Velásquez-Villada Carlos, Donoso Yezid
Systems and Computing Engineering Department, Universidad de los Andes, 111711 Bogotá D.C., Colombia.
Sensors (Basel). 2016 Mar 25;16(4):436. doi: 10.3390/s16040436.
Communications from remote areas that may be of interest is still a problem. Many innovative projects applied to remote sites face communications difficulties. The GOLDFISH project was an EU-funded project for river pollution monitoring in developing countries. It had several sensor clusters, with floating WiFi antennas, deployed along a downstream river's course. Sensor clusters sent messages to a Gateway installed on the riverbank. This gateway sent the messages, through a backhaul technology, to an Internet server where data was aggregated over a map. The communication challenge in this scenario was produced by the antennas' movement and network backhaul availability. Since the antennas were floating on the river, communications could be disrupted at any time. Also, 2G/3G availability near the river was not constant. For non-real-time applications, we propose a Delay/Disruption Tolerant Network (DTN)-based solution where all nodes have persistent storage capabilities and DTN protocols to be able to wait minutes or hours to transmit. A mechanical backhaul will periodically visit the river bank where the gateway is installed and it will automatically collect sensor data to be carried to an Internet-covered spot. The proposed forwarding protocol delivers around 98% of the messages for this scenario, performing better than other well-known DTN routing protocols.
来自偏远地区且可能引人关注的通信仍然是个问题。许多应用于偏远地区的创新项目都面临通信困难。GOLDFISH项目是一个由欧盟资助的、用于发展中国家河流污染监测的项目。它有几个带有浮动WiFi天线的传感器集群,沿着下游河道部署。传感器集群将消息发送到安装在河岸上的网关。这个网关通过回程技术将消息发送到一个互联网服务器,在那里数据会在地图上进行汇总。这种情况下的通信挑战是由天线的移动和网络回程可用性造成的。由于天线漂浮在河上,通信随时可能中断。此外,河流附近的2G/3G可用性也不稳定。对于非实时应用,我们提出一种基于延迟/中断容忍网络(DTN)的解决方案,其中所有节点都具有持久存储能力和DTN协议,以便能够等待数分钟或数小时进行传输。一个机械回程将定期访问安装网关的河岸,并自动收集传感器数据,带到有互联网覆盖的地点。对于这种情况,所提出的转发协议能传递大约98%的消息,比其他知名的DTN路由协议表现更好。