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Power-distortion optimization for wireless image/video SoftCast by transform coefficients energy modeling with adaptive chunk division

机译:通过自适应块分割的变换系数能量建模,无线图像/视频软播的电力失真优化

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Traditional communication systems usually suffer from the threshold effect when channel signal-to-noise ratio (CSNR) fluctuates unpredictably in wireless and mobile scenarios. The SoftCast scheme, however, provides graceful quality transition in wide CSNR range. In SoftCast, input image is decorrelated by a transform and modulated directly to a dense constellation for transmission, leaving out the conventional quantization, entropy coding and channel coding. A key point of SoftCast is that the transmission power needs to be allocated among the transform coefficients unequally, according to the energy of coefficients. Importantly, the energy diversity used to guide power allocation should be shared between the sender and the receiver for correct decoding. This paper addresses the power distortion optimization problem, introducing a new adaptive chunk division scheme to describe the energy diversity among coefficients. A concrete algorithm is developed to determine the chunk boundaries that achieve optimal transmission power usage. Experimental results show that the proposed scheme can improve the performance of the original SoftCast by 4∼8dB using a smaller number of chunks.
机译:传统的通信系统通常从阈值效应遭受当信道信噪比(CSNR)在无线和移动场景不可预测地波动。然而,SoStcass方案在宽CSNR范围内提供优雅的质量转换。在ScastCast中,输入图像由变换去相关并直接调制到密集的星座以进行传输,省略传统量化,熵编码和信道编码。根据系数的能量,您需要在变换系数之间分配传输功率的关键点,根据系数的能量,需要在变换系数之间分配。重要的是,用于指导电力分配的能量分集应在发件人和接收器之间共享,以进行正确的解码。本文解决了功率失真优化问题,引入了一种新的自适应块分割方案来描述系数之间的能量分集。开发了一种具体算法以确定实现最佳传输功率使用的块边界。实验结果表明,该方案可以使用较少数量的块提高4〜8dB的原始软播的性能。

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