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Increasing Capacity of a Strictly Non-blocking Clos Network Composed of Optical Switches

机译:增加由光学开关组成的严格无阻塞网络的容量

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Clos networks are widely used due to their non-blocking property. However, in strictly non-blocking Clos networks composed of ordinary optical switches (switches with equal numbers of input/output ports), we find that a substantial number of ports can remain unused, which decreases their efficiency. This inefficiency comes from the implicit restriction that the two sides of switches have distinct roles, i.e., ports on one side are connected to endpoints (terminals) while those on the other side are linked to switches. Removing this restriction provides greater freedom in constructing a network and can increase capacity without losing the strictly non-blocking property. We propose a new strictly non-blocking network and provide several theorems that address network capacity. Numerical experiments show that the proposed network has up to 30% more capacity compared with a strictly non-blocking Clos network.
机译:由于它们的非阻塞性,CONS网络被广泛使用。 然而,在严格的非阻塞网络由普通光学开关组成(具有相同数量的输入/输出端口),我们发现大量的端口可以保持未使用,这降低了它们的效率。 这种效率来自隐含的限制,即交换机的两侧具有不同的角色,即一侧的端口连接到端点(端子),而另一侧的那些链接到交换机。 删除此限制在构建网络方面提供了更大的自由度,并且可以在不丢失严格的非阻塞性的情况下提高容量。 我们提出了一个新的严格性地非阻塞网络,并提供了几种解决网络容量的定理。 数值实验表明,与严格的无阻塞网络相比,所提出的网络具有高达30%的容量。

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