An Erasure Queue-Channel with Feedback: Optimal Transmission Control to Maximize Capacity

K. Varma, K. Jagannathan
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引用次数: 2

Abstract

A queue-channel is a model that captures waiting time-dependent degradation of information bits—a scenario motivated by quantum communications and delay-sensitive streaming. Recent work has characterised the capacity of the erasure queue-channel [1], and other noise models encountered in quantum communications. In this paper, we study an erasure queue-channel with feedback, and ask after the optimal transmission strategy to minimize waiting-induced erasures. Specifically, we assume that instantaneous feedback of queue-length (or of the queue-channel output) is available at the transmitter, which can modulate the rate of Poisson transmissions into the queue-channel. We pose an optimal control problem using HJB-style equations to maximize the information capacity, when the transmitter can choose from a bounded set of transmission rates. We show (under a numerically verifiable condition) that the optimal transmission policy is a single-threshold policy of the bang-bang type. In other words, transmitting at the maximum (minimum) possible rate when the queue is below (above) a threshold, maximizes the information capacity of the erasure queue-channel with feedback.
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带反馈的擦除队列-信道:容量最大化的最优传输控制
队列通道是一种模型,它捕获与等待时间相关的信息位退化——这是一种由量子通信和延迟敏感流驱动的场景。最近的工作描述了擦除队列信道的容量[1],以及量子通信中遇到的其他噪声模型。本文研究了一种带反馈的擦除队列信道,并探讨了最小化等待引起的擦除的最优传输策略。具体地说,我们假设在发送端可以获得队列长度(或队列信道输出)的瞬时反馈,这可以调制进入队列信道的泊松传输速率。当发射机可以从一组有界的传输速率中进行选择时,我们提出了一个利用hjb型方程使信息容量最大化的最优控制问题。我们证明(在数值可验证的条件下)最优传输策略是bang-bang型的单阈值策略。换句话说,当队列低于(高于)阈值时,以最大(最小)可能的速率传输,可以最大化带有反馈的擦除队列信道的信息容量。
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