Frequent and severe wildfires have been observed lately on a global scale. Wildfires not only threaten lives and properties, but also pose negative environmental impacts that transcend national boundaries (e.g., greenhouse gas emission and global warming). Thus, early wildfire detection with timely feedback is much needed. We propose to use the emerging beyond fifth-generation (B5G) and sixth-generation (6G) satellite Internet of Things (IoT) communication technology to enable massive sensor deployment for wildfire detection. We propose wildfire and carbon emission models that take into account real environmental data including wind speed, soil wetness, and biomass, to simulate the fire spreading process and quantify the fire burning areas, carbon emissions, and economical benefits of the proposed system against the backdrop of recent California wildfires. We also conduct a satellite IoT feasibility check by analyzing the satellite link budget. Future research directions to further illustrate the promise of the proposed system are discussed.
翻译:最近在全球范围观测到了频繁和严重的野火,野火不仅威胁生命和特性,而且造成超越国界的负面环境影响(例如温室气体排放和全球升温),因此,非常需要及时反馈及早发现野火,我们提议利用新兴的第五代(B5G)和第六代(6G)“物”卫星互联网(IoT)通信技术,以便能够大规模部署传感器,进行野火探测。我们提出野火和碳排放模型,其中考虑到真正的环境数据,包括风速、土壤湿度和生物量,以模拟火灾蔓延过程,并在加利福尼亚最近的野火背景下量化拟议的系统燃烧区、碳排放和经济效益。我们还提议通过分析卫星连接预算,进行IoT卫星可行性研究。我们讨论了进一步说明拟议系统前景的未来研究方向。