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Dmesh mac download5/10/2023 ![]() A k-level hierarchical dual-net, HDN(B, k, S), contains (2N0)2k/(2 ×Πki=1 si) nodes, where S =, G′i is a super-node and si = |G′i| is the number of nodes in the super-node at the level i for 1 ≤ i ≤ k, and N0 is the number of nodes in the base network B. The HDN is constructed based on a symmetric product graph (base network). In this paper, we propose a flexible interconnection network, called hierarchical dual-net (HDN), with low node degree and short diameter for constructing a large scale of supercomputer. Performance analysis verifies that our proposed scheme outperforms existing schemes. This guarantees that each MH can receive the VOD-segment from its corresponding BS within minimal waiting time. In each cell area, a VOD (Video On-Demand) is dynamically requested by any MH at the different time to on-line construct a multicast tree, while the root node of multicast tree is a BS. In our strategy, VOD-data are well scheduled and broadcasted among 2-D tori-BSs such that the average waiting time is minimum. ![]() Therefore, two contributions are presented in this paper: (a) a new integrated wireless mobile network is proposed, (b) a fast broadcast-VOD protocol is introduced in such new network. In addition, an important application, called as broadcast-VOD protocol, is presented in such integrated network. In our integrated network, BSs are connected by a 2-D tori interconnection network. The integrated network is characterized by each BS connecting to other BS by a wired network, but each MH communicating with a BS within multi-hop transmission steps. Our proposed wireless mobile network is an integration of single-hop and multi-hop mobile networks. A single-hop wireless mobile network is characterized by each base station (or BS) connecting to other BS by a wired network, but each mobile host (or MH) communicating with its own BS within one-hop transmission radius. Existing wireless mobile networks can be classified into single-hop (such as GSM system) and multi-hop mobile networks (such as Ad-hoc network). ![]() In this paper, we investigate a broadcast-VOD problem in an integrated wireless mobile network. © 2018 Academy and Industry Research Collaboration Center (AIRCC). ![]() An extensive survey of related work is also presented. The proposal has been in test in an industrial production environment. Thirdly, extensive simulation validates the effectiveness and dependability of HOLMES with select DCN topologies. We also formally prove the stability of HOLMES flow scheduling algorithm. Based on the stochastic power-of-two-choices policy, the HOLMES scheduling mechanism acquires only a subset of the global congestion information, while achieves close to optimal load balance on each end-to-end DCN path. Secondly, the HOLMES architecture is proposed, which adaptively partitions the available DCN paths into low-latency and high-throughput sub-networks via a global congestion-aware scheduling mechanism. Firstly, we theoretically prove the necessity for partitioning DCN paths into sub-networks using a stochastic model. In light of this mounting problem, this work proposes a novel flow control scheme, HOLMES (HOListic Mice-Elephants Stochastic), which offers a holistic view of global congestion awareness as well as a stochastic scheduler of mixed mice-elephants data flows in Data Center Networks (DCNs). elephants) has become ever challenging with the proliferation of cloud-based applications. mice) and throughput-oriented large ones (a.k.a. The Quality of Service (QoS) of scheduling between latency-sensitive small data flows (a.k.a.
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