临界避免:一种基于相变科学的拥塞控制新范式

S. Mau, A. Vashist, A. Poylisher, R. Chadha, C. Chiang
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引用次数: 0

摘要

由于网络的复杂性、动态性和有限的可测量性,网络QoS控制通常是困难的。作为另一种选择,我们寻求一种简单、普遍和重要的网络现象来控制。其结果是一个基于连续相变科学的主动动态网络拥塞控制框架。连续相变的关键有益特性是它的早期预警信号和普遍性。前者允许在拥塞发生之前检测到其接近程度;而后者意味着任何基于临界的网络控制都可能对网络细节不敏感,特别是不需要任何关于临界负载值的先验知识。初步的实验结果证明了这些前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Criticality avoidance: A new paradigm for congestion control based on science of phase transition
Network QoS control is generally difficult due to the complexity, dynamism, and limited measurability of networks. As an alternative, we seek a network phenomenon that is simple, universal and consequential to control. The result is a framework for proactive dynamic network congestion control that is based on the science of continuous phase transition. Key beneficial properties of continuous phase transition are its early onset warning signs and universality. The former allows the detection of proximity to congestion before its occurrence; while the latter implies that any criticality-based network control would likely be insensitive to network details and, in particular, not require any a-priori knowledge of the values of critical loads. Preliminary experimental results demonstrating these promises are presented.
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