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Building resilience of the Global Positioning System to space weather

机译:建立全球定位系统对空间天气的适应力

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Almost every aspect of the global economy now depends on GPS. Worldwide, nations are working to create a robust Global Navigation Satellite System (GNSS), which will provide global positioning, navigation, and timing (PNT) services for applications such as aviation, electric power distribution, financial exchange, maritime navigation, and emergency management. The U.S. government is examining the vulnerabilities of GPS, and it is well known that space weather events, such as geomagnetic storms, contribute to errors in single-frequency GPS and are a significant factor for differential GPS. The GPS industry has lately begun to recognize that total electron content (TEC) signal delays, ionospheric scintillation, and solar radio bursts can also interfere with daily operations and that these threats grow with the approach of the next solar maximum, expected to occur in 2013. The key challenges raised by these circumstances are, first, to better understand the vulnerability of GPS technologies and services to space weather and, second, to develop policies that will build resilience and mitigate risk.
机译:现在,全球经济的几乎所有方面都取决于GPS。在世界范围内,各国正在努力创建一个强大的全球导航卫星系统(GNSS),它将为航空,配电,金融交易,海上导航和应急管理等应用提供全球定位,导航和授时(PNT)服务。 。美国政府正在检查GPS的脆弱性,众所周知,太空天气事件(例如地磁风暴)会造成单频GPS的误差,并且是差分GPS的重要因素。 GPS行业最近开始认识到,总电子含量(TEC)信号延迟,电离层闪烁和太阳射电爆发也会干扰日常运行,并且随着下一个太阳最高峰(预计在2013年发生)的临近,这些威胁也会增加这些情况带来的主要挑战是,首先,要更好地理解GPS技术和服务对空间天气的脆弱性,其次,要制定能够增强弹性和降低风险的政策。

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