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Adaptive Input Traffic Prediction Scheme for Absolute and Proportional Delay Differentiated Services in Broadband Convergence Network

机译:宽带融合网络中绝对和比例时延差分服务的自适应输入业务量预测方案

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In this paper, an algorithm that provides absolute and proportional differentiation of packet delays is proposed with the objective of enhancing quality of service in future packet networks. It features an adaptive scheme that adjusts the target delay for every time slot to compensate the deviation from the target delay, which is caused by prediction error on the traffic to arrive at the next time slot It predicts the traffic to arrive at the beginning of a time slot and measures the actual arrived traffic at the end of the time slot The difference between them is utilized by the delay control operation for the next time slot to offset it Because the proposed algorithm compensates the prediction error continuously, it shows superior adaptability to bursty traffic and exponential traffic. Through simulations we demonstrate that the algorithm meets the quantitative delay bounds and is robust to traffic fluctuation in comparison with the conventional non-adaptive mechanism. The algorithm is implemented with VHDL on a Xilinx Spartan XC3S1500 FPGA, and the performance is verified under the test board based on the XPC860P CPU.
机译:在本文中,提出了一种提供分组延迟的绝对和比例差分的算法,目的是提高未来分组网络中的服务质量。它具有一种自适应方案,该方案可为每个时隙调整目标延迟,以补偿与目标延迟的偏差,这是由于流量到达下一个时隙的预测误差引起的。时隙并在时隙末尾测量实际到达的流量。延迟控制操作利用它们之间的差异来补偿下一个时隙。由于所提出的算法连续补偿预测误差,因此对突发性具有出色的适应性。流量和指数流量。通过仿真证明,与传统的非自适应机制相比,该算法满足定量时延界线,对流量波动具有鲁棒性。该算法在Xilinx Spartan XC3S1500 FPGA上使用VHDL实现,并在基于XPC860P CPU的测试板上验证了性能。

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