On the Connectivity of Hierarchical Directional Optical Sensor Networks

U. N. Okorafor, D. Kundur
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引用次数: 7

Abstract

In this paper, we investigate the fundamental property of connectivity in a hierarchical ad-hoc optical sensor network (OSN) communicating with broad beam lasers. The OSN is modeled as a random sector graph, in which the randomly deployed sensors can send data within a contiguous and randomly oriented sector of communication. Hierarchy is achieved by employing passive and active free space optical devices. Connectivity analysis in this hierarchical network model is vital in order to assess the feasibility of routing, security and network protocols. To this end, this paper provides probabilistic bounds on network parameters for hierarchical connectivity in OSNs, using a novel approach that directly considers directionality. In particular, we prove probabilistic bounds on the jointly minimum radius of communication as well as angle of the communication sector (i.e., beam width) required for network connectivity.
层次定向光传感器网络的连通性研究
在本文中,我们研究了与宽光束激光器通信的分层自组织光传感器网络(OSN)的连通性的基本性质。OSN被建模为一个随机扇区图,其中随机部署的传感器可以在一个连续的、随机方向的通信扇区内发送数据。分层是通过采用无源和有源自由空间光学器件实现的。在这种分层网络模型中,连通性分析对于评估路由、安全性和网络协议的可行性至关重要。为此,本文使用一种直接考虑方向性的新方法,为osn中的分层连接提供了网络参数的概率界限。特别是,我们证明了网络连接所需的联合最小通信半径和通信扇区角度(即波束宽度)的概率界限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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