LiDAR Principles, Processing and Applications in Forest Ecology introduces the principles of LiDAR technology and explains how to collect and process LiDAR data from different platforms based on real-world experience. The book provides state-of the-art algorithms on how to extract forest parameters from LiDAR and explains how to use them in forest ecology. It gives an interdisciplinary view, from the perspective of remote sensing and forest ecology. Because LiDAR is still rapidly developing, researchers must use programming languages to understand and process LiDAR data instead of established software. In response, this book provides Python code examples and sample data. Sections give a brief history and introduce the principles of LiDAR, as well as three commonly seen LiDAR platforms. The book lays out step-by-step coverage of LiDAR data processing and forest structure parameter extraction, complete with Python examples. Given the increasing usefulness of LiDAR in forest ecology, this volume represents an important resource for researchers, students and forest managers to better understand LiDAR technology and its use in forest ecology across the world. The title contains over 15 years of research, as well as contributions from scientists across the world. - Presents LiDAR applications for forest ecology based in real-world experience - Lays out the principles of LiDAR technology in forest ecology in a systematic and clear way - Provides readers with state-of the-art algorithms on how to extract forest parameters from LiDAR - Offers Python code examples and sample data to assist researchers in understanding and processing LiDAR data - Contains over 15 years of research on LiDAR in forest ecology and contributions from scientists working in this field across the world
This book is a comprehensive academic introduction of the natural conditions and cultural characteristics of the ChangJiang River Basin. Describing in detail the geographical location and natural conditions of the main stream and the tributaries as the starting point, the book compares the ChangJiang River Civilizations to other civilizations of large rivers of the same latitude. This book reveals the gradual deepening of the Chinese understanding the ChangJiang River, introduces the cultural divisions of the river valley, and describes the evolution of the civilizations in the basin. At the end of the book, the author points out that there are many ecological problems in the ChangJiang River valley, for which the Chinese people have taken many measures, such as water pollution control. Fishing in the main stream and important tributaries of the ChangJiang is banned for at least ten years. As a guide to analyze the natural conditions and cultural characteristics of the whole ChangJiang River Basin, this book enables researchers and common readers to have a relatively clear and comprehensive understanding in a relatively short period of time. Putting the ChangJiang River Civilization in the context of the world’s civilizations, this book makes it easier for readers to understand the uniqueness of the ChangJiang River Civilization and its contribution to the cultural diversity of the world.
This book interprets the typical Chinese concepts of fengjian (feudalism) and jingji (economy) by reviewing the mistranslation and mismatching of concepts from ancient to modern times and from a Western language to Chinese and exploring Chinese and Western acculturation, which is in line with Mr. Chen Yinque’s theory—”To interpret a Chinese character is to write a history of culture”. In the coordinates of time and space for the transformation of Chinese concepts from ancient to modern times and their translation from Western languages, this book explores the generation and evolution of Chinese concepts; using the semantic window of Chinese characters, the book reviews the historical and cultural connotations of the semantic changes and the history of the long-lasting culture of Chinese characters. This volume moves from reviewing the semantic changes of fengjian and jingji to elaborating concepts of thought; it makes the study of the history of terms and concepts the study of the history of culture and thought; it analyzes words as part of cultural history to welcome the era of cultural and historical research with a focus on words. This book is both scholarly and readable, satisfying both the academic needs of specialized researchers and the cultural curiosity of those with secondary education or above.
As global demands for energy and lower carbon emissions rise, developing systems of energy conversion and storage becomes necessary. This book explores how Electrochemical Energy Storage and Conversion (EESC) devices are promising advanced power systems that can directly convert chemical energy in fuel into power, and thereby aid in proposing a solution to the global energy crisis. The book focuses on high-temperature electrochemical devices that have a wide variety of existing and potential applications, including the creation of fuel cells for power generation, production of high-purity hydrogen by electrolysis, high-purity oxygen by membrane separation, and various high-temperature batteries. High-Temperature Electrochemical Energy Conversion and Storage: Fundamentals and Applications provides a comprehensive view of the new technologies in high-temperature electrochemistry. Written in a clear and detailed manner, it is suitable for developers, researchers, or students of any level.
This book draws together the published material on nanochemistry from 2005-2008, choosing each important element of the periodic table, summarising relevant general properties and then detailing the findings.
This brief introduces overlapping coalition formation games (OCF games), a novel mathematical framework from cooperative game theory that can be used to model, design and analyze cooperative scenarios in future wireless communication networks. The concepts of OCF games are explained, and several algorithmic aspects are studied. In addition, several major application scenarios are discussed. These applications are drawn from a variety of fields that include radio resource allocation in dense wireless networks, cooperative spectrum sensing for cognitive radio networks, and resource management for crowd sourcing. For each application, the use of OCF games is discussed in detail in order to show how this framework can be used to solve relevant wireless networking problems. Overlapping Coalition Formation Games in Wireless Communication Networks provides researchers, students and practitioners with a concise overview of existing works in this emerging area, exploring the relevant fundamental theories, key techniques, and significant applications.
LiDAR Principles, Processing and Applications in Forest Ecology introduces the principles of LiDAR technology and explains how to collect and process LiDAR data from different platforms based on real-world experience. The book provides state-of the-art algorithms on how to extract forest parameters from LiDAR and explains how to use them in forest ecology. It gives an interdisciplinary view, from the perspective of remote sensing and forest ecology. Because LiDAR is still rapidly developing, researchers must use programming languages to understand and process LiDAR data instead of established software. In response, this book provides Python code examples and sample data. Sections give a brief history and introduce the principles of LiDAR, as well as three commonly seen LiDAR platforms. The book lays out step-by-step coverage of LiDAR data processing and forest structure parameter extraction, complete with Python examples. Given the increasing usefulness of LiDAR in forest ecology, this volume represents an important resource for researchers, students and forest managers to better understand LiDAR technology and its use in forest ecology across the world. The title contains over 15 years of research, as well as contributions from scientists across the world. - Presents LiDAR applications for forest ecology based in real-world experience - Lays out the principles of LiDAR technology in forest ecology in a systematic and clear way - Provides readers with state-of the-art algorithms on how to extract forest parameters from LiDAR - Offers Python code examples and sample data to assist researchers in understanding and processing LiDAR data - Contains over 15 years of research on LiDAR in forest ecology and contributions from scientists working in this field across the world
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