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Performance Evaluation of a Novel Converged Architecture for Digital-Video Transmission Over Optical Wireless Channels

机译:通过光学无线信道进行数字视频传输的新型融合架构的性能评估

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摘要

A robust channel coding architecture for multigigabit-per-second digital-video transmission over the optical wireless channel is introduced and evaluated. The proposed scheme combines low-density parity-check coding with channel interleaving to improve the transmission over turbulent temporally correlated optical wireless channels while satisfying real-time video delay constraints. Frame error rates of the presented code design are evaluated via simulation for intensity-modulation/direct-detection optical wireless links in both lognormal- and Rayleigh-fading channels. Results indicate that the performance of the proposed system is effective across a large range of atmospheric turbulence strengths and achieves significant temporal diversity in moderately long (10 ms) temporal correlation times while satisfying a 0.3-s real-time delay constraint. Moreover, the proposed design is shown to outperform the Reed–Solomon codes prevalent in the legacy fiber and wireless digital-television distribution systems.
机译:引入并评估了一种健壮的信道编码架构,用于通过光无线信道进行每秒数千兆位的数字视频传输。所提出的方案将低密度奇偶校验编码与信道交织相结合,以改善在湍流时间相关的光学无线信道上的传输,同时满足实时视频延迟约束。通过模拟对数正态和瑞利衰落信道中的强度调制/直接检测光学无线链路,可以评估所提出代码设计的帧错误率。结果表明,所提出的系统的性能在大范围的大气湍流强度上都是有效的,并且在适度的长(10 ms)时间相关时间内实现了显着的时间分集,同时满足了0.3s的实时延迟约束。而且,所提出的设计显示出优于传统光纤和无线数字电视分配系统中普遍使用的Reed-Solomon码。

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