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A novel trunk scheduling for concurrent multipath transfer in heterogeneous wireless networks

机译:一种异构无线网络中并发多路径传输的新型中继调度

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Concurrent multipath transfer (CMT) can improve data throughput, bandwidth resource utilization and system robustness. Whereas, CMT also leads to serious reordering problem, especially in heterogeneous wireless networks. Since more than one path are used, an efficient CMT scheduling algorithm is needed at the sender. For existing packet scheduling, packet's rate of entering the sender queue is usually faster than that of leaving the queue. Then the packet scheduled with the information of this moment has to wait in the sender queue, and will be transmitted into the network after a period of time. In this case, the scheduler is generally out of date. To solve this problem, we introduce trunk as the scheduling unit instead of packet. By estimating trunk's receiving time at the receiver, the trunk scheduling scheme is decided. Simulation results verify that the trunk scheduling algorithm outperforms existing packet scheduling algorithms in terms of throughput, average end to end delay, and average reorder delay.
机译:并行多路径传输(CMT)可以提高数据吞吐量,带宽资源利用率和系统健壮性。鉴于CMT还导致严重的重新排序问题,尤其是在异构无线网络中。由于使用了多个路径,因此在发送方需要一种有效的CMT调度算法。对于现有的数据包调度,数据包进入发送方队列的速率通常比离开队列的速率要快。然后,计划有此刻信息的数据包必须在发送者队列中等待,并且将在一段时间后发送到网络中。在这种情况下,调度程序通常已过时。为了解决这个问题,我们引入中继作为调度单元,而不是分组。通过估计中继器在接收器处的接收时间,可以确定中继器调度方案。仿真结果验证了中继线调度算法在吞吐量,平均端到端延迟和平均重排序延迟方面均优于现有的分组调度算法。

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