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用数百万部手机绘制电离层图。

Mapping the ionosphere with millions of phones.

机构信息

Google Research, Mountain View, CA, USA.

Aerospace Engineering Sciences Department, University of Colorado Boulder, Boulder, CO, USA.

出版信息

Nature. 2024 Nov;635(8038):365-369. doi: 10.1038/s41586-024-08072-x. Epub 2024 Nov 13.

Abstract

The ionosphere is a layer of weakly ionized plasma bathed in Earth's geomagnetic field extending about 50-1,500 kilometres above Earth. The ionospheric total electron content varies in response to Earth's space environment, interfering with Global Satellite Navigation System (GNSS) signals, resulting in one of the largest sources of error for position, navigation and timing services. Networks of high-quality ground-based GNSS stations provide maps of ionospheric total electron content to correct these errors, but large spatiotemporal gaps in data from these stations mean that these maps may contain errors. Here we demonstrate that a distributed network of noisy sensors-in the form of millions of Android phones-can fill in many of these gaps and double the measurement coverage, providing an accurate picture of the ionosphere in areas of the world underserved by conventional infrastructure. Using smartphone measurements, we resolve features such as plasma bubbles over India and South America, solar-storm-enhanced density over North America and a mid-latitude ionospheric trough over Europe. We also show that the resulting ionosphere maps can improve location accuracy, which is our primary aim. This work demonstrates the potential of using a large distributed network of smartphones as a powerful scientific instrument for monitoring Earth.

摘要

电离层是一层弱电离等离子体,沐浴在地球的磁场中,延伸约 50-1500 公里以上的地球。电离层总电子含量变化响应地球的空间环境,干扰全球卫星导航系统(GNSS)信号,导致位置、导航和定时服务的最大误差源之一。高质量的地面全球卫星导航系统站网络提供电离层总电子含量的地图来纠正这些误差,但从这些站的数据的大时空差距意味着这些地图可能包含误差。在这里,我们证明了一个分布式的嘈杂传感器网络-以数百万部安卓手机的形式-可以填补其中的许多空白,并将测量覆盖范围扩大一倍,为世界上传统基础设施服务不足的地区提供准确的电离层图像。使用智能手机测量,我们解决了等离子体泡等特征,如印度和南美洲上空的等离子体泡、北美洲的太阳风暴增强密度以及欧洲的中纬度电离层槽。我们还表明,由此产生的电离层图可以提高位置精度,这是我们的主要目标。这项工作证明了使用大型分布式智能手机网络作为监测地球的强大科学仪器的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1914/11560844/a5710beadb95/41586_2024_8072_Fig1_HTML.jpg

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