虫洞路由光网络中的同步流量控制

C. Sue, S. Kuo
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引用次数: 0

摘要

本文提出了一种虫洞路由光网络的同步流量控制机制。预计在光网络中,更短的路由延迟和更小的缓冲区要求将会带来显著的好处。与传统的双向异步背压流量控制不同,将流量控制修改为单向同步。同步控制槽的大小不依赖于路由路径的长度,其位数是一个常数,等于虚拟通道和节点的总数。该流控制利用无死锁路由中通道访问的受限顺序,以相应的受限顺序广播通道的控制信息。此外,为了将缓冲区大小减小到只有一个单元,共享同一物理通道的虚拟通道必须能够同时传输数据。通过改进的源路由,克服了这种机制导致的低信道利用率。总之,本文介绍了一种流量控制机制,它可以很容易地将虫洞路由的优点融入到有限资源的光网络中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronous flow control in wormhole routed optical networks
In this paper, we propose a synchronous flow control mechanism in wormhole routed optical networks. It is expected that the benefit of shorter routing delay and smaller buffer size requirement in wormhole routing will be significant in optical networks. Different from the traditional bi-directional asynchronous back-pressure flow control, the flow control is modified to be unidirectional and synchronous. The size of synchronized control slot does not depend on the routing path length and the number of bits is a constant which is equal to the total number of virtual channels and nodes. The proposed flow control takes advantage of the restricted order of accessing channels in deadlock-free routing to broadcast their control information in a corresponding restricted order. Furthermore, in order to reduce the buffer size to only one unit, the virtual channels which share the same physical channel must be able to simultaneously transmit data. The low channel utilization induced by such mechanism is overcome by our modified source routing. In summary, this paper introduces a flow control mechanism which easily incorporates the benefit of wormhole routing into the limited-resource optical networks.
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