论文标题
对武汉(wuhan)的交通密度变化的调查在19次共同流行期间与GF-2时间序列图像的调查
An Investigation of Traffic Density Changes inside Wuhan during the COVID-19 Epidemic with GF-2 Time-Series Images
论文作者
论文摘要
为了减轻Covid-19的传播,武汉是2020年第一个实施严格锁定政策的城市。尽管许多研究已经讨论了城市和省之间的旅行限制,但由于缺乏武汉的测量和可用数据,很少有研究重点关注城市内部运输控制的影响。由于在城市锁定开始时,公共交通工具已被关闭,因此交通密度的变化是反映不稳定人口流动的一个很好的指标。因此,在本文中,我们收集了时间序列高分辨率遥感图像,而GF-2卫星在Wuhan锁定之前,之中和之后获得的1M分辨率。提取道路上的车辆并计算交通密度的统计数据,以反映武汉锁定整个时期人类传播的变化。开放式街道地图用于获得观察路面,并使用梳理形态过滤器的车辆检测方法和深度学习的精度为62.56%提取车辆。根据实验结果,武汉的交通密度下降,百分比高于80%,在城市锁定期间的主要道路上甚至高于90%。锁定升降机后,交通密度恢复到正常速度。在整个研究领域,交通密度分布还显示出明显的减少和增加。交通密度的显着降低和恢复表明,武汉的锁定政策在控制城市内部的人类传播方面表现出有效性,纽约市锁定后恢复正常。
In order to mitigate the spread of COVID-19, Wuhan was the first city to implement strict lockdown policy in 2020. Even though numerous researches have discussed the travel restriction between cities and provinces, few studies focus on the effect of transportation control inside the city due to the lack of the measurement and available data in Wuhan. Since the public transports have been shut down in the beginning of city lockdown, the change of traffic density is a good indicator to reflect the intracity population flow. Therefore, in this paper, we collected time-series high-resolution remote sensing images with the resolution of 1m acquired before, during and after Wuhan lockdown by GF-2 satellite. Vehicles on the road were extracted and counted for the statistics of traffic density to reflect the changes of human transmissions in the whole period of Wuhan lockdown. Open Street Map was used to obtain observation road surfaces, and a vehicle detection method combing morphology filter and deep learning was utilized to extract vehicles with the accuracy of 62.56%. According to the experimental results, the traffic density of Wuhan dropped with the percentage higher than 80%, and even higher than 90% on main roads during city lockdown; after lockdown lift, the traffic density recovered to the normal rate. Traffic density distributions also show the obvious reduction and increase throughout the whole study area. The significant reduction and recovery of traffic density indicates that the lockdown policy in Wuhan show effectiveness in controlling human transmission inside the city, and the city returned to normal after lockdown lift.