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Single- and Multiple-Antenna Constellations for Communication Over Unknown Frequency-Selective Fading Channels

机译:在未知的选频衰落信道上进行通信的单天线和多天线星座

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Data transmission through frequency-selective block fading channels is considered in the case where neither the transmitter nor the receiver has any knowledge of the channel coefficients. Standard code design approaches for this scenario take channel uncertainty at the receiver into account by splitting the available channel coherence time into a part dedicated to training symbols utilized for channel estimation and a second part using an error-control coding scheme that is designed without channel uncertainty in mind. In contrast, in this correspondence joint codes are designed that are optimized for communication over the unknown channel and operate over the full coherence time. Using an approximation of the union bound on codeword error probability as design criterion, codes based on general complex-valued symbols are obtained with a gradient search optimization technique. Numerical examples for both single antenna as well as multiple-antenna systems illustrate that significant improvement over training-based schemes can be obtained.
机译:在发射机和接收机都不了解信道系数的情况下,考虑通过频率选择块衰落信道进行数据传输。针对这种情况的标准代码设计方法通过将可用信道相干时间分为专用于训练用于信道估计的训练符号的部分和第二部分(使用设计为无信道不确定性的差错控制编码方案)来考虑接收机处的信道不确定性心里。相反,在该对应关系中,设计了联合代码,该联合代码针对在未知信道上的通信进行了优化,并在整个相干时间内工作。使用码字错误概率上的并集的近似值作为设计标准,使用梯度搜索优化技术获得基于一般复数值符号的代码。单个天线以及多个天线系统的数值示例说明,与基于训练的方案相比,可以获得明显的改进。

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