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Distortion Estimation-Based Adaptive Power Allocation for Hybrid Digital–Analog Video Transmission

机译:混合数模视频传输的基于失真估计的自适应功率分配

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摘要

Hybrid digital-analog (HDA) video transmission schemes have shown advantages in avoiding the cliff effect. However, most current HDA schemes assume perfect transmission of the digital signal, which is hardly the case in practice. In this paper, we propose an adaptive recursive distortion estimate for the HDA system (ARDE-HDA), which recursively estimates the decoder-side distortion from the encoder and adaptively allocates the transmission power between the digital and analog signals in HDA. First, we derive the closed-form expression of a recursive distortion estimation (RDE) method, which does not require the digital part of the HDA output to be decoded perfectly, and both transmission error and superposition process of digital and analog parts are taken into consideration. Then, based on the deduced RDE model, an adaptive power allocation is proposed for the digital and analog parts to minimize the decoder-side distortion. Finally, simulation results are presented, which show the accuracy of the proposed RDE model and the ARDE-HDA method. Our method can achieve an average of 4.10 dB gain over existing HDA methods and 15.14-dB gain over the Softcast method in terms of the peak signal-to-noise ratio.
机译:混合数模(HDA)视频传输方案已显示出避免悬崖效应的优势。但是,大多数当前的HDA方案都假定数字信号的完美传输,而实际情况并非如此。在本文中,我们提出了一种适用于HDA系统的自适应递归失真估计(ARDE-HDA),它可以从编码器中递归估计解码器端的失真,并自适应地分配HDA中数字信号和模拟信号之间的传输功率。首先,我们推导了一种递归失真估计(RDE)方法的闭式表达式,该方法不需要将HDA输出的数字部分完美地解码,并且可以考虑传输误差以及数字部分和模拟部分的叠加过程。考虑。然后,基于推导的RDE模型,为数字和模拟部分提出了自适应功率分配,以最大程度地减少解码器侧的失真。最后,给出了仿真结果,表明所提出的RDE模型和ARDE-HDA方法的准确性。就峰值信噪比而言,我们的方法可以比现有的HDA方法平均获得4.10 dB的增益,而与Softcast方法相比则可以达到15.14-dB的增益。

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