Efficient scheduling for synchronized demands in stochastic networks

Bin Li, Zai Shi, A. Eryilmaz
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引用次数: 1

Abstract

There is a rich theory and plethora of algorithms in the literature aiming at the efficient scheduling of stochastic networks. These solutions are predominantly designed under the assumption of traffic demands that are independently generated at network nodes, without any requirement for synchronization among their received services. In this work, we note that many applications, including cloud computing, virtual reality, gaming, autonomous vehicular networks and collaborative design, generate traffic simultaneously at multiple nodes when they arrive, with possibly non-uniform file sizes, whose performance relies on the synchronous completion of the traffic across the network. This calls for the design of new scheduling algorithms that aims to coordinate the service of packets of the same traffic across the network. Towards this end, we propose a novel scheduling algorithm that not only accounts for the heterogeneity of the file size distributions, but also works towards synchronizing the completion time of the same traffic stream across the network. This is achieved by employing two insights that emanate from key motivating examples we develop: (1) the normalization of traffic load with respect to the non-uniform file sizes; and (2) the incorporation of deviation of normalized loads across network nodes that serve synchronized traffic. After establishing the throughput-optimality of our algorithm in general stochastic networks, we perform extensive simulations under various (spanning both wired and wireless) settings to reveal the potential completion time gains that it yields over other throughput-optimal strategies designed under the assumption of independent traffic generation.
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随机网络中同步需求的有效调度
针对随机网络的高效调度,文献中有丰富的理论和大量的算法。这些解决方案主要是在假设网络节点独立产生流量需求的情况下设计的,它们所接收的服务之间不需要同步。在这项工作中,我们注意到许多应用,包括云计算、虚拟现实、游戏、自动驾驶汽车网络和协同设计,在到达多个节点时同时产生流量,文件大小可能不统一,其性能依赖于跨网络流量的同步完成。这就要求设计新的调度算法,以协调网络中相同流量的数据包的服务。为此,我们提出了一种新的调度算法,该算法不仅考虑了文件大小分布的异质性,而且还致力于同步整个网络中相同流量流的完成时间。这是通过采用来自我们开发的关键激励示例的两个见解来实现的:(1)相对于非均匀文件大小的流量负载的规范化;(2)考虑了服务于同步流量的网络节点间归一化负载的偏差。在建立了我们的算法在一般随机网络中的吞吐量最优性之后,我们在各种(跨越有线和无线)设置下进行了广泛的模拟,以揭示它比在独立流量生成假设下设计的其他吞吐量最优策略产生的潜在完成时间增益。
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