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State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

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Page 1: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

State of Indiana Orthophotography and LiDAR

Program

R.N. WilkinsonSpecial thanks to:

Jim SparksJim Stout

Phil Worrall

Page 2: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Indiana’s Statewide GIS Framework Data

Layers

At the edge ofsome great

accomplishments

Page 3: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

• IndianaMap Data Sharing Initiative

• Broadband Mapping Program

• Local-Resolution NHD Development

• Orthophotography & LiDAR Program

• IGIC/ISPLS Height Modernization Pilot & the INDOT CORS Network

• The New IndianaMap Viewer R3

Statewide GIS Initiatives

Page 4: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Program History

• 2005 Statewide Imagery Project– DHS Grant was stimulus– Program the result of the IGIC Orthophoto

Workgroup– Primary goal was a one-year statewide acquisition– $8.5 Million cost– Completed in 2006

Page 5: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

$1.7 Billion worth of project and operationssupport

2005 Ortho Project Benefits

Page 6: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

2011 Indiana Statewide Program

Page 7: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Deliverables -

• Orthophotography– ECW files

• Compressed files

– GeoTiff• Located geographically

– Metadata– Tile Index

• 5000 x 5000 index

• LiDAR– Digital Elevation Models

• DEMs

– LAS files– Hydro Line Work

• Used to hydro flatten water bodies

– Tile Index• 5000 x 5000 index

Page 8: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

2011 Indiana Statewide ProgramAdministered through Indiana Office of Technology – State

Geographic Information Officer – Jim SparksBase Products

1’ Pixel Resolution – 4-Band ImageryUSGS-compliant, 1.5 meter post spacing LiDAR Digital Elevation Model

Available Buy-up Options6”-inch Resolution Ortho3”-inch Resolution Ortho1-meter post spacing LiDAR

Page 9: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Definition:A digital (electronic) aerial photograph that

has been modified to remove distortion from the camera & airplane and adjusted to fit the ground surface.

It is a photo that can be used as a MAP.

What is an Orthophotograph?

Page 10: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

All imagery All imagery hashasspatial error spatial error duedueto the to the distortingdistortingnature ofnature ofphotography.photography.

&&

Don’t forgetDon’t forgetTerrain Terrain DistortionDistortion

Cameras Distort Images

Page 11: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall
Page 12: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

2002 Orthos with2002 Orthos withold DEMold DEM

2003 Orthos with2003 Orthos withnew DEMnew DEM

Page 13: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Orthophotography has the geometric Orthophotography has the geometric characteristics of a map and the image characteristics of a map and the image qualities of a photograph. qualities of a photograph.

• distance measurementsdistance measurements

• area calculationsarea calculations

• determination of feature shapedetermination of feature shape

• direction calculationsdirection calculations

• determination of coordinates at a locationdetermination of coordinates at a location

• analyze changeanalyze change

Orthophoto Uses

Page 14: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Orthoimagery• Deliverables

– 4-Band 1”=200’ scale seamless orthoimagery

– GeoTIFF format– Enhanced Compression

Wavelet (ECW) format– 5,000 X 5,000 tiles– +/- 5.0 horizontal accuracy– NSSDA Standards– FGDC Metadata

Page 15: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Orthoimagery: Base Resolution 12-inch

Page 16: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Orthoimagery: Optional Resolution 6-inch

Page 17: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Orthoimagery: Optional Resolution 3-inch

Page 18: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Indiana LiDAR Program• Capture 1/3 of state/year• Base LiDAR product is:

– LiDAR Point Cloud1.5 Meter Post Spacing1st & Last & Intensity(LAS v12 format)

– Digital Elevation Model5-foot pixel, 5k-foot tiles,hydro-flattened(ERDAS Imagine IMG format)

• Buy-up:– 1-meter LiDAR– Contours

Page 19: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Statewide LiDAR Data Sources

Blue counties (new 2011 -2013 LiDAR capture planned)

Other Counties (recent County LiDAR projects)

Other Areas (recent FEMA LiDAR projects )

All data homogenized into statewide data product / delivery standard

Page 20: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Indiana LiDAR ProgramObjective• New LiDAR data – with many benefits

beyond standard DEM and DTM production, especially when combined with 4-band imagery:– Automatic Feature Extraction– Change Detection– Impervious Surface Analysis– Land Use/Land Cover Extraction– Forestry Analysis– Flood Analysis– Line of Site Analysis

Page 21: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

LiDAR

Light Detection and Ranging – laser range finding from an airplane or helicopter.

