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Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

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Page 1: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Getting the Map into the Computer

Lecture 4

Introduction to GISs

Geography 176A

Department of Geography, UCSB

Summer 06, Session B

Page 2: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Getting the Map into the Computer

4.1 Analog-to-Digital Maps

4.2 Finding Existing Map Data

4.3 Digitizing and Scanning

4.4 Field and Image Data

4.5 Data Entry

4.6 Editing and Validation

Page 3: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

GIS maps are digital not analog

Maps have a communications function but...

A map has a storage function for spatial data

Somehow, the visually “stored” data must get digital

Real and Virtual maps

Page 4: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

GIS Data Conversion

Traditionally most of the cost of a GIS project

One time cost

Depends on reuse

Requires maintenance

Page 5: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Finding Existing Map Data

Map libraries

Reference books

State and local agencies

Federal agencies

Commercial data suppliers e.g. GeographyNetwork.com, Rand McNally, Thompson, NAVTEQ, maps.com

Page 6: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Existing Map Data

Existing map data can be found through a map library, via network searches, or on media such as CD-ROM and disk.

Many major data providers make their data available via the World Wide Web, a network of file servers available over the Internet.

GIS vendors package data with products.

Page 7: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Commercial vendors

Page 8: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Federal Data Agencies

U.S. Geological Survey (USGS)

National Oceanic & Atmospheric Administration (NOAA)

Census Bureau

National Geospatial-Intelligence Agency (NGA)

Environmental Protection Agency (EPA)

many more...

Page 9: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

National Spatial Data Infrastructurehttp://www.fgdc.gov/nsdi/nsdi.html

Page 10: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Geodata.gov

Page 11: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

National Spatial Data Clearinghouse

Page 12: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

USGS: National Mapping

Page 13: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

National Map Viewer

Page 14: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

DOQQ plus DLG streets

Page 15: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

DRG plus DLG streets

Page 16: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

NLCDB plus DLG streets

Page 17: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Seamless data download

Page 18: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Other components of the NSDI (Portals, standards, services, data)

Geospatial Onestop

Geography Network

EROS Data Center

FGDC: Standards

Alexandria Digital Library

State data centers e.g. Teale in CA

MapQuest

NAVTEQ, etc.

Counties, municipalities, universities, tribes, etc.

Page 19: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

U.S. Bureau of the Census

Page 20: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

NOAA Weather and other data

Page 21: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Distributed active archive center

Sioux Falls, SD

Operated by USGS

Eros Data Center

Page 22: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

US GeoDataftp access toDEMDLGGNISGIRASetc.

Page 23: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

GNISFeature locations

Page 24: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

GIRASLand Use and Land Cover Data

Page 25: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

GIRAS into Arc/Info (GIRASARC)

Page 26: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Terrain dataDEMDLG ContoursDCW Contours

Page 27: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Your Spatial Data “Rights”

US Federal

– FOIA– COFUR

State (e.g. California, Teale Data Center)

Local (e.g. Portland, OR Metro)

Other countries

Protection for security

Steganography, watermarks, deliberate error

Attributes vs. map data

Page 28: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

O A K R I D G E N A T I O N A L L A B O R A T O R YU . S . D E P A R T M E N T O F E N E R G Y

O c c a s i o n a l l y T I G E R D a t a a r e I n a c c u r a t e o r I m p r e c i s e

Page 29: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

CORONA (KH Satellites)Goleta, CA, 1967 Image

Page 30: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

GIS data can be:

Purchased

Found from existing sources in digital form

Captured from analog maps by GEOCODING

Page 31: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

GEOCODING

Geocoding is the conversion of spatial information into digital form

Geocoding involves capturing the map, and sometimes also capturing the attributes

Necessarily involves coordinates

Often involves address matching

Page 32: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

GEOCODING LEAVES A “STAMP” ON DATA

The method of geocoding can influence the structure and error associated with the spatial information which results

Example: scanning (raster), digitizing (vector)

Page 33: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Hand out the Attendance Sheet,U idiot!!

Page 34: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Geocoding methods for maps

Digitizing

Scanning

Field data collection

Page 35: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Digitizing

Captures map data by tracing lines from a map by hand

Uses a cursor and an electronically-sensitive tablet

Result is a string of points with (x, y) values

Page 36: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

The Digitizing Tablet

Page 37: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Digitizing

Stable base map

Fix to tablet

Set coordinate system

Digitize control points

Determine coordinate transformation

Trace features

Proof plot

Edit

Clean and build topology

Page 38: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Digitizing

Cursor data entry

Secondary tablet (menu/template)

Voice command entry

Point mode

Stream mode (one point / time unit)

Distance mode (one point / distance unit)

Page 39: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Selecting points to digitize

Page 40: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Some common digitizing errors

Slivers

Duplicate lines

Duplicate nodes

Unended lines

Gaps

Zingers

Page 41: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Scanning

Places a map on a glass plate, and passes a light beam over it

Measures the reflected light intensity

Result is a grid of pixels

Image size and resolution are important

Features can “drop out”

Page 42: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Scanning

Flat bed

Drum

DPI

File size

Page 43: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Scanning example

This section of map was scanned, resulting in a file in TIF format that was bytes in size. This was a file of color intensities between 0 and 255 for red, green, and blue in each of three layers spaced on a grid 0.25 millimeter apart. How much data would be necessary to capture the features on your map as vectors? Would it be more or less than the grid (raster) file?

15 x 15 cm (3.6 x 3.6 km)

grid is 0.25 mm

ground equivalent is 6 m

600 x 600 pixels

one byte per color (0-255)

1.08 MB

Page 44: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

On-screen digitizing

Page 45: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Isolate layer and capture

Page 46: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Resolve errors

Page 47: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Automatic Raster-to-vector

Page 48: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Rasterization problems

Page 49: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Feature vs. Text

Page 50: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Field data collection

Page 51: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

GPS navigation/tracks

Page 52: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Attribute data

Logically can be thought of as in a flat file

Table with rows and columns

Attributes by records

Entries called values

Page 53: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Address Matching

Most GISs contain capability

Start with 123 Main St, Santa Barbara, CA 93101

End with Coordinates

May need to interpolate along blocks

Street number range, left and right side e.g. 101-199

Page 54: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Database Management Systems

Data definition module sets constraints on the attribute values

Data entry module to enter and correct values

Data management system for storage and retrieval

Legal data definitions can be listed as a data dictionary

Database manager checks values with this dictionary, enforcing data validation

Page 55: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Database elements

Type of value

Range

Missing data

Duplicate data

Key

Page 56: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

The Role of Error

Enforcement for map data is usually by using topology

Map and attribute data errors are the data producer's responsibility, but the GIS user must understand error

Accuracy and precision of map and attribute data in a GIS affect all other operations, especially when maps are compared across scales

Page 57: Getting the Map into the Computer Lecture 4 Introduction to GISs Geography 176A Department of Geography, UCSB Summer 06, Session B

Coming next….

What is where?