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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Delay-Sensitive Communication Over Fading Channels: Queueing Behavior and Code Parameter Selection
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Delay-Sensitive Communication Over Fading Channels: Queueing Behavior and Code Parameter Selection

机译:衰落信道上的时延敏感通信:排队行为和代码参数选择

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摘要

This paper examines the queueing performance of communication systems that transmit encoded data over unreliable channels. A fading formulation suitable for wireless mobile applications is considered, where errors are caused by a discrete channel with correlated behavior over time. For carefully selected channel models and arrival processes, a tractable Markov structure composed of queue length and channel state is identified. This facilitates the analysis of the stationary behavior of the system, leading to evaluation criteria such as bounds on the probability of the queue exceeding a threshold. Specifically, this paper focuses on system models with scalable arrival profiles, which are based on Poisson processes, and finite-state channels with memory. These assumptions permit the rigorous comparison of system performance for codes with arbitrary block lengths and code rates. Based on the resulting characterizations, it is possible to select the best code parameters for delay-sensitive applications over various channels. Random codes and BCH codes are then employed as a means to study the relationship between code parameter selection and the queueing performance of point-to-point data links. The methodology introduced herein offers a new perspective on the joint queueing–coding analysis of finite-state channels with memory, and it is supported by numerical simulations.
机译:本文研究了在不可靠的信道上传输编码数据的通信系统的排队性能。考虑了一种适合于无线移动应用的衰落公式,其中误差是由离散信道引起的,其行为随时间而变。对于精心选择的通道模型和到达过程,确定了由队列长度和通道状态组成的易处理的马尔可夫结构。这有助于分析系统的静态行为,从而导致评估标准,例如队列超过阈值的概率的界限。具体来说,本文重点介绍基于Poisson流程和具有内存的有限状态通道,具有可扩展到达配置文件的系统模型。这些假设允许对具有任意块长度和代码速率的代码进行严格的系统性能比较。根据所得的特性,可以为各种通道上的延迟敏感型应用选择最佳的代码参数。然后采用随机码和BCH码作为研究码参数选择与点对点数据链路排队性能之间关系的手段。本文介绍的方法为带存储器的有限状态通道的联合排队编码分析提供了新的视角,并得到了数值模拟的支持。

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