Shuanggen Jin – författare
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IGFS 2014
Proceedings of the 3rd International Gravity Field Service (IGFS), Shanghai, China, June 30 - July 6, 2014
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The Assembly was successfully held in Shanghai, China from June 30th to July 6th, 2014 with over 130 participants from 25 countries. The focus of the Assembly is on methods for observing, estimating and interpreting the Earth gravity field as well as its applications, including 6 sessions: gravimetry and gravity networks, global geopotential models and vertical datum unification, local geoid/gravity modelling, satellite gravimetry, mass movements in the Earth system and solid Earth investigations.
IGFS 2014
Proceedings of the 3rd International Gravity Field Service (IGFS), Shanghai, China, June 30 - July 6, 2014
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This contributed monograph is the first work to present the latest results and findings on the new topic and hot field of planetary exploration and sciences, e.g., lunar surface iron content and mare orientale basalts, Earth’s gravity field, Martian radar exploration, crater recognition, ionosphere and astrobiology, Comet ionosphere, exoplanetary atmospheres and planet formation in binaries. By providing detailed theory and examples, this book helps readers to quickly familiarize themselves with the field. In addition, it offers a special section on next-generation planetary exploration, which opens a new landscape for future exploration plans and missions.
Prof. Shuanggen Jin works at the Shanghai Astronomical Observatory, Chinese Academy of Sciences, China. Dr. Nader Haghighipour works at the University of Hawaii-Manoa, USA. Prof. Wing-Huen Ip works at the National Central University, Taiwan.
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GNSS can detect the seismic atmospheric-ionospheric variations, which can be used to investigate the seismo-atmospheric disturbance characteristics and provide insights on the earthquake. This book presents the theory, methods, results, and modeling of GNSS atmospheric seismology. Sesimo-tropospheric anomalies, Pre-/Co-/Post-seismic ionospheric disturbances, epicenter estimation, tsunami and volcano ionospheric disturbances, and volcanic plumes detection with GNSS will be presented and discussed per chapter in the book.
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This book gives comprehensive introduction to the fundamentals, methods and applications of GNSS-Reflectometry (GNSS-R), including GNSS-R history, GNSS reflection signal characteristics, ground-based GNSS multipath reflectometry, interference pattern technology, delay Doppler map, space-based GNSS-R theory, ocean altimetry, hydrological remote sensing, vegetation monitoring and cryosphere remote sensing, etc. It well presents the current status and the latest application progress in this field. The authors have been engaged in the research and application of GNSS-R for many years with achieving lots of original theoretical and application progress, such as GNSS-R scattering mechanism and new applications, which reflect the forefront trends and cutting-edge dynamics in this discipline. It has important reference value and application prospect for marine monitoring, environment remote sensing, global change monitoring, glacier and permafrost monitoring, meteorological and agricultural application and so on.
This book is suitable for professionals, graduate students, and researchers engaged in satellite navigation, remote sensing, space geodesy, marine environment, meteorological services, and global change, and as well as technical support for engineers and transformation applications, especially those engaged in satellite navigation development and environmental remote sensing applications.
The basis of English translation of this book, originally in Chinese, was facilitated by artificial intelligence. The content was later revised completely by the authors for accuracy.
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