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At the conclusion of this course, the student should be able to:
1. Define terms related to advanced ARSP
2. Identify ARSP software applications
3. Download data from ARSP sensors and devices
4. Process static and Real-time Kinematic Global Navigation Satellite System (RTK GNSS) control data
5. Process Inertial Measurement Unit (IMU) trajectory data
6. Process aero-triangulation data
7. Fit aerial and terrestrial models to ground
8. Export final data models to CADD
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Lecture-Related Topics & Scope:
I. Planimetry and Planimetric Mapping
A. Angular orientation
B. Ground registration
C. Photomaps vs Mosaics
1. Uncontrolled
2. Semi controlled
3. Controlled
II. Analytical Photogrammetry
A. Orientation
B. Photo control
C. Collinearity
III. Stereoscopic Methods
IV. ARSP Ground Control
A. Advanced ground control
B. Ground control targets
C. Picture points
D. GPS capture of ground control
1. Static
2. RTK
3. Real-time Network (RTN)
E. Post processing
V. Error and Error Propagation
A. Units
B. Error
C. Descriptive statistics
D. Adjustment
1. Classical
2. Least squares
3. Adjustment applications
a. Introduction to Star*Net
b. Introduction to MAGNET tools
VI. ARSP Advanced Concepts
A. Aero-triangulation
1. Concept
2. Mathematics
3. Mechanics
4. Methodology
B. ARSP flight trajectory
1. IMU purpose and function
2. Physics of flight trajectory
3. Trajectory processing software applications
VII. ARSP Data Management
A. ARSP data and data types
1. Aerial imagery
2. Photogrammetric
3. Light Detection and Ranging (LiDAR)
4. Other analytical imagery types
a. Infrared
b. Multispectral
i. Normalized Difference Vegetation Index (NDVI)
c. Hyperspectral
ii. Vegetation fingerprinting
B. ARSP data capture
C. ARSP data storage
D. ARSP data management
E. ARSP data validation
VIII. Advanced Elevation Surfaces
A. Creation
B. Analysis
C. Digital Elevation Models (DEM)
1. Bare earth models
2. Hydro flattening
D. Digital Terrain Models (DTM)
1. Features
2. Break lines
3. Topography
E. Digital Surface Models (DSM)
1. Built environment
IX. Introduction to Building Information Models (BIM)
X. ARSP data analysis
A. Model-fitting
B. Goodness-of-fit
XI. Data Export to Other Applications and Environments
Lab-Related Topics & Scope:
I. Neat Model Analysis
II. Ground Control Analysis
III. Error and Error Analysis
A. Descriptive statistics
B. Adjustment methods
1. Classical
2. Least squares
IV. Aero Triangulation Analysis
V. Trajectory Analysis and Ground Control
VI. General Data Management, Archiving
A. Computer hardware
B. Best practices
VII. Ortho Mosaicking
A. Stereo pair data management and processing
B. Orthomosaic data management and processing
C. Orthomosaic comparative analysis
VIII. Other Analytical Imagery Types
A. Infrared, hyperspectral, multispectral
B. NDVI mapping applications
IX. LiDAR Data Management
A. LiDAR data segmentation and storage
B. Statistical model-fitting of LiDAR point clouds
X. Elevation Surface Creation
A. Photogrammetric DEM
1. DTM
2. DSM
B. LiDAR DEM
1. DTM
2. DSM
XI. Data and Model Export to CADD and GIS
XII. Final Model Applications in CADD and GIS
A. Single models
B. Mixed models
C. BIM
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Elements of Photogrammetry with Applications in GIS. 4th Edition, Wolf, P., DeWitt, B. 2014 (classic).
Introduction to Modern Photogrammetry. 1st Edition. Mikhail, E., Wiley. 2013 (classic).
Analysis and Adjustment of Survey Measurements. 1st Edition, Mikhail, E., Gracie, G. 1983 (classic).
Adjustment Computations - Spatial Data Analysis. 6th Edition, Ghilani, C. Wiley. 2018.
Instructor prepared materials