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Hierarchical cache design for enhancing TCP over heterogeneous networks with wired and wireless links

机译:分层缓存设计,用于通过有线和无线链接增强异构网络上的TCP

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TCP is a reliable transport protocol tuned to perform well in traditional networks made up of links with low bit-error rates. Networks with higher bit-error rates, such as those with wireless links and mobile hosts, violate many of the assumptions made by the transmission control protocol (TCP), causing degraded end-to-end performance. We propose a two-layer hierarchical cache architecture for enhancing TCP performance over heterogeneous networks with both wired and wireless links. A new network-layer protocol, called new snoop (NS), is designed. The main idea is to cache the unacknowledged packets at both the mobile switch center (MSC) and base station (BS), to form a two-layer cache hierarchy. If a packet is lost due to transmission errors in the wireless link, the BS takes the responsibility to recover the loss. When a handoff occurs, the packets cached at the MSC can help to minimize the latency of retransmissions due to temporal disconnection. NS can preserve the end-to-end TCP semantics and is compatible with existing TCP applications. Its implementation only requires code modification at the BS and MSC. Simulation results show that NS is significantly more robust in dealing with unreliable wireless links and handoffs as compared with the original snoop scheme, as well as some other existing TCP enhancements.
机译:TCP是一种可靠的传输协议,已调整为在由低误码率的链接组成的传统网络中表现良好。具有较高位错误率的网络(例如具有无线链路和移动主机的网络)违反了传输控制协议(TCP)做出的许多假设,从而导致端到端性能下降。我们提出了一个两层的分层缓存体系结构,用于通过有线和无线链接增强异构网络上的TCP性能。设计了一种称为新侦听(NS)的新网络层协议。主要思想是在移动交换中心(MSC)和基站(BS)处缓存未确认的数据包,以形成两层缓存层次结构。如果分组由于无线链路中的传输错误而丢失,则BS负责恢复该丢失。当发生切换时,在MSC缓存的数据包可以帮助最小化由于时间断开而导致的重传延迟。 NS可以保留端到端TCP语义,并且与现有的TCP应用程序兼容。它的实现仅需要在BS和MSC处进行代码修改。仿真结果表明,与原始侦听方案以及其他一些现有的TCP增强功能相比,NS在处理不可靠的无线链路和切换方面要更加强大。

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