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Reliable Transmission of Short Packets Through Queues and Noisy Channels Under Latency and Peak-Age Violation Guarantees

机译:通过延迟和峰值违规担保的队列和嘈杂渠道可靠地传输短数据包

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摘要

This paper investigates the probability that the delay and the peak-age of information exceed a desired threshold in a point-to-point communication system with short information packets. The packets are generated according to a stationary memoryless Bernoulli process, placed in a single-server queue and then transmitted over a wireless channel. A variable-length stop-feedback coding scheme-a general strategy that encompasses simple automatic repetition request (ARQ) and more sophisticated hybrid ARQ techniques as special cases-is used by the transmitter to convey the information packets to the receiver. By leveraging finite-blocklength results, the delay violation and the peak-age violation probabilities are characterized without resorting to approximations based on large-deviation theory as in previous literature. Numerical results illuminate the dependence of delay and peakage violation probability on system parameters such as the frame size and the undetected error probability, and on the chosen packet-management policy. The guidelines provided by our analysis are particularly useful for the design of low-latency ultra-reliable communication systems.
机译:本文调查了信息的延迟和峰值时代在具有短信息包的点对点通信系统中超过了期望的阈值。根据静止的内存Bernoulli处理生成分组,放置在单服务器队列中,然后通过无线信道发送。可变长度停止反馈编码方案 - 包括简单的自动重复请求(ARQ)和更复杂的混合ARQ技术作为特殊情况的一般策略 - 被发射器用于将信息包传送到接收器。通过利用有限块状的结果,延迟违规和峰值时代违规概率的特征在于,在不诉诸于以前的文献中的大偏差理论的情况下,不诉诸近似。数值结果照亮了延迟和巨大违规概率对系统参数的依赖性,例如帧大小和未检测到的误差概率,以及所选择的分组管理策略。我们的分析提供的指南对于低延迟超可靠通信系统的设计特别有用。

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