MRI: Acquisition of Multi-Constellation Multi-Frequency Global Navigation Satellite Systems (GNSS) Data Collection Arrays for Low Latitude Ionospheric Effects Studies
MRI: Acquisition of Multi-Constellation Multi-Frequency Global Navigation Satellite Systems (GNSS) Data Collection Arrays for Low Latitude Ionospheric Effects Studies
批准号:
1428042
负责人:
Yu Morton
金额:
$17.66万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-09-01 至 2017-08-31
中文摘要
美国全球定位系统的巨大效用造就了我们的社会?S越来越依赖精确的定位和授时服务,世界经济强国中国、俄罗斯和欧盟出现了多个GNSS星座。到2023年,将有160多颗导航卫星从它们的中地球轨道(MEO)发射超过400个信号。这些跨电离层无线电信号具有明确的开放信号结构和分布的全球覆盖范围,将为被动探测和科学研究我们的空间环境提供前所未有的机会。然而,在有效和高效地利用全球导航卫星系统信号和系统以准确描述大气特性方面存在巨大挑战。该合同的目标是购买六套多星座、多频段全球导航卫星系统(全球导航卫星系统)宽带数据收集系统,用于对电离层现象进行被动遥感。该设备将部署在Jicamara电离层射电观测台和阿雷西博观测站,以与现有的全球导航卫星系统设置组成间隔接收器阵列,以支持以下五个领域的研究活动:(1)赤道电离层不规则形成和演变机制和等离子体动力学研究;(2)高功率无线电波修正对电离层的影响诊断;(3)高分辨率电离层总电子含量和TEC梯度测绘;(4)电离层对无线电波传播的影响;(5)开发先进的全球导航卫星系统接收器算法,以确保在物理和电磁挑战环境中进行导航。该项目将有助于增进对空间环境和电离层进程的了解,并有助于开发下一代卫星导航技术。该仪器还将在通过电离层研究和全球导航卫星系统工程方案加强大学的本科生和研究生教育方面发挥重要作用,加强大学和机构之间的合作关系,并支持正在进行的外联工作。该设备收集的数据将用于全球导航卫星系统信号处理和大气科学类项目,用于高级本科和研究生课程,用于高级顶尖项目,并用于支持研究生论文和博士后研究。处理后的测量结果将在网上公布,以提高公众对大气现象和卫星导航技术进步的认识。
英文摘要
The great utility of the US Global Positioning System (GPS) has led to our society?s increased dependency on precise positioning and timing services and the emergence of multiple constellations of GNSS from world economic powers such as China, Russia, and the European Union. By 2023, there will be more than 160 navigation satellites beaming over 400 signals from their medium Earth orbits (MEO). With their well-defined open signal structures and distributed global coverage, these trans-ionosphere radio signals will offer unprecedented opportunities for passive sensing and scientific study of our space environment. There are, however, enormous challenges to effectively and efficiently utilize GNSS signals and systems to accurately characterize atmospheric properties. The objective of this award is to acquire six units of multi-constellation, multi-band global navigation satellite systems (GNSS) wideband data collection systems for passive remote sensing of ionospheric phenomena. The equipment will be deployed at the Jicamarca Ionospheric Radio Observatory (JIRO) and the Arecibo Observatory (AO) to form spaced receiver arrays with existing GNSS setups to support research activities in five areas: (1) equatorial ionospheric irregularity formation and evolution mechanisms and plasma dynamics studies; (2) diagnostics of high power radio wave modification effects on ionosphere; (3) high resolution ionospheric total electron content (TEC) and TEC gradients mapping; (4) ionospheric effects on radio wave propagation; (5) development of advanced GNSS receiver algorithms for assured navigation in physically and electromagnetically challenging environments. This project will help to advance understanding of the space environment and ionosphere processes and aid the development of the next generation of satellite navigation technology. The instrument will also play an important role in enhancing undergraduate and graduate education at universities with programs in ionospheric research and GNSS engineering, strengthen collaborative relationships among universities and institutions, and support on-going outreach efforts. Data collected by the equipment will be used in GNSS signal processing and atmospheric science class projects for upper-level undergraduate and graduate level courses, in senior capstone projects, and to support graduate thesis and post-doctoral research. Processed measurements will be published online to increase public awareness of atmospheric phenomena and the advancements taking place in satellite navigation technologies.
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