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Planetary cartography and GIS

Author: Henrik Hargitai
Publisher: Cham, Switzerland : Springer, 2019.
Series: Lecture notes in geoinformation and cartography.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book approaches geological, geomorphological and topographical mapping from the point in the workflow at which science-ready datasets are available. Though there have been many individual projects on dynamic maps and online GISs, in which coding and data processing are given precedence over cartographic principles, cartography is more than "just" processing and displaying spatial data. However, there are  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Printed edition:
Printed edition:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Henrik Hargitai
ISBN: 9783319628493 3319628496 3319628488 9783319628486 9783319628509 331962850X
OCLC Number: 1088407340
Description: 1 online resource
Contents: The Basics. Cartography: its role and interdisciplinary character in planetary science --
Planetary mapping: a historical overview --
Planetary nomenclature --
Fundamental frameworks in planetary mapping: a review --
Specialized planetary mapping. Planetary geologic mapping --
Methods in planetary topographic mapping: a review --
Planetary mapping for landing sites selection: the Mars case study --
Mapping irregular bodies --
Cartographic approaches. Multi-mapper projects: collaborative Mercury mapping --
Planetary map design: the Chang'E-1 topographic atlas of the moon --
Atlas planetary mapping: Phobos case --
The role of maps during long-term analog planetary missions and future Mars missions --
Cartography of the Soviet Lunokhods' routes on the moon --
Mapping methods. Feature databases in planetary geology --
Databases and metadatabases in planetary geology- the Mars crater database --
Grid-mapping: quantifying the distribution of landforms --
Distribution pattern analysis in planetary mapping --
Topographic roughness as interquartile range of the second derivatives: calculation and mapping --
Venus topography and boundary conditions in 3D general circulation modeling --
Exoplanet Terra Incognita --
The community. Participants and initiatives in planetary cartography. Intro; Preface; Contents; The Basics; 1 Cartography: Its Role and Interdisciplinary Character in Planetary Science; Abstract; 1 Introduction; 1.1 Cartography-What is it About?; 1.2 Distillation, Abstraction, and Visualization of Information; 2 Intersection of Planetary Cartography and Mapping; 2.1 From Past to Present; 2.2 Cartography and Mapping Today-and Their Different Meaning; 2.3 Transition from Analog to Digital Mapping; 3 Cartographic Work Process; 3.1 Input-Data; 3.2 Distillation-Information; 3.3 Output-Knowledge; 4 Types of Map Products; 4.1 Map Type Based on Motivation 4.2 Map Type Based on Production and Content5 Challenges and Future Tasks; 6 Conclusion; References; 2 Planetary Mapping: A Historical Overview; Abstract; 1 Introduction; 2 Milestones in the History of Planetary Cartography; 2.1 Before the Space Age; 2.2 The Photographic Era; 2.3 Transition to Modern Planetary Mapping; 2.4 The Beginnings of Astrogeologic Mapping; 2.5 New Mapping Techniques During the Space Age; 2.6 Planetary Mapping and Maps in the Digital Era; 2.7 Planetary Cartography in the Soviet Union and East Asia; 3 The Short History of Specific Cartographic Tools 3.1 Generating Synthetic Views: Concepts3.2 Topographic, Brightness (Albedo), and Physiographic Maps: Examples; 3.3 Map Sections and Schemata; 3.4 The Development of Planetary Nomenclature; 4 The Current Practice of Geologic Mapping; 5 Conclusion; 6 Further Reading; Acknowledgements; References; 3 Planetary Nomenclature; Abstract; 1 Background; 1.1 What Is Planetary Nomenclature?; 2 Governing Rules and Conventions; 2.1 History of Planetary Nomenclature; 2.2 Process for Approving Feature Nomenclature; 3 Nomenclature Labels; 3.1 Planetary Map Label Conventions; 3.2 Placement Strategy 4 Nomenclature in a GIS4.1 Benefits of Dynamic Nomenclature; 4.2 Platform-Specific Capabilities; References; 4 Fundamental Frameworks in Planetary Mapping: A Review; Abstract; 1 Introduction; 1.1 Application of Planetary Maps; 1.2 International Astronomical Union-IAU; 2 Reference Surfaces; 3 Coordinate Systems and Coordinate Frames; 3.1 Cartesian Coordinates; 3.2 Spherical Coordinates; 3.3 Longitude and Latitude Systems-Discussion; 3.4 Latitudes and Longitudes in Applications; 3.5 Body-Specific Planetary Coordinate Systems; 4 Map Projections; 5 Image Mosaics; 5.1 Geometric Control 5.1.1 Bundle Block Adjustment (Aerotriangulation)5.1.2 Ancillary Data Sources; 5.2 Radiometric Calibration and Photometric Normalization; 5.3 Historic and Recent Examples; 5.4 A Standardized Sequence of Image Processing; 6 Summary; Acknowledgements; References; Specialized Planetary Mapping; 5 Planetary Geologic Mapping; Abstract; 1 Introduction; 1.1 History; 1.2 Status of Planetary Geologic Mapping; 2 Basic Methods; 2.1 Approach; 2.2 Defining the Scope of a Map; 2.3 The Mapping Process; 2.4 Packaging, Review, and Production; 2.5 Additional Means of Visualization; 3 Data
Series Title: Lecture notes in geoinformation and cartography.
Responsibility: Henrik Hargitai, editor.

Abstract:

This book approaches geological, geomorphological and topographical mapping from the point in the workflow at which science-ready datasets are available.  Read more...

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