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Distributed topology construction of Bluetooth wireless personal area networks

机译:蓝牙无线个人局域网的分布式拓扑结构

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摘要

Bluetooth, a wireless technology based on a frequency-hopping physical layer, enables portable devices to form short-range wireless ad hoc networks. Bluetooth hosts are not able to communicate unless they have previously discovered each other through synchronization of their timing and frequency-hopping patterns. Thus, even if all nodes are within proximity of each other, only those nodes which are synchronized with the transmitter can hear the transmission. To support any-to-any communication, nodes must be synchronized so that the pairs of nodes, which can communicate with each other, form a connected graph. Using Bluetooth as an example, we first provide deeper insights into the issue of link establishment in frequency-hopping wireless systems. We then introduce an asynchronous distributed protocol that begins with nodes having no knowledge of their surroundings and terminates with the formation of a connected network topology satisfying all constraints posed by Bluetooth. An attractive protocol feature is its ease in implementation using the communication primitives offered by the Bluetooth Specification.
机译:蓝牙是一种基于跳频物理层的无线技术,它使便携式设备能够形成短距离无线自组织网络。蓝牙主机无法通信,除非它们先前已通过同步其定时和跳频模式而彼此发现。因此,即使所有节点都在彼此附近,也只有那些与发送器同步的节点才能听到发送的声音。为了支持任何对任何通信,必须同步节点,以便可以相互通信的成对节点形成连接的图。以蓝牙为例,我们首先深入了解跳频无线系统中的链路建立问题。然后,我们引入了一种异步分布式协议,该协议以不了解其周围环境的节点开始,并以满足蓝牙所构成的所有约束的连接网络拓扑的形式终止。有吸引力的协议功能是使用蓝牙规范提供的通信原语易于实现。

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