Theory of Spatial Similarity Relations and Its Applications in Automated Map Generalization

Theory of Spatial Similarity Relations and Its Applications in Automated Map Generalization

Author: Haowen Yan

Publisher:

Published: 2014

Total Pages: 216

ISBN-13:

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Automated map generalization is a necessary technique for the construction of multi-scale vector map databases that are crucial components in spatial data infrastructure of cities, provinces, and countries. Nevertheless, this is still a dream because many algorithms for map feature generalization are not parameter-free and therefore need human's interference. One of the major reasons is that map generalization is a process of spatial similarity transformation in multi-scale map spaces; however, no theory can be found to support such kind of transformation. This thesis focuses on the theory of spatial similarity relations in multi-scale map spaces, aiming at proposing the approaches and models that can be used to automate some relevant algorithms in map generalization. After a systematic review of existing achievements including the definitions and features of similarity in various communities, a classification system of spatial similarity relations, and the calculation models of similarity relations in the communities of psychology, computer science, music, and geography, as well as a number of raster-based approaches for calculating similarity degrees between images, the thesis achieves the following innovative contributions. First, the fundamental issues of spatial similarity relations are explored, i.e. (1) a classification system is proposed that classifies the objects processed by map generalization algorithms into ten categories; (2) the Set Theory-based definitions of similarity, spatial similarity, and spatial similarity relation in multi-scale map spaces are given; (3) mathematical language-based descriptions of the features of spatial similarity relations in multi-scale map spaces are addressed; (4) the factors that affect human's judgments of spatial similarity relations are proposed, and their weights are also obtained by psychological experiments; and (5) a classification system for spatial similarity relations in multi-scale map spaces is proposed. Second, the models that can calculate spatial similarity degrees for the ten types of objects in multi-scale map spaces are proposed, and their validity is tested by psychological experiments. If a map (or an individual object, or an object group) and its generalized counterpart are given, the models can be used to calculate the spatial similarity degrees between them. Third, the proposed models are used to solve problems in map generalization: (1) ten formulae are constructed that can calculate spatial similarity degrees by map scale changes in map generalization; (2) an approach based on spatial similarity degree is proposed that can determine when to terminate a map generalization system or an algorithm when it is executed to generalize objects on maps, which may fully automate some relevant algorithms and therefore improve the efficiency of map generalization; and (3) an approach is proposed to calculate the distance tolerance of the Douglas-Peucker Algorithm so that the Douglas-Peucker Algorithm may become fully automatic. Nevertheless, the theory and the approaches proposed in this study possess two limitations and needs further exploration. *More experiments should be done to improve the accuracy and adaptability of the proposed models and formulae. The new experiments should select more typical maps and map objects as samples, and find more subjects with different cultural backgrounds. *Whether it is feasible to integrate the ten models/formulae for calculating spatial similarity degrees into an identical model/formula needs further investigation. In addition, it is important to find out the other algorithms, like the Douglas-Peucker Algorithm, that are not parameter-free and closely related to spatial similarity relation, and explore the approaches to calculating the parameters used in these algorithms with the help of the models and formulae proposed in this thesis.


Cartography

Cartography

Author: Matthew H. Edney

Publisher: University of Chicago Press

Published: 2019-04-12

Total Pages: 324

ISBN-13: 022660571X

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“In his most ambitious work to date, [Edney] questions the very concept of ‘cartography’ to argue that this flawed ideal has hobbled the study of maps.” —Susan Schulten, author of A History of America in 100 Maps Over the past four decades, the volumes published in the landmark History of Cartography series have both chronicled and encouraged scholarship about maps and mapping practices across time and space. As the current director of the project that has produced these volumes, Matthew H. Edney has a unique vantage point for understanding what “cartography” has come to mean and include. In this book Edney disavows the term cartography, rejecting the notion that maps represent an undifferentiated category of objects for study. Rather than treating maps as a single, unified group, he argues, scholars need to take a processual approach that examines specific types of maps—sea charts versus thematic maps, for example—in the context of the unique circumstances of their production, circulation, and consumption. To illuminate this bold argument, Edney chronicles precisely how the ideal of cartography that has developed in the West since 1800 has gone astray. By exposing the flaws in this ideal, his book challenges everyone who studies maps and mapping practices to reexamine their approach to the topic. The study of cartography will never be the same. “[An] intellectually bracing and marvellously provocative account of how the mythical ideal of cartography developed over time and, in the process, distorted our understanding of maps.” —Times Higher Education “Cartography: The Ideal and Its History offers both a sharp critique of current practice and a call to reorient the field of map studies. A landmark contribution.” —Kären Wigen, coeditor of Time in Maps


