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Offset and Power Optimization for DCO-OFDM in Visible Light Communication Systems

机译:可见光通信系统中DCO-OFDM的偏移和功率优化

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Direct-current-biased optical orthogonal frequency division multiplexing (DCO-OFDM) is used in visible light communications (VLC) for high rate transmission. Due to the unipolarity of optical signals, a direct current (DC) offset along with proper clipping is adopted in DCO-OFDM. A high DC-offset causes a waste of power and a low DC-offset causes a severe clipping distortion. Thus, the DC-offset and information-carrying power shall be jointly optimized to balance clipping distortion and power consumption. We consider the offset and power optimization problem under the optical and/or electrical power constraints over flat and dispersive channels. In the flat case, we analytically characterize the optimal solution, based on which several important insights are provided. We also investigate the relation and impact of the two constraints, and propose efficient algorithms to obtain the optimal solution. In the dispersive case, we identify the scope of the optimal solution, and provide efficient algorithms to jointly optimize the offset and power. The optimality and superiority of the proposed methods are validated by numerical results.
机译:直流偏置光正交频分复用(DCO-OFDM)用于可见光通信(VLC)中以实现高速率传输。由于光信号的单极性,DCO-OFDM中采用了直流(DC)偏移以及适当的削波。高直流偏移会造成功率浪费,而低直流偏移会导致严重的削波失真。因此,必须共同优化直流偏移功率和信息承载功率,以平衡削波失真和功耗。我们考虑在平坦和分散通道上的光和/或电功率约束下的偏移和功率优化问题。在平坦的情况下,我们分析性地描述了最佳解决方案的特征,在此基础上提供了一些重要的见解。我们还研究了两个约束的关系和影响,并提出了有效的算法以获得最优解。在分散情况下,我们确定最佳解决方案的范围,并提供有效的算法来共同优化失调和功耗。数值结果验证了所提方法的最优性和优越性。

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