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It is notable that, the hardware cost decreases by 28.65% in this new combination of pruned and extra planes.
Vertically stacked pruned optical banyan networks with extra planes (in short, EP-VSOB networks) have lower switch count and optimal time complexity (O log2 N)) for routing N input requests.
But precious budgets were pruned, and some were pruned heavily.
The main idea is to add extra symmetry breaking constraints during search recursively to prune also symmetric nodes of some pruned subtrees.
For example, to ensure blocking probability <0.02, previously we would chose a pruned network of 32 pruned planes and 1 extra planes (a regular banyan); however, our simulations results show that a network of 16 pruned planes and 2 extra planes is enough to ensure the same performance.
In the EP-VSOB architecture, the number of pruned planes has always been considered as √N, and a few extra planes (regular banyan) have been added with these pruned planes.
Each of the three datasets was pruned based on LD between markers to form both a pruned and a highly pruned dataset.
In this paper we present the results of blocking analysis of a more generalized architecture in which the number of pruned planes can be 2x, where x ⩾ 0 in addition to the variable extra planes.
Repot the tree and prune approximately 1/3 of its foliage to balance out the pruned roots.
When is it pruned?
I sprayed and pruned.
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