Adaptive Rate Allocation Algorithm for Transmission of Multiple Embedded Bit Streams over Time-Varying Noisy Channels

Ahmad Hatam, A. Banihashemi
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Abstract

An efficient rate allocation algorithm for the progressive transmission of multiple images over time-varying noisy channels is proposed. The algorithm is initiated by the distortion optimal solution [1] for the first image and searches for the optimal rate-allocation for each subsequent image in the neighborhood of the solution for the previous image. Given the initial solution, the algorithm is linear-time in the number of transmitted packets per image and its rate allocation solution for each image can achieve a performance equal or very close to the distortion optimal solution for that image. Our simulations for the transmission of images, encoded by embedded source coders, over the binary symmetric channel (BSC) show that with very low complexity the proposed algorithm successfully adapts the channel code rates to the changes of the channel parameter.
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时变噪声信道中多嵌入比特流传输的自适应速率分配算法
提出了一种时变噪声信道中多图像累进传输的有效速率分配算法。该算法由第一幅图像的失真最优解[1]启动,并在前一幅图像解的邻域内搜索每个后续图像的最优速率分配。给定初始解,该算法在每张图像的传输数据包数量上是线性时间的,其对每张图像的速率分配解决方案可以实现等于或非常接近该图像的失真最优解决方案的性能。在二进制对称信道(BSC)上对嵌入式源编码器编码的图像传输进行了仿真,结果表明,该算法能以极低的复杂度成功地适应信道参数变化的信道码率。
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