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首页> 外文期刊>Networking, IEEE/ACM Transactions on >Scheduling in Networks With Time-Varying Channels and Reconfiguration Delay
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Scheduling in Networks With Time-Varying Channels and Reconfiguration Delay

机译:具有时变信道和重配置延迟的网络中的调度

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摘要

We consider the optimal control problem for networks subjected to time-varying channels, reconfiguration delays, and interference constraints. We show that the simultaneous presence of time-varying channels and reconfiguration delays significantly reduces the system stability region and changes the structure of optimal policies. We first consider memoryless channel processes and characterize the stability region in closed form. We prove that a frame-based Max-Weight scheduling algorithm that sets frame durations dynamically, as a function of the current queue lengths and average channel gains, is throughput-optimal. Next, we consider arbitrary Markov-modulated channel processes and show that memory in the channel processes can be exploited to improve the stability region. We develop a novel approach to characterizing the stability region of such systems using state-action frequencies, which are stationary solutions to a Markov Decision Process (MDP) formulation. Moreover, we develop a dynamic control policy using the state-action frequencies and variable frames whose lengths are functions of queue sizes and show that it is throughput-optimal. The frame-based dynamic control (FBDC) policy is applicable to a broad class of network control systems, with or without reconfiguration delays, and provides a new framework for developing throughput-optimal network control policies using state-action frequencies. Finally, we propose Myopic policies that are easy to implement and have better delay properties as compared to the FBDC policy.
机译:对于具有时变信道,重新配置延迟和干扰约束的网络,我们考虑了最优控制问题。我们表明,时变通道和重新配置延迟的同时存在显着降低了系统稳定性区域并改变了最佳策略的结构。我们首先考虑无记忆通道过程,并以封闭形式表征稳定性区域。我们证明了基于帧的最大权重调度算法(根据当前队列长度和平均信道增益动态设置帧持续时间)是吞吐量最佳的。接下来,我们考虑任意马尔可夫调制通道过程,并表明可以利用通道过程中的内存来改善稳定性区域。我们开发了一种新颖的方法来使用状态作用频率来表征此类系统的稳定区域,这是马尔可夫决策过程(MDP)公式的固定解。此外,我们使用状态-动作频率和可变帧(其长度是队列大小的函数)来开发动态控制策略,并表明它是吞吐量最佳的。基于帧的动态控制(FBDC)策略适用于具有或不具有重新配置延迟的广泛的网络控制系统,并且为使用状态作用频率开发吞吐量最优的网络控制策略提供了新的框架。最后,我们提出了与FBDC策略相比易于实施且延迟特性更好的近视策略。

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