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FlowTrace: Maximizing the Service Payoff of Heterogeneous Communications Networks

机译:FlowTrace:最大化异构通信网络的服务支付

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Massive Internet of Things devices with rapidly growing traffic make heterogeneous communications network a commercial infrastructure. As a critical network metric that represents the value created by the network, the service payoff of the network is positively correlated with the network throughput only when the quality of service (QoS) delivered to data-flows is guaranteed. To maximize the service payoff of the network, we propose a so-called FlowTrace as an QoS guarantee scheme. We first model the upper bound of the service payoff in a network as the maximum posterior service payoff (MPSP). To facilitate online bandwidth allocation and approximate the upper bound of the service payoff, we formulate a dynamic weight-based online bandwidth allocation (DWOBA) problem by designing dynamic weight as the flow metric. To relieve the computational pressure in the centralized network controller and the following bottleneck effect, we then decompose the DWOBA problem to a two-step DWOBA problem. Moreover, we propose a semi-centralized bandwidth allocation algorithm based on parallel edge computing for the two-step DWOBA problem. Simulation results demonstrate that the proposed FlowTrace outperforms prevalent online methods with a 3 similar to 10x service payoff improvement under heavy traffic load and the optimization result reaches 70% of the MPSP.
机译:具有迅速增长的交通的大规模信息设备使异质通信网络成为商业基础设施。作为表示由网络创建的值的关键网络度量,仅当提供给数据流的服务质量(QoS)时,网络的服务支付与网络吞吐量呈正相关。为了最大限度地提高网络的服务收益,我们将一个所谓的流浪局提出作为QoS保证方案。我们首先将网络中服务收益的上限模拟为最大后期服务收益(MPSP)。为了便于在线带宽分配和近似服务收益的上限,我们通过设计动态权重作为流量度量来制定动态权重的在线带宽分配(DWOBA)问题。为了减轻集中式网络控制器中的计算压力和以下瓶颈效果,我们将DWOBA问题分解为两步DWOBA问题。此外,我们提出了一种基于两步DWOBA问题的并联边缘计算的半集中式带宽分配算法。仿真结果表明,所提出的流浪局优于普遍的在线方法,其在繁忙的交通负荷下类似于10x服务退款改进,优化结果达到MPSP的70%。

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