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基于非液体流模型的可用带宽测量精度
引用本文:赵卫虎,孟相如,张亚普,麻海圆.基于非液体流模型的可用带宽测量精度[J].计算机应用,2011,31(2):320-323.
作者姓名:赵卫虎  孟相如  张亚普  麻海圆
作者单位:1. 空军工程大学电讯工程学院2.
基金项目:陕西省自然科学基金资助项目
摘    要:现有的可用带宽测量技术大多基于单跳链路和液体流模型,在突发背景流及多跳链路下测量精度较低。因此,分析了更符合网络实际的非液体流模型,提出了一种参数设置方法,减小了探测包长、探测速率、背景流速率及背景流包长等因素对测量精度的影响。在此基础上,改进了探测包对结构,该结构结合生存时间(TTL)值设置减小了探测包对间隔的测量误差,增强了带宽测量算法在多跳链路环境下的健壮性。仿真表明,基于非液体流模型的参数设置方法及改进的包对结构提高了可用带宽测量精度。

关 键 词:可用带宽    非液体流模型    多跳链路    背景流量    测量精度
收稿时间:2010-07-29
修稿时间:2010-09-27

Available bandwidth measurement accuracy based on non-fluid model
ZHAO Wei-hu,MENG Xiang-ru,ZHANG Ya-pu,MA Hai-yuan.Available bandwidth measurement accuracy based on non-fluid model[J].journal of Computer Applications,2011,31(2):320-323.
Authors:ZHAO Wei-hu  MENG Xiang-ru  ZHANG Ya-pu  MA Hai-yuan
Affiliation:(Telecommunication Engineering Institute,Air Force Engineering University,Xi’an Shaanxi 710077,China)
Abstract:Most of the available bandwidth measurement technologies are based on single hop and the fluid model, which cannot get high accuracy in the situation of multi hop path and bursty cross traffic. Therefore, a non fluid model was analyzed and a method of parameters setting was introduced to reduce the impacts of packet size, cross traffic rate, probe traffic rate on measurement accuracy. A developed structure of packet pair, combined with setting the Time To Live (TTL) value, reduced the measurement error of packet pair spacings, which improved the robustness of the method in the context of a multi hop path. The NS 2 simulation results show that the measurement accuracy is improved by the parameter setting method based on non fluid model and improved packet structure.
Keywords:available bandwidth                                                                                                                        non-fluid model                                                                                                                        multi-hop path                                                                                                                        cross traffic                                                                                                                        measurement accuracy
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