Terrestrial GPS setup Fundamentals of Airborne LiDAR Systems, Collection and Calibration. JAMIE YOUNG Senior Manager LiDAR Solutions

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Transcription:

Terrestrial GPS setup Fundamentals of Airborne LiDAR Systems, Collection and Calibration JAMIE YOUNG Senior Manager LiDAR Solutions

Topics Terrestrial GPS reference Planning and Collection Considerations Calibration Helicopter LiDAR Processing Survey and Accuracy

Terrestrial Setup Review Site location to determine Target locations Determine type of setup based on requirements Geo-referencing required Relative to itself Need to see everything from Scanner locations Similar to Survey Process Want to get good solution

Terrestrial Ver$cal accuracy of 3mm Please note that accuracy is related to Project Process Develop process to get be<er accuracy 4

Setup

Single Set up

Location of Target locations in relationship to Area of interest

Detail

LiDAR: Light Detection and Ranging Aerial GPS (Global Positioning System) Based on GPS satellite triangulation, measures the location of the aircraft up to 0.1 second. Aerial sensor Collects/scans data, either photons (reflected light) or laser pulses IMU (Inertial Measurement Unit) Measures attitude (pitch/yaw/ roll) of aircraft every.002 second. Ground GPS Measures the location of the aircraft up to 0.1 second relative to a known ground position

LiDAR Collection Sensors 167Khz = 167,000 points per second Multi-pulse system = 2 pulse in air Scan-frequency function = 1000 Can be full waveform 500Khz = 500,000 points per second Multi-pulse system = 2 pulses in air Laser beam split Scan angle up 75 degrees Full waveform on 1 channel Optech Leica Trimble Reigl Please note that just because you can run at 500Khz does not mean you can collect at all elevations at 500khz

Flight planning

LiDAR Project Planning What you should know? Plan based on Workable blocks of data Delivery tiles Baseline requirements Flightline distance limitations Control locations Accuracy Application Topography Planned Flightlines

LiDAR Accuracy Things to Consider Accuracy is dependent on: Flying height Sensor parameters Rep Rate Scan Angle 40 degree of scan angle? Scan frequency System accuracy Terrain Vegetation Baseline distance Location of base station to Aircraft

LiDAR Project Planning Day or Night Safety considerations Leaf on or Leaf off Application dependent Summer, Spring, Fall, or Winter Most collects done in the spring and fall Summer collects take place for special applications such as forestry Winter collects based on geographic location Weather Smoke

Establishing Control Establish control for entire mapping program prior to collection using a minimum of two Horizontal and/or CORS stations and a minimum of three Vertical Bench Marks Perform Fully Constrained Network Adjustment Apply ITRF corrections to published or as applicable Adjustment supports a mapping operation not a survey Provide adjustment to all LiDAR providers involved in the program

PDOP and KP-Index PDOP and # of Satellites KP-index is a measure of the Geomagnetic activity from the Sun on the earth s atmosphere

Establishing Control

GPS Static initialization at start Static session at end PDOP less than 3 Processing is easier Achieve under 5 cm combined solution

IMU data Accelerometer Gyro Lever arms

Lidar Calibration - Critically Important Optech, Reigl, Leica and Trimble have calibration procedures Proprietary sensors have custom procedures Proper installation and lever arm Survey standardization GPS survey of antenna Total station survey of antenna PosPAC location of antenna

LiDAR Calibration Why is this Important? Lidar Calibration: Why Is It Important? Calibration after every installation Required to make sure the system is operating correctly Calibration every mission Provides necessary information in case of unforeseen occurrences Fly a minimum of 1 perpendicular line to flight lines collected for that mission Ensure ability to correct for roll, pitch, heading, scan scale and other potential biases 90% of problems are a result of improper installation 21

Lidar Calibration Flying lines perpendicular Flying lines parallel Calibration every mission 22

Planar Surface Calibration process finds planar surfaces

Lidar Calibration Flying a cross flight during collection 24

The Plane Results Graphically speaking

Roof Line Correction

Roof Line Correction

Roof Line Correction Profile of perpendicular lines at edge of scan on E-W line Profile of parallel lines at edge of scan

Helicopter LiDAR

Collection rates (Helicopter) Collect 80-160 linear kilometers a day Flying Height is 120 to 230 meters Used mostly for corridor mapping Transmission mapping Roadway mapping Pipeline mapping 20 40 PPM

Multi-Sensor configurations Ortho- Applanix DSS or Leica RCD30 Digital Camera Multi-Spectral and Hyper-Spectral Video -FLIR ULTRA MEDIA II 36X RGB Nikon D-200 (10.3 megapixel) digital camera GPS referencing LiDAR Sensors Low Altitude High Altitude Both?

Checking Calibration DZ ortho from several missions

Checking Calibration Differences between bad calibration and correct calibration Unresolved Area Resolved Area

Checking Calibration 4 missions - old calibration method

Difficult Collections and Data

Processing Steps 1. GPS Processing 2. IMU Processing 3. Calibration 4. LAS point Cloud Output 5. Classification 6. QC Manual Editing 7. Generation products Software Packages?

Processing - LiDAR Returns LiDAR System Returns 1 st Return Red 2 nd Return Blue 3 rd Return Green Last Return Yellow Up to Seven

Processing Bare Earth Model

Processing -Classification Lidar data

Manual Editing

LiDAR Processing LiDARgrammetry

Point Cloud Data Classified by Intensity

What s Important? Relative Accuracy Removal of Artifacts and Outliers How do you quantify this? Gaps Unacceptable Vegetation Removal & Other Classifications How do you quantify this? Check Point Verification Horizontal Accuracy Vertical Accuracy

Check Point Surveys Five Main Categories Hard Surface Low Grass High Grass Brush Forest What does this mean? By region? Point distribution?

Verification of Point Class Legend High Vegetation Points Medium Vegetation Points Bare Soil points

Accuracy What accuracy do you need? What are you doing?

Typically Speaking? Fixed Wing MPia, ALS-70 and GEMINI Vertical accuracy achieved: 3 12 cm Horizontal accuracy achieved: 10 27 cm Helicopter LiDAR Reigl 680, Optech Orion and Leica ALS70-C Vertical accuracy achieved: 1-2 cm Horizontal accuracy achieved: 5-10 cm Data meets accuracy specification?

Publications LIDAR for Dummies American Surveyor Mobile Mapping Professional Surveyor Calibration Software

WILDER LiDAR Blog http://bloglidar.com

Thank You