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Design of an Integrated Remote and Ground Sensing Monitor System for Assessing Farmland Quality

机译:农田质量综合遥感监测系统的设计

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摘要

Quality monitoring is important for farmland protection. Here, high-resolution remote sensing data obtained by unmanned aerial vehicles (UAVs) and long-term ground sensing data, obtained by wireless sensor networks (WSNs), are uniquely suited for assessing spatial and temporal changes in farmland quality. However, existing UAV-WSN systems are unable to fully integrate the data obtained from these two monitoring systems. This work addresses this problem by designing an improved UAV-WSN monitoring system that can collect both high-resolution UAV images and long-term WSN data during a single-flight mission. This is facilitated by a newly proposed data transmission optimization routing protocol (DTORP) that selects the communication node within a cluster of the WSN to maximize the quantity of data that can be efficiently transmitted, additionally combining individual scheduling algorithms and routing algorithms appropriate for three different distance scales to reduce the energy consumption incurred during data transmission between the nodes in a cluster. The performance of the proposed system is evaluated based on Monte Carlo simulations by comparisons with that obtained by a conventional system using the low-energy adaptive clustering hierarchy (LEACH) protocol. The results demonstrate that the proposed system provides a greater total volume of transmitted data, greater energy utilization efficiency, and a larger maximum revisit period than the conventional system. This implies that the proposed UAV-WSN monitoring system offers better overall performance and enhanced potential for conducting long-term farmland quality data collection over large areas in comparison to existing systems.
机译:质量监测对于农田保护很重要。在这里,由无人机(UAV)获得的高分辨率遥感数据和由无线传感器网络(WSN)获得的长期地面传感数据非常适合评估农田质量的时空变化。但是,现有的UAV-WSN系统无法完全集成从这两个监视系统获得的数据。这项工作通过设计一种改进的UAV-WSN监视系统解决了这个问题,该系统可以在一次飞行任务中同时收集高分辨率UAV图像和长期WSN数据。新提议的数据传输优化路由协议(DTORP)促进了这一点,该协议选择WSN集群中的通信节点以最大化可有效传输的数据量,此外还结合了适用于三种不同方式的单独的调度算法和路由算法距离比例可减少群集中节点之间数据传输期间的能耗。通过与使用低能耗自适应聚类层次结构(LEACH)协议的常规系统进行比较,基于蒙特卡洛模拟评估了所提出系统的性能。结果表明,与传统系统相比,该系统提供了更大的传输数据总量,更高的能源利用效率和更大的最大重访时间。这意味着与现有系统相比,拟议的UAV-WSN监视系统具有更好的整体性能,并具有在大范围进行长期农田质量数据收集的潜力。

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