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Capacity Bounds for Parallel Optical Wireless Channels

机译:并行光学无线信道的容量限制

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摘要

A system consisting of parallel optical wireless channels with a total average intensity constraint is studied. Capacity upper and lower bounds for this system are derived. Under perfect channel-state information at the transmitter (CSIT), the bounds have to be optimized with respect to the power allocation over the parallel channels. The optimization of the lower bound is non-convex, however, the KKT conditions can be used to find a list of possible solutions one of which is optimal. The optimal solution can then be found by an exhaustive search algorithm, which is computationally expensive. To overcome this, we propose low-complexity power allocation algorithms which are nearly optimal. The optimized capacity lower bound nearly coincides with the capacity at high SNR. Without CSIT, our capacity bounds lead to upper and lower bounds on the outage probability. The outage probability bounds meet at high SNR. The system with average and peak intensity constraints is also discussed.
机译:研究了由具有总平均强度约束的并行光学无线信道组成的系统。得出该系统的容量上限和下限。在发射机(CSIT)处具有完美的信道状态信息的情况下,必须针对并行信道上的功率分配来优化边界。下界的优化是非凸的,但是,可以使用KKT条件来找到可能的解决方案列表,其中一个是最佳的。然后可以通过穷举搜索算法找到最佳解决方案,这在计算上是昂贵的。为了克服这个问题,我们提出了几乎是最优的低复杂度功率分配算法。优化的容量下限几乎与高SNR时的容量一致。没有CSIT,我们的能力极限将导致中断概率的上限和下限。中断概率边界在高SNR时满足。还讨论了具有平均和峰值强度约束的系统。

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