Multi-radio aided topology construction for UWB-based WPAN Scatternet

Canfeng Chen, Weilin Wu
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Abstract

Wireless personal area network (WPAN) has been deemed one promising networking technique since diverse applications will be applicable in an ad hoc fashion in WPANs such as Bluetooth. Ultra wide band (UWB) has also become one hot research field because of its capability of supporting high-rate short-distance communications, and UWB-based WPAN has been receiving more and more research efforts recently. Though various piconet and scatternet formation algorithms have been proposed for Bluetooth-based WPAN, there is no systematical analysis and scheme for the newly emerged UWB-based WPAN, such as IEEE 802.15.3a, which exhibits some distinctions in topology construction. This paper first compares the difference of topology formation rationale and scheme between Bluetooth and UWB-based WPAN, then points out the fundamental problem pertinent to the piconet inter-connection in UWB-based WPAN. The main contribution of our work is to propose a multi-radio aided topology initialization algorithm without modification to the 802.15.3a specification. With the goal that all the participating devices get connected, the topology construction algorithm mainly includes bridge function, device positioning, and deliberate interconnections. A simulation-based study has shown that, compared with standard piconet initialization process, the network connectivity can be greatly enhanced by the proposed algorithm
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基于uwb的WPAN散射网多无线电辅助拓扑构建
无线个人区域网络(WPAN)被认为是一种很有前途的网络技术,因为各种各样的应用将以一种特别的方式在WPAN中应用,如蓝牙。超宽带(UWB)也因其支持高速短距离通信的能力而成为一个研究热点,近年来基于UWB的WPAN得到了越来越多的研究。尽管针对基于蓝牙的WPAN提出了各种微网和散射网形成算法,但对于新出现的基于uwb的WPAN,如IEEE 802.15.3a,并没有系统的分析和方案,其拓扑结构存在一定的差异。本文首先比较了蓝牙和基于uwb的WPAN在拓扑构成原理和方案上的差异,然后指出了基于uwb的WPAN中微网互连的基本问题。我们工作的主要贡献是在不修改802.15.3a规范的情况下提出一种多无线电辅助拓扑初始化算法。拓扑构建算法以所有参与设备连接为目标,主要包括桥接功能、设备定位和故意互连。基于仿真的研究表明,与标准的微微网初始化过程相比,该算法可以大大增强网络的连通性
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