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An Unequal Modulation Scheme for the Transmission of Compressed Multimedia Data over Adaptive MIMO-OFDM Systems

机译:通过自适应MIMO-OFDM系统传输压缩多媒体数据的不等调制方案

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摘要

Modern video/image source coders employ data compression techniques which encode information that are not equally important. Transform based or subband coders, compress data into their respective low-frequency and high-frequency components. In wireless/mobile communication systems, data representing the low-frequency components are more sensitive to the time-varying nature of channel conditions and propagation environments. To deal with this problem, we propose an optimum transceiver structure for a combined source-modulation coded MIMO-OFDM system with adaptive eigen-beamforming. Using an unequal adaptive modulator, we maximize the channel-to-noise ratio (CNR) based on a lookup matrix-adaptive bit and power allocation (LM-ABPA) scheme to sort and allocate subcarriers with the highest SNR to the low-frequency components of the compressed data, and adjusting the signal constellation/modulation type respectively. In comparison to other transmission systems, simulation results based on the application of compressed images showed that the proposed unequal adaptive modulation scheme achieves significant performance gains under a constant data rate load
机译:现代的视频/图像源编码器采用数据压缩技术,该技术对同等重要的信息进行编码。基于变换的或子带编码器,将数据压缩为它们各自的低频和高频分量。在无线/移动通信系统中,代表低频分量的数据对信道条件和传播环境的时变性质更为敏感。为了解决这个问题,我们为具有自适应特征波束形成的组合源调制编码MIMO-OFDM系统提出了一种最佳的收发器结构。使用不相等的自适应调制器,我们基于查找矩阵自适应位和功率分配(LM-ABPA)方案,将信噪比最高的子载波分配给低频分量,并将信道噪声比(CNR)最大化。压缩数据,并分别调整信号星座/调制类型。与其他传输系统相比,基于压缩图像的仿真结果表明,所提出的不等自适应调制方案在恒定数据速率负载下获得了显着的性能提升。

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