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首页> 外文期刊>IEEE transactions on wireless communications >Distortion-Power Tradeoffs in Quasi-Stationary Source Transmission Over Delay and Buffer Limited Block Fading Channels
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Distortion-Power Tradeoffs in Quasi-Stationary Source Transmission Over Delay and Buffer Limited Block Fading Channels

机译:延迟和缓冲区受限块衰落通道上的准平稳源传输中的失真功率折衷

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This paper investigates distortion-power tradeoffs in transmission of quasi-stationary sources over delay and buffer limited block fading channels by studying encoder and decoder buffering techniques to smooth out the source and channel variations. Four source and channel coding schemes that consider buffer and power constraints are presented to minimize the reconstructed source distortion. The first one is a high performance scheme, which benefits from optimized source and channel rate adaptation. In the second scheme, the channel coding rate is fixed and optimized along with transmission power with respect to channel and source variations; hence this scheme enjoys simplicity of implementation. The two last schemes have fixed transmission power with optimized adaptive or fixed channel coding rate. For all the proposed schemes, closed form solutions for mean distortion, optimized rate, and power are provided and in the high SNR regime, the mean distortion exponent and the asymptotic mean power gains are derived. The proposed schemes with buffering exploit the diversity due to source and channel variations. Specifically, when the buffer size is limited, fixed channel rate adaptive power scheme outperforms an adaptive rate fixed power scheme. Furthermore, analytical and numerical results demonstrate that with limited buffer size, the system performance in terms of reconstructed signal SNR saturates as transmission power increases, suggesting that appropriate buffer size selection is important to achieve a desired reconstruction quality.
机译:本文通过研究编码器和解码器缓冲技术来平滑源和通道的变化,研究在延迟和缓冲区受限的块衰落信道上准静态源的传输中的失真功率折衷。提出了考虑缓冲器和功率约束的四种源和信道编码方案,以最大程度地减少重构的源失真。第一个是高性能方案,它受益于优化的源和信道速率适配。在第二种方案中,信道编码率是固定的,并且相对于信道和源的变化与发射功率一起被优化。因此,该方案实现简单。后两个方案具有固定的发射功率和最佳的自适应或固定的信道编码率。对于所有提出的方案,均提供了平均失真,优化速率和功率的闭式解,并且在高SNR体制中,得出了平均失真指数和渐进平均功率增益。带有缓冲的提议方案利用了源和信道变化引起的多样性。具体地,当缓冲器大小受到限制时,固定信道速率自适应功率方案优于自适应速率固定功率方案。此外,分析和数值结果表明,在有限的缓冲区大小下,就重构信号SNR而言,系统性能会随着传输功率的增加而饱和,这表明适当的缓冲区大小选择对于实现所需的重构质量非常重要。

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