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BlueCube: Constructing a hypercube parallel computing and communication environment over Bluetooth radio systems

机译:BlueCube:通过蓝牙无线电系统构建超立方体并行计算和通信环境

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In parallel computing structures, Hypercubes [P. J. Wan, L. W. Liu, Y. Yang, Optimal routing based on the super-topology in Hypercube WDM networks, 1999, pp. 142-149] and [Y. R. Leu, S. Y. Kuo, A fault-tolerant tree communication scheme for hypercube systems, IEEE Trans. Comput. 45(6) (1996) 643-650] have many advantages: they support parallel computing, provide disjoint paths, and tolerate faults. If devices with computing capabilities can be linked as a Hypercube by taking advantage of Bluetooth radio's features, then an efficient communication and high-performance computing environment can be established by applying currently used algorithms. A Bluetooth device randomly searches for and connects with other devices, using time-consuming inquiry/inquiry scan and page/page scan operation and hence, results in an uncontrolled scatternet topology and inefficient communications. The present work proposes a three-stage distributed construction protocol for rapidly organizing a Hypercube computing environment that was constructed from Bluetooth devices. The proposed protocol governs the construction of links, the assigning of roles and the formation of the scatternet in order to efficiently construct a Hypercube structure. The constructed scatternet easily enables Bluetooth devices to establish a routing path, tolerate faults and create disjoint paths, and thus, achieves parallel and distributed computing in a Bluetooth wireless environment. Experimental results reveal that the proposed protocol can set up a scatternet that is appropriate for parallel computing and communications.
机译:在并行计算结构中,Hypercubes [P. J. Wan,L。W. Liu,Y。Y. Yang,基于超立方体WDM网络中超拓扑的最优路由,1999,第142-149页]和[Y. R. Leu,S。Y. Kuo,《超立方体系统的容错树通信方案》,IEEE Trans。计算45(6)(1996)643-650]具有许多优点:它们支持并行计算,提供不相交的路径并容忍故障。如果可以利用蓝牙无线电的功能将具有计算功能的设备链接为Hypercube,则可以通过应用当前使用的算法来建立有效的通信和高性能计算环境。蓝牙设备使用费时的查询/查询扫描和页面/页面扫描操作来随机搜索其他设备并与之连接,因此导致散布网络的拓扑不受控制并且通信效率低下。本工作提出了一个三阶段的分布式构造协议,用于快速组织从蓝牙设备构造的Hypercube计算环境。所提出的协议支配链接的构造,角色的分配以及分散网络的形成,以便有效地构建Hypercube结构。所构建的分散网可轻松使Bluetooth设备建立路由路径,容忍故障并创建不相交的路径,从而在Bluetooth无线环境中实现并行和分布式计算。实验结果表明,提出的协议可以建立适用于并行计算和通信的分散网络。

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