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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >Differentiated Bandwidth Allocation with TCP Protection in Core Routers
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Differentiated Bandwidth Allocation with TCP Protection in Core Routers

机译:核心路由器中具有TCP保护的差异化带宽分配

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Differentiated Services (DiffServ) networks categorize routers into edge routers and core routers. In core routers, one of the technological challenges is how to implement differentiated bandwidth allocation and TCP protection together with low complexity. We present an Active Queue Management (AQM) scheme called CHOKeW. A method is borrowed from a previous scheme, CHOKe, which draws a packet at random from the buffer, compares it with the arriving packet, and drops both if they are from the same flow. CHOKeW enhances the drawing function by adjusting the maximum number of draws based on the priority of the new arrival and the current status of network congestion. With respect to the number of flows, both the memory-requirement complexity and the per-packet-processing complexity for CHOKeW is O(1). An analytical model and multiple simulations are used to explain and evaluate CHOKeW. We show that CHOKeW is able to 1) support differentiated bandwidth allocation; 2) provide the flows in the same priority with better fairness than other conventional stateless AQM schemes such as RED and BLUE; 3) maintain high link utilization as well as short queue length; and 4) protect TCP flows by restricting the bandwidth share of high-speed unresponsive flows.
机译:区分服务(DiffServ)网络将路由器分为边缘路由器和核心路由器。在核心路由器中,技术挑战之一是如何实现差异化的带宽分配和TCP保护以及低复杂度。我们提出了一个称为CHOKeW的主动队列管理(AQM)方案。从以前的方案CHOKe中借用了一种方法,该方法从缓冲区中随机抽取一个数据包,将其与到达的数据包进行比较,如果它们来自同一流,则将两者都丢弃。 CHOKeW通过根据新到达的优先级和网络拥塞的当前状态调整最大抽奖次数来增强抽奖功能。关于流的数量,CHOKeW的内存需求复杂度和每数据包处理复杂度均为O(1)。分析模型和多个模拟用于解释和评估CHOKeW。我们证明CHOKeW能够:1)支持差异化带宽分配; 2)与其他传统的无状态AQM方案(例如RED和BLUE)相比,以相同的优先级提供流具有更好的公平性; 3)保持较高的链路利用率以及较短的队列长度; 4)通过限制高速无响应流的带宽份额来保护TCP流。

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