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Image Transmission using Variable M-QAM with Optimized Bit Power Allocation

机译:使用变量M-QAM具有优化位功率分配的图像传输

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In this paper, optimization of minimum mean square error for image transmission using a variable M-QAM system is proposed for improving both power and bandwidth efficiencies. Optimization is based on bit power allocation according to the importance of bits to the overall image quality. An iterative off-line algorithm is presented to find the optimum power allocated and modulation level to different bits. Our results show that a 16-QAM system using the proposed algorithm with optimized bit power allocation provides an improvement in power efficiency as measured by the average Eb/No of about 2dB over that using a conventional 16-QAM. However, the improvement increases significantly with the variable M-QAM system to about 6dB while improving the bandwidth efficiency by about 17% over the conventional 16-QAM system.
机译:在本文中,提出了使用变量M-QAM系统的图像传输最小平均误差的优化,以提高功率和带宽效率。优化基于比特功率分配根据比特对整体图像质量的重要性。提出了一种迭代的离线算法,以找到到不同位的最佳功率分配和调制级别。我们的结果表明,使用具有优化比特功率分配的所提出的算法的16-QAM系统提供了通过传统16-QAM的平均EB / No的平均EB / NO的功率效率的提高。然而,随变量M-QAM系统到约6dB的改善显着增加,同时通过传统的16-QAM系统将带宽效率提高约17%。

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