A novel traffic independent NNC for dynamic buffer tuning to shorten the RTT of a TCP channel

Wilfred W. K. Lin, Allan K. Y. Wong, T. Dillon
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Abstract

The proposed neural network controller (NNC) is for user/server level dynamic buffer tuning. It eliminates overflow by making the buffer length always cover the queue length adaptively on the fly. The NNC and the AQM (active queue management) mechanism(s) at the system/router level together form a unified buffer overflow prevention solution for the TCP channels. The NNC provides the following advantages: a) it prevents the AQM resources dished out already at the system level from being wasted, b) it shortens the service roundtrip time (RTT) by eliminating the chance of retransmission due to user-level overflow, and c) it alleviates network congestion. The NNC operates by the {0,/spl Delta/}/sup 2/ objective function and the principle is to maintain the given /spl Delta/ safety margin about the reference point symbolically represented by the "0" in {0,/spl Delta/}/sup 2/. The NNC stability and precision are traffic pattern independent for its statistical nature. This independence makes the NNC immensely suitable for Internet applications because Internet traffic can be LRD (long-range dependence), SRD (short-range dependence) or multifractal, and switch suddenly.
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一种新的流量无关的NNC,用于动态缓冲调整以缩短TCP通道的RTT
所提出的神经网络控制器(NNC)用于用户/服务器级动态缓冲调谐。它通过使缓冲区长度始终自适应地覆盖动态队列长度来消除溢出。系统/路由器级别的NNC和AQM(主动队列管理)机制共同构成了TCP通道的统一缓冲区溢出预防解决方案。NNC提供了以下优点:a)它防止了已经在系统级分发的AQM资源被浪费,b)它通过消除由于用户级溢出而导致的重传机会缩短了服务往返时间(RTT), c)它缓解了网络拥塞。NNC通过{0,/spl Delta/}/sup 2/目标函数运行,其原理是保持参考点的给定/spl Delta/安全余量,参考点由{0,/spl Delta/}/sup 2/中的“0”符号表示。由于NNC的统计性质,其稳定性和精度与交通模式无关。这种独立性使得NNC非常适合互联网应用,因为互联网流量可以是LRD(远程依赖)、SRD(短程依赖)或多重分形的,并且可以突然切换。
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