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Providing differentiated service to TCP flows over bandwidth on demand geostationary satellite networks

机译:在需求地静止卫星网络上通过带宽提供差异化​​服务在带宽上过度流动

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The elasticity of transmission control protocol (TCP) traffic complicates attempts to provide performance guarantees to TCP flows. The existence of different types of networks and environments on the connections' paths only aggravates this problem. In this paper, simulation is the primary means for investigating the specific problem in the context of bandwidth on demand (BoD) geostationary satellite networks. Proposed transport-layer options and mechanisms for TCP performance enhancement, studied in the single connection case or without taking into account the media access control (MAC)-shared nature of the satellite link, are evaluated within a BoD-aware satellite simulation environment. Available capabilities at MAC layer, enabling the provision of differentiated service to TCP flows, are demonstrated and the conditions under which they perform efficiently are investigated. The BoD scheduling algorithm and the policy regarding spare capacity distribution are two MAC-layer mechanisms that appear to be complementary in this context; the former is effective at high levels of traffic load, whereas the latter drives the differentiation at low traffic load. When coupled with transport layer mechanisms they can form distinct bearer services over the satellite network that increase the differentiation robustness against the TCP bias against connections with long round-trip times. We also explore the use of analytical, fixed-point methods to predict the performance at transport level and link level. The applicability of the approach is mainly limited by the lack of analytical models accounting for prioritization mechanisms at the MAC layer and the nonuniform distribution of traffic load among satellite terminals.
机译:传输控制协议(TCP)业务的弹性使得尝试为TCP流提供性能保证。连接路径上的不同类型的网络和环境的存在只会加重此问题。在本文中,仿真是在随需需求(BOD)地球静态卫星网络的带宽背景下调查特定问题的主要方法。在单个连接案例中研究或者在没有考虑到卫星链路的媒体访问控制(MAC)的媒体访问控制(MAC)的性质,所提出的TCP性能增强机制在BOD感知卫星仿真环境中进行评估。在MAC层的可用功能,使得能够向TCP流提供差异化​​服务,并调查它们有效地执行的条件。 BOD调度算法和关于备用容量分布的策略是在此上下文中似乎在互补的两个MAC层机制;前者在高水平的交通负荷下有效,而后者在低交通负荷下驱动差异。当与传输层机构耦合时,它们可以通过卫星网络形成不同的承载服务,这些卫星网络可以增加与长时间往返时间的连接的TCP偏差的差异稳健性。我们还探讨了使用分析,定点方法来预测运输水平和链路水平的性能。该方法的适用性主要受到在MAC层的优先级机制的分析模型以及卫星终端之间的交通负荷的不均匀分布的限制。

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