Rediscovering Geography

Rediscovering Geography

Author: Rediscovering Geography Committee

Publisher: National Academies Press

Published: 1997-04-11

Total Pages: 260

ISBN-13: 0309577624

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As political, economic, and environmental issues increasingly spread across the globe, the science of geography is being rediscovered by scientists, policymakers, and educators alike. Geography has been made a core subject in U.S. schools, and scientists from a variety of disciplines are using analytical tools originally developed by geographers. Rediscovering Geography presents a broad overview of geography's renewed importance in a changing world. Through discussions and highlighted case studies, this book illustrates geography's impact on international trade, environmental change, population growth, information infrastructure, the condition of cities, the spread of AIDS, and much more. The committee examines some of the more significant tools for data collection, storage, analysis, and display, with examples of major contributions made by geographers. Rediscovering Geography provides a blueprint for the future of the discipline, recommending how to strengthen its intellectual and institutional foundation and meet the demand for geographic expertise among professionals and the public.


Adventures in Academic Cartography

Adventures in Academic Cartography

Author: Mark Monmonier

Publisher:

Published: 2014-11-30

Total Pages: 320

ISBN-13: 9780692332252

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Adventures in Academic Cartography is a personal memoir offering insight to the diverse impacts of computer technology on the world of cartography and mapping. It surveys the author's half century of work as a scholar, educator, and editor as well as his commitment to demystifying for general readers the power of maps as a tool for understanding and persuasion. An overview of his undergraduate and graduate training and early university employment precedes engaging accounts of his experiences as a classroom teacher; academic researcher, book author, journal editor, consultant, and editor of Cartography in the Twentieth Century (Volume Six of the monumental History of Cartography). Additional chapters reveal his views on theory, map collecting, and writing. This integrated collection of stories promotes an understanding of the many facets of academic cartography, which emerged in the twentieth century as a distinct mapping endeavor that touches geographic education, technological innovation, national defense, public policy, professional organizations, libraries, map collections, and academic and trade publishing. Mark Monmonier pursued a vigorous career in cartographic scholarship, with faculty appointments at the University of Rhode Island, the State University of New York at Albany, and Syracuse University, where he was appointed associate professor in 1973 and promoted to professor in 1979 and distinguished professor in 1998. Electronic strategies for map design and analysis dominated his research through the mid-1990s. He published the first general textbook on computer-aided mapping and made innovative contributions to interactive statistical graphics. An early invention now known as the Monmonier Algorithm became an important research tool for geographic studies in linguistics and genetics. An emerging curiosity about the intersection of mapping and public policy led to Technological Transition in Cartography (1985) and Spying with Maps (2002), and a growing interest in origins inspired focused histories like Air Apparent: How Meteorologists Learned to Map, Predict, and Dramatize Weather (1999) and Rhumb Lines and Map Wars: A Social History of the Mercator Projection (2004). Recognition includes an Association of American Geographers Media Achievement Award (2000), the American Geographical Society's O. M. Miller Medal (2001), and the German Cartographic Society's Mercator Medal (2009). He continues an active life of scholarship, currently focused on patented cartographic inventions.


Advances in Cartography and Geographic Information Engineering

Advances in Cartography and Geographic Information Engineering

Author: Jiayao Wang

Publisher: Springer Nature

Published: 2021-07-30

Total Pages: 646

ISBN-13: 9811606145

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This book reviews and summarizes the development and achievement in cartography and geographic information engineering in China over the past 60 years after the founding of the People's Republic of China. It comprehensively reflects cartography, as a traditional discipline, has almost the same long history with the world's first culture and has experienced extraordinary and great changes. The book consists of nineteen thematic chapters. Each chapter is in accordance with the unified directory structure, introduction, development process, major study achievements, problem and prospect, representative works, as well as a lot of references. It is useful as a reference both for scientists and technicians who are engaged in teaching, researching and engineering of cartography and geographic information engineering.