bit can be achieved at moderate SNR than low SNR.
机译:研究了具有总平均强度和每通道峰值强度约束的并行强度调制和直接检测光学无线信道的容量。得出了低信噪比(SNR)时的最佳强度分配,从而实现了容量实现的ON-OFF键控分布。有趣的是,如果1)峰值强度固定,则激活最强的通道是最佳的,但2)峰值强度与平均强度成正比,则不是这种情况。还研究了每位的最小平均光强度,并针对情况1)进行了表征,其中在低SNR时可以实现。但是,在情况2)中,随着SNR的降低,每比特的平均光强度会无限期地增长,这表明在中等SNR的情况下,与低SNR相比,每比特的光强度会更低。

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