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Spatial Database
Integration of spatial database and statistical data
Nordic Forum for Geo-statistics
Kongsvinger, Norway
12-14.9.2006
Maija Leppänen
Statistics Finland
Contents
About Production Model and a new data base structure
 GIS in the new environment
 Modelling GIS and statistical attribute data
 Examples
 Benefits and summary

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2
Production model of ‘Census’ statistics
Downsizing of processes in IBM mainframe
 modernising production of statistics
 integrating digital map data, locations of
statistical entities and attribute data
together in the same environment
 statistics are produced in the old and new environment
and results are compared

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3
Data Base Architecture of ‘Census’ data
Register
Data
GIS
Data Base
Others
Meta
Data
Henkilö
Perhe
PK,FK2
PK,FK2
PK,FK2
PK,FK2
Henkilö
Perhe
Electronically
collected data
PK,FK2
PK,FK2
PK,FK2
PK,FK2
PK
htun
Penro
Rnro
huonro
vuosi
pety
asra
pekoko
uusper
petsuh
kulyks
Rnro
Huonro
vuosi
asmu
akoko
kulyks
svatva
ly65
la3
la7
htun
syntymäaika
kuolinaika
sukupuoli
maastamuutto
maahanmuutto
Henkilo_vuosi
Henkilo_vuosi
Avaintaulu
Asuntokunta_vuosi
PK,FK1
PK,FK1
PK,FK1
PK
Penro
Rnro
huonro
vuosi
pety
asra
pekoko
uusper
petsuh
kulyks
syntymäaika
kuolinaika
sukupuoli
maastamuutto
maahanmuutto
PK,FK1
PK,FK1
vuosi
hnro
FK1
FK1
Rnro
Penro
Kieli
kansalaisuus
ikä
viitehenklö_asku
viitehlö_perhe
ammatti
ptoim
tola
tuktk
tyott
huonro
PK,FK2
Penro
PK,FK1,FK2 Rnro
PK,FK2
huonro
PK,FK2,FK4 vuosi
PK,FK4
hnro
koord
htun
FK3
FK1
Avaintaulu
Asuntokunta_vuosi
PK,FK1
PK,FK1
PK,FK1
Rnro
Huonro
vuosi
asmu
akoko
kulyks
svatva
ly65
la3
la7
PK,FK1
PK,FK1
vuosi
hnro
FK1
FK1
Rnro
Penro
Kieli
kansalaisuus
ikä
viitehenklö_asku
viitehlö_perhe
ammatti
ptoim
tola
tuktk
tyott
huonro
PK,FK2
Penro
PK,FK1,FK2 Rnro
PK,FK2
huonro
PK,FK2,FK4 vuosi
PK,FK4
hnro
koord
htun
FK3
FK1
Rakennus
PK,FK1,FK2 Rnro
Rakennus
PK,FK1,FK2 Rnro
FK1,FK2
ratikta
vavv
rakoko
huonala
ratikeal
osaal
vuosi
Production Data base
User Interface,
SAS
SQL
FK1,FK2
ratikta
vavv
rakoko
huonala
ratikeal
osaal
vuosi
Data Ware House
Superstar
User Interface,
SAS,SQL
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Spatial database is a data base containing
digital map data and location data,
Also called: geodatabase or GIS database
Spatial database is a logical concept,
physically data is in more than one
SQL Server-database.
Geometry is administrated by ArcSDE-product
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5
Spatial data production and use
Micro- and macro-data
Map data,
locations of statistical data
as spatial data types
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6
Spatial Modelling of database




GMF : General Feature Model (Application Schema ISO 19109)
GML : Geographic Markup Language (ISO 19136, OGC)
 GMF:n XML-implementation
Finnish recommendations, work ongoing
ESRI’s Geodatabase
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An example of ESRI geodatabase schema
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8
Current Contents of the Geodatabase

In production:





Maintenance of buildings (as points)
Use of Municipal boundaries in different scales
Updating Sub-areas of municipalities
Using Grid nets of 1*1 km and 250*250 km together with
aggregated grid data
Testing



Postal code areas
Localities
...
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9
Common use of statistical entities and map data
Building_id
Co-ordinates
Sub-area code
Locality code
Municipality code
Geometry:Point
Digital map data
Municipality
Subarea
Postal code area
Point in polygonmethod
Locality
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Grid net 1*1 km
Aggregated
grid data
Person
Grid net 250*250 m
Aggregated
grid data
Producing
grid data
Person/year
Building/
Coordinates
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Benefits of using spatial database
Commonly used database
 Statistical attribute data in the same environment
 Maintenance in one place
 Processed will be simplified
 Quality will be better
 More possibilities
 Administration of large data is better

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Summary
Central spatial database is a
part of spatial infrastructure and is
one of the most important clue
in GIS-strategy of Statistic Finland
=>
Harmonised data sets to common use
22.5.2017
13
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