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Adaptive Control of Out-of-Sequence Packet Arrival for Optimization of Bandwidth Aggregation of Heterogeneous Communication Links

机译:乱序包到达的自适应控制,用于优化异构通信链路的带宽聚合

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Multipath transmission of flows over heterogeneous communication channels faces numerous challenges in optimally utilizing combined communication resources for ubiquitous applications. One major issue is the out-of-sequence arrival of packets at receiver that commonly amplifies while distributing packets of a flow over multiple paths. These packets experience asymmetric path characteristics that results in diverse congestion states for ubiquitous traffic flows. This paper presents an adaptive mechanism for estimation of path suitability for a specific type of flow on the basis of end-to-end path delay statistics, packet drop and available bandwidth. The estimation process is used to develop path ranks for scheduling delay traffic on multiple paths with reduced probability of out-of-sequence arrival at the receiver. The proactive approach used in this scheme is computationally less expensive as compared to complex reordering of packets at the receiver. The results have shown robust performance of proposed mechanism in achieving acceptable quality-of-service levels during multipath transmission of flows with minimized out-of-sequence reception and reduced buffer occupancy.
机译:在异构通信信道上的流的多径传输在为普遍应用最佳地利用组合通信资源方面面临许多挑战。一个主要问题是数据包未按顺序到达接收器,这通常会放大,同时在多个路径上分配流数据包。这些数据包会经历非对称路径特征,从而导致无处不在的业务流出现各种拥塞状态。本文提出了一种自适应机制,可根据端到端路径延迟统计信息,数据包丢失和可用带宽来估计特定流类型的路径适用性。估计过程用于开发路径等级,以调度多条路径上的延迟流量,并降低乱序到达接收器的可能性。与在接收机处对分组进行复杂的重新排序相比,该方案中使用的主动方法在计算上更便宜。结果表明,所提出的机制在流的多径传输期间达到可接受的服务质量级别时具有强大的性能,同时具有最小的失序接收和减少的缓冲区占用率。

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