Builds a “cloud” of X,Y,Z points reflected back to the receiver.

Captures all reflective surfaces (ground, buildings, trees, utility lines). Not water.

Reflectivity can be used to determine type of surface.

Page 22: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

LiDAR Cloud Profile of Indy

Page 23: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

LiDAR shaded blue to red, oblique view. Arrow shows perspective of next slide.

Page 24: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

LiDAR of tree stand, oblique view. Note Cyan dots represent points on the ground. So, about 1/1000 points get to the ground through dense forest.

Page 25: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Definition – Digital Elevation Model

A 3D computerized representation of the variation of relief of the earth’s surface in the form of points of elevation (often supplemented by breaklines depicting severe changes in slope).

Used for:- Rectifying aerial photography.- Calculating ground contours.- 3D modeling of slope and drainage.

Page 26: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

DTM

DEM

Page 27: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Uses for LiDAR Data and DEM’s

• Point elevations• Warp correction on imagery• Building outline detection• Forestry production determination• 3d Modeling• 3d Mapping• Change detection on built up areas

Page 28: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Indiana LiDAR Program

Page 29: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

LiDAR shaded red to blue elevations. Trees are easily identifiable.

Page 30: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Depth Grids

• Depth of flooding derived from subtracting WSEL and terrain grids

• To be a standard deliverable for FEMA Flood Insurance Study modeling under RiskMAP

• Also a standard input for HAZUS-MH to determine flood loss impacts

Page 31: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall
Page 32: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Natural color ortho draped over LiDAR cloud, oblique view.

Page 33: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Contours from LiDAR(with Breaklines)

Page 34: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Access to Data

• IU Indiana Spatial Data Portal– Single file download– Multi-file download tool

• Indiana Map• State of Indiana• County Governments• Open Topography website • IGIC Corporate or Institutional Members

– Hard drives available through Phil Worrall

Page 35: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Indiana LiDAR Program

Page 36: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Indiana Map

Internet dependant

A WORK IN PROGRESS

Page 37: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Indiana Maphttp://maps.indiana.edu/layers.html

Through the Layer Gallery

Page 38: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Access

• State of Indiana – GIO office• County Govt –

– Check with local government for availability– Each County got their data delivered on hard

drives.

Page 39: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Introducing the Open Topography Server for Indiana

IndianaStatewide

LiDARData

Page 40: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall
Page 41: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

The Open Topography Server for Indiana

Page 42: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

The Open Topography Server for Indiana

Page 43: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

The Open Topography Server for Indiana

Page 44: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

The Open Topography Server for Indiana

Page 45: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Open Topography ServerClasses of data types available

• LiDAR point cloud data

• Standard digital elevation models (DEMs)

• For LiDAR point cloud data, web-based tools are also available to process these data into custom DEMs.

Page 46: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

The Open Topography Server for Indiana

Page 47: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

The Open Topography Server for Indiana

Page 48: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

The Open Topography Server for Indiana

Page 49: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

The Open Topography Server for Indiana

Page 50: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

The Open Topography Server for Indiana

Page 51: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

The Open Topography Server for Indiana

Page 52: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Open Topography Server for Indiana

Page 53: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

TOOLS in Open Topography

Page 54: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

Download and do some REAL COOL THINGS!

Open Topography Server for Indiana Indiana

Page 55: State of Indiana Orthophotography and LiDAR Program R.N. Wilkinson Special thanks to: Jim Sparks Jim Stout Phil Worrall

QUESTIONS?