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Reliable communication over slow-fading channels under delay constraints.

机译:在延迟约束下,通过慢衰落信道进行可靠的通信。

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The throughput potential of multiple-input multiple-output (MIMO) channels in fading environments encourages researchers to create new space-time coding architectures without undue complexity. At the same time, the digital wireless communications demand requires careful investigation of fading phenomena under a variety of strongly related practical constraints. In this work we develop a new approach to low-complexity communications over slow flat-fading MIMO channels. Presently the available range of information-theoretic tools cannot fully accommodate the increasingly complicated fading channel models. We define a new fading channel performance measure which allows for the realistic information-theoretic treatment of practical communication systems that are subject to strict delay constraints.; The system we analyze is based on the Bell Labs layered space-time (BLAST) architecture when implemented with so-called horizontal coding (H-BLAST). Its general idea is to partition the data transmitted through the MIMO channel into several single-input single-output (SISO) channels which are called layers. Our proposed scheme differs from H-BLAST on two accounts. First, receiver complexity is reduced by having a fixed order for decoding the layers; second, the transmission rates and powers for the layers are allowed to differ between layers. Within this framework, the layer rates and powers are optimally designed to maximize the outage capacity, resulting in a Rate/Power-Tailored BLAST (RPT-BLAST). Comparing the analytically derived outage capacity of RPT-BLAST to the Monte-Carlo determined outage capacity of H-BLAST, it is found that their performances are similar; depending upon the scenario, either RPT-BLAST or H-BLAST may have a slightly larger outage capacity.; The existing approach to analyzing fading channels is based on the concept of outage capacity, determined by the probability that the channel cannot support a given rate, and it assumes that the codewords are infinitely long. An example of a slowly varying environment is the indoor wireless local area network. The concept of outage comes into play when the fading in such a system is approximated as quasistatic. On the other hand, a broad range of wireless communication systems are delay constrained, which signifies their sensitivity to the amount of time allotted for data transmission. (Abstract shortened by UMI.)
机译:在衰落环境中,多输入多输出(MIMO)通道的吞吐潜力鼓励研究人员创建新的时空编码架构,而又不会造成不必要的复杂性。同时,数字无线通信需求需要在各种与实际相关的严格约束下仔细研究衰落现象。在这项工作中,我们开发了一种通过慢速平坦衰落MIMO信道进行低复杂度通信的新方法。当前,可用的信息理论工具范围不能完全适应日益复杂的衰落信道模型。我们定义了一种新的衰落信道性能度量,它可以对受严格延迟约束的实际通信系统进行现实的信息论处理。当使用所谓的水平编码(H-BLAST)实施时,我们分析的系统基于Bell Labs分层时空(BLAST)架构。其一般思想是将通过MIMO通道传输的数据划分为几个称为层的单输入单输出(SISO)通道。我们提出的方案在两个方面与H-BLAST不同。首先,通过具有固定的层解码顺序来降低接收机的复杂度;第二,各层的传输速率和功率允许在各层之间不同。在此框架内,对层速率和功率进行了优化设计,以使中断容量最大化,从而产生了速率/功率定制的BLAST(RPT-BLAST)。将分析得出的RPT-BLAST的中断容量与Monte-Carlo确定的H-BLAST的中断容量进行比较,发现它们的性能是相似的。根据情况,RPT-BLAST或H-BLAST的中断容量可能会稍大。现有的分析衰落信道的方法是基于中断能力的概念,该概念由信道无法支持给定速率的概率确定,并且假设码字无限长。室内环境的变化缓慢是室内无线局域网的一个例子。当这种系统中的衰落近似为准静态时,中断的概念就会发挥作用。另一方面,大量的无线通信系统受到延迟的限制,这表明它们对分配给数据传输的时间量敏感。 (摘要由UMI缩短。)

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