William F Limp
Biographic Data
| ID | 3994059 |
|---|---|
| NAME | William F Limp |
| GIVEN NAMES | William F |
| FAMILY NAME | Limp |
| SIGNATURE | LIMP W F |
| AFFILIATIONS | University of Arkansas at Fayetteville |
| VERIFIED | No |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 24 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2014 |
| LATEST PUBLICATION YEAR | 2017 |
| H-INDEX | 2 |
Strategies for International Travel with “High-Tech” Archaeological Field Equipment
Conducting archaeological fieldwork increasingly relies on “high-tech” instruments. These include such technologies as portable X-ray diffraction; ground penetrating radar; high-precision global navigation satellite system (GNSS) receivers; laser scanners; multispectral, thermal, lidar, and hyperspectral instruments on Uncrewed Aerial Vehicles (UAVs); and many others. Using these devices internationally can present complex issues with export regu…
Recent Developments in High-Density Survey and Measurement (HDSM) for Archaeology
HDSM, high-density survey and measurement, is the collective term for a range of new technologies that give us the ability to measure, record, and analyze the spatial, locational, and morphological properties of objects, sites, structures, and landscapes with higher density and more precision than ever before. This article considers HDSM technologies, including airborne lidar, real-time kinematic global navigation satellite system (GNSS) survey, …
Solving the Grid-to-Ground Problem when Using High Precision GNSS in Archaeological Mapping
Increasingly, high-precision GPS/GNSS (global positioning system/global satellite navigation system) based real-time-kinematic methods are being used in the mapping of archaeological sites. However, when utilizing high-precision satellite-based methods for archaeological location purposes, there is a significant but usually unanticipated problem that must first be addressed if accurate measurements are to be made. Simply put, unless proper correc…
Recent Developments in High-Density Survey and Measurement (HDSM) for Archaeology
HDSM, high-density survey and measurement, is the collective term for a range of new technologies that give us the ability to measure, record, and analyze the spatial, locational, and morphological properties of objects, sites, structures, and landscapes with higher density and more precision than ever before. This article considers HDSM technologies, including airborne lidar, real-time kinematic global navigation satellite system (GNSS) survey, …
Solving the Grid-to-Ground Problem when Using High Precision GNSS in Archaeological Mapping
Increasingly, high-precision GPS/GNSS (global positioning system/global satellite navigation system) based real-time-kinematic methods are being used in the mapping of archaeological sites. However, when utilizing high-precision satellite-based methods for archaeological location purposes, there is a significant but usually unanticipated problem that must first be addressed if accurate measurements are to be made. Simply put, unless proper correc…
Solving the Grid-to-Ground Problem when Using High Precision GNSS in Archaeological Mapping
Increasingly, high-precision GPS/GNSS (global positioning system/global satellite navigation system) based real-time-kinematic methods are being used in the mapping of archaeological sites. However, when utilizing high-precision satellite-based methods for archaeological location purposes, there is a significant but usually unanticipated problem that must first be addressed if accurate measurements are to be made. Simply put, unless proper correc…
Recent Developments in High-Density Survey and Measurement (HDSM) for Archaeology
HDSM, high-density survey and measurement, is the collective term for a range of new technologies that give us the ability to measure, record, and analyze the spatial, locational, and morphological properties of objects, sites, structures, and landscapes with higher density and more precision than ever before. This article considers HDSM technologies, including airborne lidar, real-time kinematic global navigation satellite system (GNSS) survey, …
Strategies for International Travel with “High-Tech” Archaeological Field Equipment
Conducting archaeological fieldwork increasingly relies on “high-tech” instruments. These include such technologies as portable X-ray diffraction; ground penetrating radar; high-precision global navigation satellite system (GNSS) receivers; laser scanners; multispectral, thermal, lidar, and hyperspectral instruments on Uncrewed Aerial Vehicles (UAVs); and many others. Using these devices internationally can present complex issues with export regu…
Computer Science (3 works) · Global Positioning System (3 works) · GNSS applications (3 works) · Remote sensing (3 works) · Telecommunications (3 works) · 3D Surveying and Cultural Heritage (2 works) · Aerospace Engineering (2 works) · Archaeological Research and Protection (2 works) · Archaeology (2 works) · Engineering (2 works)