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Foundations of Atmospheric Remote Sensing

Foundations of Atmospheric Remote Sensing PDF Author: Dmitry Efremenko
Publisher: Springer Nature
ISBN: 3030667456
Category : Science
Languages : en
Pages : 297

Book Description
Theoretical foundations of atmospheric remote sensing are electromagnetic theory, radiative transfer and inversion theory. This book provides an overview of these topics in a common context, compile the results of recent research, as well as fill the gaps, where needed. The following aspects are covered: principles of remote sensing, the atmospheric physics, foundations of the radiative transfer theory, electromagnetic absorption, scattering and propagation, review of computational techniques in radiative transfer, retrieval techniques as well as regularization principles of inversion theory. As such, the book provides a valuable resource for those who work with remote sensing data and want to get a broad view of theoretical foundations of atmospheric remote sensing. The book will be also useful for students and researchers working in such diverse fields like inverse problems, atmospheric physics, electromagnetic theory, and radiative transfer.

Foundations of Atmospheric Remote Sensing

Foundations of Atmospheric Remote Sensing PDF Author: Dmitry Efremenko
Publisher: Springer Nature
ISBN: 3030667456
Category : Science
Languages : en
Pages : 297

Book Description
Theoretical foundations of atmospheric remote sensing are electromagnetic theory, radiative transfer and inversion theory. This book provides an overview of these topics in a common context, compile the results of recent research, as well as fill the gaps, where needed. The following aspects are covered: principles of remote sensing, the atmospheric physics, foundations of the radiative transfer theory, electromagnetic absorption, scattering and propagation, review of computational techniques in radiative transfer, retrieval techniques as well as regularization principles of inversion theory. As such, the book provides a valuable resource for those who work with remote sensing data and want to get a broad view of theoretical foundations of atmospheric remote sensing. The book will be also useful for students and researchers working in such diverse fields like inverse problems, atmospheric physics, electromagnetic theory, and radiative transfer.

Fundamentals of Satellite Remote Sensing

Fundamentals of Satellite Remote Sensing PDF Author: Emilio Chuvieco
Publisher: CRC Press
ISBN: 1498728073
Category : Science
Languages : en
Pages : 478

Book Description
Fundamentals of Satellite Remote Sensing: An Environmental Approach, Second Edition is a definitive guide to remote sensing systems that focuses on satellite-based remote sensing tools and methods for space-based Earth observation (EO). It presents the advantages of using remote sensing data for studying and monitoring the planet, and emphasizes co

Remote Sensing of the Lower Atmosphere

Remote Sensing of the Lower Atmosphere PDF Author: Graeme L. Stephens
Publisher: Oxford University Press, USA
ISBN:
Category : Atmosphere
Languages : en
Pages : 560

Book Description
This book is an introductory graduate-level text on atmospheric remote sensing. The basic interaction between radiation and the atmosphere is examined, and illustrated with actual sensing examples. The focus is on understanding the interactions rather than on presenting mathematical details. The text also serves to supplement atmospheric radiation topics, placing the technology and its application in the broader perspective of contemporary meteorology and atmospheric science. Each chapter is followed by a series of exercises, and Appendix 2 gives five computer projects designed for classroom applications.

Physical Fundamentals of Remote Sensing

Physical Fundamentals of Remote Sensing PDF Author: Erwin Schanda
Publisher: Springer Science & Business Media
ISBN: 3642487335
Category : Science
Languages : en
Pages : 195

Book Description
Ten years ago the author, together with eight co-authors, edited a textbook Remote Sensing for Environmental Sciences within the series on Ecological Studies of Springer-Verlag. At that time there were not yet many books available on remote sensing. The decade that has elapsed was marked by a spectacular development in this field. This development took place in many directions: by widening the areas of application, by improvements of the methods and the sensors, by the introduction of new versatile platforms, but also by deepening the knowledge of the theoretical foundations. This evolution improved the ability to explain the interaction between electromagnetic radia tion and natural objects, which, in its turn, allowed for better modelization and for the creation of refined mathematical tools in the processing of remotely sensed data and in the determination of the physical status of remote objects. The community of research workers engaged in development and use of remote sensing methods changed accordingly from a modest group of scientists in the early 1970's to a considerable branch of specialized and interdisciplinary activity. The training of students had to be adapted to cope with the increasing number of people entering this new field and with the increasing quality of the material to be presented.

Atmospheric Remote Sensing

Atmospheric Remote Sensing PDF Author: Abhay Kumar Singh
Publisher: Elsevier
ISBN: 0323992633
Category : Science
Languages : en
Pages : 482

Book Description
Atmospheric Remote Sensing: Principles and Applications discusses the fundamental principles of atmospheric remote sensing and their applications in different research domains. Furthermore, the book covers the basic concepts of satellite remote sensing of the atmosphere, followed by Ionospheric remote sensing tools like Global Positioning System (GPS) and Very Low Frequency (VLF) wave. Sections emphasize the applications of atmospheric remote study in Ionospheric perturbation, fire detection, aerosol characteristics over land, ocean and Himalayan regions. In addition, the application of atmospheric remote sensing in disaster management like dust storms, cyclones, smoke plume, aerosol-cloud interaction, and their impact on climate change are discussed. This book is a valuable reference for students, researchers and professionals working in atmospheric science, remote sensing, and related disciplines. Covers the fundamentals of remote sensing as applied to atmospheric science Includes methods and applications of remote sensing technologies for atmospheric science and related disciplines in earth science Includes full color photographs and figures that visually represent concepts discussed in the book

