农业感知:使用基于传感器的无线网状网络的精准农业

A.D. Siuli Roy, S. Bandyopadhyay
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引用次数: 135

摘要

无线个人区域网络的进步使各种服务的实际部署成为可能,直到几年前,这些服务还被认为是极其昂贵或劳动密集型的。我们为精准农业建立了这样一个无线传感器网络,在这个网络中,气候和其他环境属性的实时数据被感知并转发到一个中央存储库。该架构包括三个不同的部分- (a)传感器节点(b)无线网状网络和(c)驱动组件。传感器是根据适合最常见作物的属性来选择的,我们确定了四个这样的属性。基于ieee 802.15.4标准的传感器网络,我们开发了一种适合于传感器应用的新的静态路由算法。该算法克服了ZigBee规范中固有的分层路由方案的缺陷,其中Csklp寻址算法由于地址浪费而限制了网络拓扑的可能深度。新算法保持了分层的网络拓扑结构,从而保证了路由的最优性。给出了寻址和路由的算法。驱动组件也是网状网络的一部分,并且无线激活以控制灌溉和施肥。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Agro-sense: Precision agriculture using sensor-based wireless mesh networks
Advances in wireless personal area networks have made the practical deployment of various services possible, which until a few years ago was considered extremely costly or labor intensive. We build such a wireless sensor network for precision agriculture where real time data of the climatologieal and other environmental properties are sensed and relayed to a central repository. The architecture comprises of three distinct sections - (a) the sensor-nodes (b) the wireless mesh network and (c) the actuation components. The sensors are selected based on the properties suited for the most common crops and we identify four such attributes. The sensor network is based on the IEEE-802.15.4 standard and we develop a new static routing algorithm suited for the sensing application. The algorithm overrides the deficiency of the Hierarchical Routing scheme inherent in the ZigBee specification where the Csklp addressing algorithm limits the possible depth of the network topology due to address wastage. The new algorithm maintains the hierarchical network topology and thus ensures routing at its optimal best. The algorithms for both addressing and routing are provided. The actuation components are also a part of mesh network and are activated wirelessly for controlling irrigation and fertigation.
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