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Path Switching and Grading Algorithms for Advance Channel Reservation Architectures

机译:先进信道预留架构的路径切换和分级算法

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As a result of perceived limitations of TCP/IP in supporting high-throughput applications, significant efforts have recently been devoted to develop alternative architectures based on the concept of advance channel reservation. In this paper, we develop a polynomial-time algorithmic framework, called graded channel reservation (GCR), to support the implementation of such architectures. This framework enables users to specify minimum bandwidth and duration requirements for their connections. Upon receiving a request, GCR returns the highest graded path, selected according to a general, multicriteria optimization objective. In particular, if the optimization criterion is delay, we prove that GCR returns the earliest time available to establish the connection. Thereafter, we present a generalization of GCR, called GCRswitch, that is capable of supporting path switching throughout a connection. We present practical methods for minimizing or limiting the number of path switches. Through extensive simulations, we evaluate the performance of GCR and its variants under various topological settings and applications workload. Our results show that, for certain traffic parameters, optimized path selection combined with path switching can reduce the average delay of requests by an order of magnitude and increase the maximum sustainable load by as much as 50%.
机译:由于TCP / IP在支持高通量应用程序方面存在局限性,因此最近进行了大量工作来开发基于提前通道预留概念的替代体系结构。在本文中,我们开发了一种称为分级通道保留(GCR)的多项式时间算法框架,以支持此类体系结构的实现。该框架使用户可以指定其连接的最小带宽和持续时间要求。收到请求后,GCR将返回根据通用多准则优化目标选择的最高评分路径。特别是,如果优化标准是延迟,则我们证明GCR返回最早可用于建立连接的时间。此后,我们提出了GCR的概括,称为GCRswitch,它能够支持整个连接中的路径切换。我们提出了最小化或限制路径切换数量的实用方法。通过广泛的仿真,我们评估了GCR及其变体在各种拓扑设置和应用程序工作负载下的性能。我们的结果表明,对于某些流量参数,优化的路径选择与路径切换相结合可以将请求的平均延迟减少一个数量级,并将最大可持续负载增加多达50%。

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