Luca Di Angelo
Biographic Data
| ID | 634154 |
|---|---|
| NAME | Luca Di Angelo |
| GIVEN NAMES | Luca |
| FAMILY NAME | Di Angelo |
| SIGNATURE | DI ANGELO L |
| AFFILIATIONS | University of L'Aquila |
| ORCID | 0000-0002-5341-0500 |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 8 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2017 |
| LATEST PUBLICATION YEAR | 2024 |
| H-INDEX | 2 |
Automatic analysis of pottery sherds based on structure from motion scanning: The case of the Phoenician carinated-shoulder amphorae from Tell el-Burak (Lebanon)
Over the last few years, significant interest has been addressed in developing computer-based methods to document and analyze fragments of ceramics sherds in archaeology. This is because traditional manual processes do not allow for an objective, repeatable, and reproducible analysis of the large quantities of material needed to fully understand and explain human practices in various cultural contexts, such as the economy, daily life, and the mat…
A review of computer-based methods for classification and reconstruction of 3D high-density scanned archaeological pottery
A Semi-Automatic Reconstruction of Archaeological Pottery Fragments from 2D Images Using Wavelet Transformation
The problem of matching fragments of three-dimensional (3D) objects has gained increasing attention, and several approaches have been developed to solve this problem. To date, however, to the best knowledge of the authors, there is no computer-based method supporting archaeologists in this activity. For this purpose, in this paper, a semi-automatic approach is proposed for the reconstruction of archaeological pottery fragments based on two-dimens…
An AHP-based method for choosing the best 3D scanner for cultural heritage applications
Automatic dimensional characterisation of pottery
An AHP-based method for choosing the best 3D scanner for cultural heritage applications
Automatic dimensional characterisation of pottery
Automatic analysis of pottery sherds based on structure from motion scanning: The case of the Phoenician carinated-shoulder amphorae from Tell el-Burak (Lebanon)
Over the last few years, significant interest has been addressed in developing computer-based methods to document and analyze fragments of ceramics sherds in archaeology. This is because traditional manual processes do not allow for an objective, repeatable, and reproducible analysis of the large quantities of material needed to fully understand and explain human practices in various cultural contexts, such as the economy, daily life, and the mat…
Automatic dimensional characterisation of pottery
An AHP-based method for choosing the best 3D scanner for cultural heritage applications
A Semi-Automatic Reconstruction of Archaeological Pottery Fragments from 2D Images Using Wavelet Transformation
The problem of matching fragments of three-dimensional (3D) objects has gained increasing attention, and several approaches have been developed to solve this problem. To date, however, to the best knowledge of the authors, there is no computer-based method supporting archaeologists in this activity. For this purpose, in this paper, a semi-automatic approach is proposed for the reconstruction of archaeological pottery fragments based on two-dimens…
A review of computer-based methods for classification and reconstruction of 3D high-density scanned archaeological pottery
Automatic analysis of pottery sherds based on structure from motion scanning: The case of the Phoenician carinated-shoulder amphorae from Tell el-Burak (Lebanon)
Over the last few years, significant interest has been addressed in developing computer-based methods to document and analyze fragments of ceramics sherds in archaeology. This is because traditional manual processes do not allow for an objective, repeatable, and reproducible analysis of the large quantities of material needed to fully understand and explain human practices in various cultural contexts, such as the economy, daily life, and the mat…
Archaeology (5 works) · 3D Surveying and Cultural Heritage (4 works) · Archaeological Research and Protection (4 works) · Artificial Intelligence (4 works) · Computer Science (4 works) · Geography (4 works) · Image Processing and 3D Reconstruction (4 works) · Pottery (4 works) · Mathematics (3 works) · Computer vision (2 works)