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TERSE : a unified end-to-end traffic control mechanism to enable elastic, delay adaptive, and rate adaptive services

机译:TERSE:统一的端到端流量控制机制,可启用弹性,延迟自适应和速率自适应服务

摘要

This paper puts forward an end-to-end traffic control solution, which we refer to as TCP-Elastic Real-time SErvice (TERSE). TERSE provides a unified end-to-end traffic control protocol that enables Non-Real-time Elastic (NRE) service (i.e., the same as the one under the TCP control), Real-time Delay Adaptive (RDA) service, and Real-time Rate Adaptive (RRA) service. A specific service is enabled by properly setting a single parameter in the protocol. TERSE is underpinned by a sound design methodology. While having its roots in a wellknown utility-based optimization approach, this methodology successfully addresses its limitations. It leads to a unified traffic control protocol, which has several provable properties, including fairness, convergence, and stability. The protocol is implemented in LINUX-based systems. The cross-pacific testing of this protocol shows that it can achieve more than 1.2Mbps throughput performance, 150% higher than TCP-reno and 50% higher than TCP cubic. Both analytical and simulation studies also show that it can provide soft minimum-rate guarantees for both RRA and RDA traffic flows. Moreover, simulation also demonstrates that it is resilient to network resource shortage. As part of the protocol design, an effective utility function of TCP and the corresponding control law are derived, which captures TCP behavior not only in a qualitative but also in a quantitative manner.
机译:本文提出了一种端到端的流量控制解决方案,我们称之为TCP弹性实时服务(TERSE)。 TERSE提供了统一的端到端流量控制协议,该协议启用了非实时弹性(NRE)服务(即与TCP控制下的服务相同),实时延迟自适应(RDA)服务和实时实时速率自适应(RRA)服务。通过在协议中正确设置单个参数来启用特定服务。 TERSE拥有完善的设计方法。尽管这种方法源于众所周知的基于实用程序的优化方法,但它成功地解决了其局限性。它导致了统一的流量控制协议,该协议具有多个可证明的属性,包括公平性,收敛性和稳定性。该协议在基于LINUX的系统中实现。该协议的跨太平洋测试表明,它可以实现超过1.2Mbps的吞吐性能,比TCP-reno高150%,比TCP立方高50%。分析和仿真研究都表明,它可以为RRA和RDA交通流提供软的最低费率保证。此外,仿真还表明它可以抵抗网络资源短缺。作为协议设计的一部分,推导了TCP的有效效用函数和相应的控制律,它不仅以定性方式而且以定量方式捕获TCP行为。

著录项

  • 作者

    Ye L; Wang Z; Che H; Lagoa CM;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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