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Credit-based slot allocation for multimedia mobile ad hoc networks

机译:多媒体移动自组网的基于信用的时隙分配

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This paper studies resource management for multimedia mobile ad hoc networks (MANET). In particular, we focus on providing fair scheduling with quality-of-service (QoS) support for MANET. We consider two types of flows: guaranteed and best effort flows. The goal is to satisfy the QoS requirements of guaranteed flows and to provide global fairness for best effort flows. In this paper, a credit-based fair scheduling mechanism called credit-based slot allocation protocol (CSAP) is proposed. In CSAP, nodes are logically grouped into clusters, each with a scheduler. Each scheduler assigns time slots to nodes in its cluster based on the first tier algorithm. The node scheduled to send at the next time slot then in turn assigns the time slot to a relayed flow determined by the second-tier algorithm. Each multihop flow is treated as multiple single-hop flow segments. These segments are then correlated such that a downstream segment will not be allocated a slot unless the upstream segments have all been allocated. We evaluate the performance of CSAP by simulations. The results show that CSAP meets the QoS requirements of guaranteed flows, provides global fairness for best effort flows, and improves overall system throughput.
机译:本文研究多媒体移动自组织网络(MANET)的资源管理。特别是,我们专注于为MANET提供公平的调度以及服务质量(QoS)支持。我们考虑两种类型的流:保证流和尽力而为流。目标是满足保证流的QoS要求,并为尽力而为流提供全局公平性。本文提出了一种基于信用的公平调度机制,称为基于信用的时隙分配协议(CSAP)。在CSAP中,节点在逻辑上分为集群,每个集群都有一个调度程序。每个调度程序都根据第一层算法将时隙分配给其群集中的节点。然后,计划在下一个时隙发送的节点会将时隙分配给由第二层算法确定的中继流。每个多跳流被视为多个单跳流段。然后,将这些段关联起来,以便不会为下游段分配时隙,除非已经分配了所有上游段。我们通过仿真评估CSAP的性能。结果表明,CSAP满足保证流的QoS要求,为尽力而为流提供全局公平性,并提高了整体系统吞吐量。

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