Atmospheric Remote Sensing by Microwave Radiometry

Atmospheric Remote Sensing by Microwave Radiometry PDF Author: Michael A. Janssen
Publisher: Wiley-Interscience
ISBN:
Category : Science
Languages : en
Pages : 600

Book Description
A rapidly growing area, remote sensing is crucial to the effort of modeling the earth's atmosphere and collecting such fundamental data as temperature, winds, pressures, water vapor distribution, clouds and other active constituents. This information enables us to test existing models of the atmosphere's energy balance, depletion of the ozone layer, climatic trends and other essential environmental data. Also discussed is the application of microwave remote sensing techniques to the atmospheres of planets other than the earth.

Fundamentals of Remote Sensing

Fundamentals of Remote Sensing PDF Author: S C Bhatia
Publisher: Atlantic Publishers & Dist
ISBN: 9788126909315
Category : Electromagnetic waves
Languages : en
Pages : 535

Book Description
Remote sensing has been defined as the detection, recognition or evolution of objects by means of distant sensing or recording devices. Historically, it developed quickly from technology of aerial photo-interpretation science. In recent decades, remote sensing technology has emerged to support data collection and analysis methods of potential interest. Besides, it holds importance for forest management and many other fields. Remote Sensing and Geographical Information Systems (GIS) deal with mapping technology, concepts of maps and all relevant terminology, which are necessary for the beginners to develop their skills in this new and upcoming technology. This book provides basic principles and techniques of remote sensing, microwave remote sensing, remote sensing platforms and sensors and data analysis techniques. Further, the book also covers GIS data quality issues, GIS data analyses and modelling, attributes of data management, GIS data input and editing, integration and linkage of remote sensing and GIS. The subject matter of the book has been divided into 23 chapters to provide focused attention to each aspect of remote sensingfrom fundamental considerations and processesto electromagnetic radiations, their properties and applicationsto observation satellites and hydrospheric sciences. An exclusive chapter has been devoted to natural hazards. All natural hazards are amenable in some degree to study by remote sensing because nearly all geologic, hydraulic and atmospheric phenomena that create hazardous situations are recurring events or processes that leave evidence of their previous occurrence. This evidence can be recorded, analysed and integrated into the planning process. All the topics have been covered in a cogent and lucid style to help the reader grasp the information quickly and easily. Glossary and Index have been provided at the end for quick reference. Diagrams, figures and tables supplement the text. The book is essential reading for all students and teachers of geology, earthquake engineering, life sciences, biotechnologies, bioinformatics, environment science, and research scholars in remote sensing and allied fields.

Exploring the Atmosphere by Remote Sensing Techniques

Exploring the Atmosphere by Remote Sensing Techniques PDF Author: Rodolfo Guzzi
Publisher: Springer
ISBN: 3540365362
Category : Science
Languages : en
Pages : 264

Book Description
Only satellite-based remote-sensing instruments generate the wealth of global data on the concentrations of atmospheric constituents that are necessary for long-term monitoring of the atmosphere. This set of courses and lectures sponsored by ICTP in Trieste focuses on remote sensing for atmospheric applications and inverse methods to assess atmospheric components, gases, aerosols and clouds. It addresses primarily graduate students and young researchers in the atmospheric sciences but will be useful for all those wishing to study various techniques for exploring the atmosphere by remote sensing. Contributions span topics such as on IGOS (Integrated Global Observing Strategy), electromagnetic scattering by non-spherical particles, forward-modelling requirements and the information content problem, Earth radiation, and aerosol monitoring by LIDAR.

Understanding Earth Observation

Understanding Earth Observation PDF Author: Domenico Solimini
Publisher: Springer
ISBN: 3319256335
Category : Science
Languages : en
Pages : 703

Book Description
This volume addresses the physical foundation of remote sensing. The basic grounds are presented in close association with the kinds of environmental targets to monitor and with the observing techniques. The book aims at plugging the quite large gap between the thorough and quantitative description of electromagnetic waves interacting with the Earth's environment and the user applications of Earth observation. It is intended for scientifically literate students and professionals who plan to gain a first understanding of remote sensing data and of their information content.

Neural Networks in Atmospheric Remote Sensing

Neural Networks in Atmospheric Remote Sensing PDF Author: William J. Blackwell
Publisher: Artech House
ISBN: 1596933739
Category : Computers
Languages : en
Pages : 232

Book Description
This authoritative reference offers you a comprehensive understanding of the underpinnings and practical applications of artificial neural networks and their use in the retrieval of geophysical parameters. You find expert guidance on the development and evaluation of neural network algorithms that process data from a new generation of hyperspectral sensors. The book provides clear explanations of the mathematical and physical foundations of remote sensing systems, including radiative transfer and propagation theory, sensor technologies, and inversion and estimation approaches. You discover how to use neural networks to approximate remote sensing inverse functions with emphasis on model selection, preprocessing, initialization, training, and performance evaluation.