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Joint Source, Channel, and Space-Time Coding of Progressive Bitstream in MIMO Channels

机译:MIMO通道中渐进比特流的联合源,通道和时空编码

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摘要

The optimization of joint source and channel coding for a sequence of numerous progressive packets has been a challenging problem. Further, the problem becomes more complicated if the space-time coding is also involved with the optimization in a multiple-input multiple-output (MIMO) system. This is because the number of ways of jointly assigning channel codes and space-time codes to progressive packets is much larger than that of solely assigning channel codes to the packets. To our knowledge, there is no complete and feasible solution for the optimization of joint source, channel, and space-time coding of progressive packets. This paper applies a parametric approach to address such a highly nonlinear optimization problem in MIMO systems. We use the parametric methodology and derive some relevant properties, which are exploited to propose an efficient optimization method where the joint assignment of channel codes and space-time codes to the packets can be optimized in a packet-by-packet manner. As a result, the computational complexity of the proposed method linearly increases in the number of packets, whereas that of the exhaustive search exponentially increases in the number of packets. The numerical results show that the proposed method significantly improves the peak-signal-to-noise ratio performance of the conventional rate-based optimal solution in a MIMO system.
机译:为一系列逐次逐行数据包的关节源和信道编码的优化是一个具有挑战性的问题。此外,如果空时编码也涉及多输入多输出(MIMO)系统的优化,则该问题变得更加复杂。这是因为将信道代码和时空码到逐行分组的共同分配信道代码和时空码的数量远大于单独为分组分配信道码的方式。据我们所知,对逐行数据包的关节源,通道和时空编码的优化没有完整和可行的解决方案。本文应用参数方法来解决MIMO系统中的这种高度非线性优化问题。我们使用参数化方法并导出一些相关属性,这些属性被利用以提出一种有效的优化方法,其中可以以分组的方式优化对分组的信道代码和时空码的关节分配。结果,所提出的方法的计算复杂性在分组的数量中线性增加,而穷举搜索的穷举性地增加了分组的数量。数值结果表明,该方法显着提高了MIMO系统中传统速率的最佳解决方案的峰值信噪比性能。

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