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Deadlock-free connection-based adaptive routing with dynamic virtual circuits

机译:具有动态虚拟电路的无死锁的基于连接的自适应路由

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Virtual circuits (VCs) can reduce routing overheads with irregular topologies and provide support for a mix of quality of service (QoS) requirements. Information about network loads and traffic patterns may be used during circuit establishment to utilize network resources more efficiently than is practical with packet routing. Most VC schemes are static-each established VC remains unchanged until the connection is no longer needed. In contrast, we propose the dynamic virtual circuit (DVC) mechanism, which enables existing circuits to be quickly tom down in order to free up resources needed for other circuits or to re-establish circuits along routes that are better suited for current network conditions. We propose a deadlock avoidance technique, based on unconstrained routing of DVCs combined with a deadlock-free virtual network. We present a correctness proof for the scheme, describe key aspects of its implementation, and present performance evaluation results that explore its potential benefits. (C) 2006 Elsevier Inc. All rights reserved.
机译:虚拟电路(VC)可以减少具有不规则拓扑的路由开销,并为混合的服务质量(QoS)要求提供支持。关于网络负载和业务量模式的信息可以在电路建立期间用于比分组路由的实践更有效地利用网络资源。大多数VC方案都是静态的-每个已建立的VC都将保持不变,直到不再需要连接为止。相比之下,我们提出了动态虚拟电路(DVC)机制,该机制使现有电路能够快速拆除,以释放其他电路所需的资源,或沿着更适合当前网络条件的路由重新建立电路。我们提出了一种避免死锁的技术,该技术基于DVC的无约束路由并结合了无死锁的虚拟网络。我们为该方案提供了正确性证明,描述了其实施的关键方面,并提供了探索其潜在收益的性能评估结果。 (C)2006 Elsevier Inc.保留所有权利。

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