Spatial Technology and Archaeology: The Archaeological Applications of GISCRC Press, 2. ruj 2003. - Broj stranica: 269 Geographical Information Systems (GIS) and related spatial technologies have a new and powerful role to play in archaeological interpretation. Beginning with a conceptual approach to the representation of space adopted by GIS, this book examines spatial databases; the acquisition and compilation of data; the analytical compilation of data; the analytical functionality of GIS; and the creation and utilization of critical foundation data layers such as the Digital Elevation Model (DEM). The ways in which GIS can most usefully facilitate archaeological analysis and interpretation are then explored particularly as a tool for the management of archaeological resources. Formal analysis of archaeological material, and the use of trend surface, contouring and interpolation procedures are considered along with predictive modeling analysis of visibility and intervisibility. Finally there is a discussion of leading-edge issues, including three-dimensional GIS, object-oriented GIS, the relationship between GIS and 'Virtual Reality' technologies, and the integration of GIS with distributed systems and the Internet. The approach is light, and technical detail is kept to a minimum, recognizing that most readers are simply interested in using GIS effectively. The text is carefully illustrated with worked case-studies using archaeological data. Spatial Technology and Archaeology provides a single reference source for archaeologists, students, professionals, and academics in archaeology as well as those in anthropology and related disciplines. |
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Stranica vii
... differences of opinion 161 8.8 Conclusions 162 9. TREND SURFACE AND INTERPOLATION 163 9.1 Characteristics of interpolators 164 9.2 Point data 165 9.3 Trend surface analysis 166 9.4 Approaches that use triangulation vii.
... differences of opinion 161 8.8 Conclusions 162 9. TREND SURFACE AND INTERPOLATION 163 9.1 Characteristics of interpolators 164 9.2 Point data 165 9.3 Trend surface analysis 166 9.4 Approaches that use triangulation vii.
Stranica xi
... interpolation algorithms. 105 Figure 5.7 Cross sections through hypothetical elevation models. 106 Figure 5.8 ... Interpolation using Delaunay triangulation. 171 Figure 9.6 Interpolation with splines. 172 Figure 9.7 Interpolation with ...
... interpolation algorithms. 105 Figure 5.7 Cross sections through hypothetical elevation models. 106 Figure 5.8 ... Interpolation using Delaunay triangulation. 171 Figure 9.6 Interpolation with splines. 172 Figure 9.7 Interpolation with ...
Stranica xiv
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Stranica 12
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Stranica 74
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CHAPTER ONE Archaeology space and GIS | 1 |
CHAPTER TWO The spatial database | 19 |
CHAPTER THREE Acquiring and integrating data | 53 |
CHAPTER FOUR Manipulating spatial data | 79 |
CHAPTER FIVE Digital elevation models | 95 |
CHAPTER SIX Beginning to quantify spatial patterns | 113 |
CHAPTER SEVEN Sites territories and distance | 133 |
CHAPTER EIGHT Location models and prediction | 148 |
CHAPTER NINE Trend surface and interpolation | 163 |
CHAPTER TEN Visibility analysis and archaeology | 179 |
CHAPTER ELEVEN Cultural resource management | 193 |
CHAPTER TWELVE Future directions | 207 |
219 | |
231 | |
Ostala izdanja - Prikaži sve
Spatial Technology and Archaeology: The Archaeological Applications of GIS David Wheatley,Mark Gillings Ograničeni pregled - 2013 |
Spatial Technology and Archaeology: The Archaeological Applications of GIS David Wheatley,Mark Gillings Ograničeni pregled - 2003 |
Spatial Technology and Archaeology: The Archaeological Applications of GIS David Wheatley,Mark Gillings Pregled nije dostupan - 2002 |
Uobičajeni izrazi i fraze
algorithm allow analysis application approach archaeological attribute calculated cells Chapter characteristics classes co-ordinate complex component consider considerable contain continuous contours cost create cultural data structure defined derived described detail digitising direction discussed distance distribution effect errors estimate example existing Figure formal function geographic given grid height identifier important input integrate interested interpolation interpretation landscape layer lines locations mean measured methods monuments nodes objects observations obtained operations original particular patterns points position possible precision predictive modelling present problems produce projection range raster record referred region relationships represent result sample shows significant simple slope soil space spatial data spatial database specific statistical stored structure surface survey Table techniques technologies term theme units values variables vector viewshed visibility visual