SACK+/CHOKe+:卫星网络中效率与公平的权衡

Chengbo Jiao, Ruiyu Dou, Julong Lan
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引用次数: 0

摘要

使卫星系统成为功能齐全的互联网路由器具有挑战性,因为卫星通信网络的特性在几个重要方面与大多数常见的互联网链路技术不匹配。在某些错误条件下,“单个窗口内的多个段丢失”经常发生,传统的选择性确认(SACK)实现可能会迫使TCP发送方重新传输已经被接收方成功接收的数据包。本文提出了一种防止卫星通信网络中不必要的重传的SACK+实现方案。另一方面,为了给共享拥塞路由器出站链路的n个流中的每个流提供公平的带宽分配,并克服大容量源数量较少时的低效率,我们提出了CHOKe+(响应流选择并保持,无响应流选择并杀死+)作为卫星通信网络中的公平排队策略。我们通过NS2模拟表明,SACK+/CHOKe+的实现在“效率”和“公平”之间取得了很好的平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SACK+/CHOKe+: making a tradeoff between Efficiency and Fairness in Satellite Networks
Making a satellite system a fully functional Internet router has challenges because the characteristics of satellite communication networks are mismatched to most common Internet link technologies in several important ways. Under some error conditions, "multiple segment losses within a single window" happens frequently and traditional selective acknowledgment (SACK) implementation may force the TCP sender to retransmit packets that have already been received successfully by the receiver. This paper puts forward a proposed SACK+ implementation to prevent unwanted retransmission in satellite communication networks. On the other hand, in order to provide a fair bandwidth allocation to each of n flows that share the outgoing link of a congested router and to overcome low efficiency when the number of high-volume sources is small, we propose CHOKe+ (choose and keep for responsive flows, choose and kill for unresponsive flows+) as the fair queuing policy in satellite communication networks. We show that the proposed implementation of SACK+/CHOKe+ makes a good tradeoff between "efficiency" and "fairness" by NS2 simulations.
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