Large-term sensing system for agriculture utilizing UAV and wireless power transfer

Shota Nishiura, Hiroshi Yamamoto
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引用次数: 3

Abstract

In recent years, in order to improve crop production and quality of agricultural operations, an “agricultural remote monitoring system” have been attracting a lot of attention. The existing studies have proposed an agricultural remote monitoring systems using Wireless Sensor Network (WSN). In the existing system, the environmental information is collected from a large number of sensor nodes installed in the farm using a low-power wireless communications (e.g., ZigBee, LPWA). However, in these systems, even when the low-power wireless technology is utilized, it is difficult to run permanently on batteries because the battery capacity is not infinity. In addition, in the case of a large-scale field, a large number of intermediate nodes should be installed in the field, hence the installation and operation costs are high.On the other hand, a wireless power transfer technology is evolving and equipment which is capable of supplying power to places dozens of centimeters away has been available. In addition, Unmanned Aerial Vehicles (UAV) that can fly stably for a long time and has a large loading capacity has appeared.Therefore, in this study, we propose and develop a wide-area sensing system for large-scale farms using a UAV, a wireless power transfer technology, and an energy-saving short-range wireless communication system (i.e., Bluetooth Low Energy (BLE)). The UAV flies autonomously to the location of sensor nodes that are widely installed in the large farm for collecting the sensor data. Here, the UAV is designed to supply the power to the sensor node to measure and send the environmental information using the wireless power transfer technology. It eliminates the need for periodic battery replacement of the sensor node, which reduces the cost of operating the system.Through the experimental evaluation using the developed system, it has been confirmed that the UAV can accurately be controlled by the proposed feedback control to land near the sensor nodes, and that the sensor nodes can be operated by the wireless power transfer from the embedded system of the UAV.
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利用无人机和无线电力传输的农业长期传感系统
近年来,为了提高农作物产量和农业经营质量,一种“农业远程监控系统”备受关注。已有研究提出了一种基于无线传感器网络(WSN)的农业远程监测系统。在现有系统中,使用低功耗无线通信(如ZigBee、LPWA)从安装在农场的大量传感器节点收集环境信息。然而,在这些系统中,即使采用了低功耗无线技术,由于电池的容量不是无限的,因此也很难在电池上永久运行。此外,在大型油田的情况下,需要在现场安装大量的中间节点,因此安装和运行成本较高。另一方面,随着无线电力传输技术的发展,可以向几十厘米以外的地方供电的设备已经问世。此外,能够长时间稳定飞行并具有大载荷能力的无人机(UAV)也出现了。因此,在本研究中,我们提出并开发了一种用于大型农场的广域传感系统,该系统使用无人机,无线电力传输技术和节能短程无线通信系统(即低功耗蓝牙(BLE))。无人机自主飞行到大型农场中广泛安装的传感器节点位置,收集传感器数据。在这里,无人机被设计为使用无线电力传输技术向传感器节点供电,以测量和发送环境信息。它不需要定期更换传感器节点的电池,从而降低了系统的运行成本。通过对所开发系统的实验评估,证实了采用所提出的反馈控制方法可以精确控制无人机在传感器节点附近着陆,并且可以通过无人机嵌入式系统的无线电力传输对传感器节点进行操作。
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