School of Technology, Beijing Forestry University, Beijing 100083, China.
Sensors (Basel). 2018 Dec 16;18(12):4457. doi: 10.3390/s18124457.
Based on Internet-of-Things and multi-sensor technology, an intelligent wireless monitoring system was developed to obtain field ecological parameters and provide forest fire warning in real-time. The GPRS and China's Beidou satellite communication were selectively used for date transmission in the field with weak cell phone signals. This monitoring system is mainly composed of several field ecological monitoring stations, a cloud server, and online system software. Atmosphere, soil, sunlight and plant parameters of different regions are obtained real-time by sensors stably and reliably. This system has functions such as field ecological data storage, dynamic query, report generation, and data analysis. As an example of typical application, the forest fire weather grade, which was supplemented with the litter layer soil humidity, was calculated to realize the early warning of the local forest fire in this system through continuous experiments at Beijing Jiufeng National Forest Park from March to May 2017 and Inner Mongolia from March to June 2018. The success ratios of data transmission through Beidou satellite were 98.57%, 99.43%, 99.59%, and 98.85%, respectively, in Beijing, and through GPRS were 99.89% and 99.90% in Inner Mongolia. Long-term real-time field ecological monitoring and forest fire warning were successfully realized. This system can be widely used for big data field acquisition and analysis in forest and agriculture regions.
基于物联网和多传感器技术,开发了一种智能无线监测系统,以实时获取现场生态参数并提供森林火灾预警。该系统在手机信号较弱的野外选择性地使用 GPRS 和中国北斗卫星通信进行数据传输。该监测系统主要由多个野外生态监测站、云服务器和在线系统软件组成。通过传感器稳定可靠地实时获取不同区域的大气、土壤、阳光和植物参数。该系统具有现场生态数据存储、动态查询、报表生成和数据分析等功能。作为典型应用示例,通过连续实验,在 2017 年 3 月至 5 月在北京九峰山国家森林公园和 2018 年 3 月至 6 月在内蒙古补充枯枝落叶层土壤湿度后,计算出森林火险天气等级,实现了该系统的局部森林火灾预警。在北京,北斗卫星数据传输成功率分别为 98.57%、99.43%、99.59%和 98.85%,在内蒙古,GPRS 的数据传输成功率分别为 99.89%和 99.90%。成功实现了长期实时野外生态监测和森林火灾预警。该系统可广泛应用于森林和农业地区的大数据野外采集和分析。