首页> 外文期刊>IEEE Transactions on Information Theory >Joint Source and Channel Coding for MIMO Systems: Is it Better to be Robust or Quick?
【24h】

Joint Source and Channel Coding for MIMO Systems: Is it Better to be Robust or Quick?

机译:MIMO系统的联合源和信道编码:健壮还是快速更好?

获取原文
获取原文并翻译 | 示例
           

摘要

A framework is developed for optimizing the tradeoff between diversity, multiplexing, and delay in multiple-input multiple-output (MIMO) systems to minimize end-to-end distortion. The goal is to find the optimal balance between the increased data rate provided by antenna multiplexing, the reduction in transmission errors provided by antenna diversity and automatic repeat request (ARQ), and the delay introduced by ARQ. First, closed-form analytical results are developed to minimize end-to-end distortion of a vector quantizer concatenated with a space–time MIMO channel code in the high SNR regime. The minimization determines the optimal point on the diversity–multiplexing tradeoff curve. For large but finite SNR this optimal point is found via convex optimization, which is illustrated with an example of a practical joint source–channel code design. It is then shown that for MIMO systems with ARQ retransmission, sources without a delay constraint have distortion minimized by maximizing the ARQ window size. This results in a new multiplexing–diversity tradeoff region enhanced by ARQ. However, under a source delay constraint the problem formulation changes to account for delay distortion associated with random message arrival and random ARQ completion times. In this case, the simplifications associated with a high SNR assumption break down, and a dynamic programming formulation is required to capture the channel diversity–multiplexing tradeoff as well as the random arrival and retransmission dynamics. Results based on this formulation show that a delay-sensitive system obtains significant performance gains by adapting its operating point on the diversity–multiplexing–delay region to system dynamics.
机译:开发了一种框架,用于优化多输入多输出(MIMO)系统中分集,复用和延迟之间的折衷,以最小化端到端失真。目标是在天线多路复用提供的增加的数据速率,天线分集和自动重传请求(ARQ)提供的传输错误的减少以及ARQ引入的延迟之间找到最佳平衡。首先,开发了封闭形式的分析结果,以最大程度地减少在高SNR体制中与空时MIMO信道代码相连接的矢量量化器的端到端失真。最小化确定了分集复用折衷曲线上的最佳点。对于较大但有限的SNR,可通过凸优化找到最佳点,并以实际的联合源-通道代码设计为例进行说明。然后表明,对于具有ARQ重传的MIMO系统,没有延迟约束的源通过最大化ARQ窗口大小而使失真最小化。这导致了ARQ增强的新的多路复用-分集权衡区域。但是,在源延迟约束下,问题的表达方式会发生变化,以解决与随机消息到达和随机ARQ完成时间相关的延迟失真。在这种情况下,与高SNR假设有关的简化就失败了,需要动态规划公式来捕获信道分集-复用权衡以及随机到达和重传动态。根据这种表述得出的结果表明,对延迟敏感的系统通过将其在分集,多路复用和延迟区域上的工作点调整为系统动态,可以获得明显的性能提升。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号