Ryu Jae Hyeon
University of Idaho, United States.
HardwareX. 2022 Feb 11;11:e00277. doi: 10.1016/j.ohx.2022.e00277. eCollection 2022 Apr.
Urbanization, land use change, and agricultural activities continue to affect water quality standards at the urban-rural interface, such as the Boise River System located in Idaho, USA. This project demonstrates how the off-the-shelf unmanned aircraft system (UAS, also known as drone) equipped with other necessary hardware attachments can be used to monitor real-time water quality components, including pH, water temperature, electric conductivity (EC), and dissolved oxygen at open waterbodies. The proposed UAS-based hardware platform for water quality studies (UASWQP) appears a promising tool to advance environmental research activities, especially for impaired waterways (e.g., rivers, lakes, and reservoirs). The preliminary result shows that the proposed UASWQP effectively displays water quality components in real-time to the ThingSpeak Cloud web services, while an adequate water sample was also collected easily for further analysis at laboratory facilities, when needed. It is anticipated that UASWQP will be a useful tool to promote environmental stewardship by contributing to the water research communities in years to come.
城市化、土地利用变化和农业活动持续影响着城乡交界处的水质标准,比如美国爱达荷州的博伊西河系。该项目展示了配备其他必要硬件附件的现成无人机系统(UAS,也称为无人驾驶飞机)如何用于监测开放水体的实时水质成分,包括pH值、水温、电导率(EC)和溶解氧。所提议的基于无人机的水质研究硬件平台(UASWQP)似乎是推进环境研究活动的一个有前景的工具,尤其适用于水质受损的水道(如河流、湖泊和水库)。初步结果表明,所提议的UASWQP能有效地将水质成分实时显示到ThingSpeak云网络服务,同时在需要时也能轻松采集足够的水样以便在实验室设施进行进一步分析。预计UASWQP在未来几年将成为一个有助于水研究团体促进环境管理的有用工具。