Reliable communications in aerial sensor networks by using a hybrid antenna

Kai Li, Nadeem Ahmed, S. Kanhere, S. Jha
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引用次数: 7

Abstract

An AWSN composed of bird-sized Unmanned Aerial Vehicles (UAVs) equipped with sensors and wireless radio, enables low cost high granularity three-dimensional sensing of the physical world. The sensed data is relayed in real-time over a multi-hop wireless communication network to ground stations. The following characteristics of an AWSN make effective multi-hop communication challenging - (i) frequent link disconnections due to the inherent dynamism (ii) significant inter-node interference (iii) three dimensional motion of the UAVs. In this paper, we investigate the use of a hybrid antenna to accomplish efficient neighbor discovery and reliable communication in AWSNs. We propose the design of a hybrid Omni Bidirectional ESPAR (O-BESPAR) antenna, which combines the complimentary features of an isotropic omni radio (360 degree coverage) and directional ESPAR antennas (beamforming and reduced interference). Control and data messages are transmitted separately over the omni and directional modules of the antenna, respectively. Moreover, a communication protocol is presented to perform fast neighbor discovery and beam steering. We present results from extensive simulations then consider three different real-world AWSN application scenarios and empirical aerial link characterization and show that the proposed antenna design and protocol reduces the packet loss rate, as compared to a single omni or ESPAR antenna.
混合天线在航空传感器网络中的可靠通信
AWSN由鸟大小的无人机(uav)组成,配备传感器和无线无线电,可以实现低成本的高粒度物理世界三维感知。感测数据通过多跳无线通信网络实时中继到地面站。AWSN的以下特征使得有效的多跳通信具有挑战性:(i)由于固有的动态性导致的频繁链路断开(ii)显著的节点间干扰(iii)无人机的三维运动。在本文中,我们研究了在awsn中使用混合天线来实现高效的邻居发现和可靠的通信。我们提出了一种混合全向双向ESPAR (O-BESPAR)天线的设计,它结合了各向同性全向无线电(360度覆盖)和定向ESPAR天线(波束形成和减少干扰)的互补特性。控制信息和数据信息分别通过天线的全向模块和定向模块传输。此外,还提出了一种用于快速发现邻居和波束导向的通信协议。我们给出了大量模拟的结果,然后考虑了三种不同的现实世界AWSN应用场景和经验空中链路特性,并表明与单一omni或ESPAR天线相比,所提出的天线设计和协议降低了丢包率。
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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