Measuring Completeness of Building Footprints in OpenStreetMap over Space and Time
Abstract
:1. Introduction
1.1. Motivation
1.2. Related Work
2. Study Areas, Datasets and Preprocessing
2.1. Study Areas
2.2. Data Sets
OpenStreetMap | Reference Data | ||
---|---|---|---|
Official Building Polygons (North Rhine Westphalia) | Buildings from ATKIS® Base-DLM (Saxony) | ||
Building definition | No definition | State specific building definition (e.g., § 2 of the State Building Code North-Rhine Westphalia [29]) corresponds to the definition from Eurostat, with the exception that only aboveground buildings are considered [26] | Corresponds to the definition from Eurostat, with the exception that only aboveground buildings are considered, see definition in ATKIS [30] |
Mapping rule | No strict mapping rules, only recommendations, according to OSMWiki, that buildings can be mapped as individual buildings, the outline of building blocks or other complex arrangement of properties. If possible the outline should represent the outer edge of the wall [31] | The characteristic outer edge of the wall of the building and/or the sharing firewall between interconnected buildings, see object type catalogue OBAK-LiegKat NRW [32] | Complete recording of all buildings with addresses and all other buildings except very small buildings (e.g., shelters, garden sheds), see ATKIS [30] |
Feature Type | Polygon | Polygon | Polygon |
Data capture process | Different data acquisition techniques and sources: e.g., data from handheld GPS-device, digitizing from aerial imagery (e.g., Bing, Mapquest), data extractions and import by government agencies, observation from street level (e.g., sketch drawing, taking measurements) | Derived database contains a copy of data from cadastral databases (e.g., ALK or ALKIS®) were buildings are captured through official surveying (Folie 11 in ALK) or mapping through large-scale maps or aerial imagery interpretation (Folie 84 in ALK) | Digitized from digital orthophotos, terrestrial surveys or import from other authoritative data sources (e.g., surveying agencies of cities), see surveying office Saxony GeoSN [33] |
Positional accuracies | Depending on acquisition technique (e.g., resolution of aerial imagery, distortion, GPS accuracy) | planimetric accuracy of ±0.5 m, see [26] | planimetric accuracy of ±3 m [30] |
Updating | Continuous updating | Continuous updating of primary data bases (ALK), yearly updating of the derived official building polygon dataset | Periodical updating, within maximally 3 years |
2.3. Preprocessing
3. Methods to Analyze the Level of Completeness
3.1. Comparison of Quantities Based on Reference Areas (Unit-Based Method)
3.2. Comparison of Objects Based on the Centroid and Degree of Overlap (Object-Based Method)
3.3. Overview of the Tested Methods
Unit-Based Comparison | Object-Based Comparison | |
---|---|---|
Centroid Method | Overlap Method | |
The proportion of the total number of OSM buildings and the reference buildings per unit in %. | The proportion of the total number of reference buildings that are represented in OSM in %. The centroid of a reference building should intersect an OSM building. | The proportion of the total number of reference buildings that are represented in OSM in %. At least 50% of the reference building footprint area should overlap an OSM building. |
Proportion of the total area of all OSM buildings and the reference buildings per unit in %. |
3.4. Cartographic Visualization of Data Completeness Patterns
4. Results of the Completeness Analysis
4.1. Completeness of OSM Buildings at Present
Unit-Based Method | Object-Based Method | ||||
---|---|---|---|---|---|
Saxony | No. of Buildings in Reference | CNo (%) | CArea. (%) | CCentr (%) | COverlap (%) |
Leipzig (large city) | 119,158 | 25.2 | 58.8 | 28.9 | 28.4 |
Chemnitz (medium-sized town) | 104,987 | 24.3 | 60.4 | 32.0 | 31.4 |
Bautzen (small town) | 15,223 | 37.4 | 80.8 | 47.8 | 44.5 |
Vogtlandkreis (rural district) | 115,930 | 6.5 | 15.6 | 4.9 | 4.5 |
Entire State | 1,891,544 | 14.5 | 30.7 | 15.3 | 14.4 |
North Rhine-Westphalia | No. of Buildings in Reference | CNo (%) | CArea. (%) | CCentr (%) | COverlap (%) |
Essen (large city) | 163,427 | 30.9 | 84.1 | 53.5 | 52.5 |
Münster (medium-sized town) | 117,393 | 5.5 | 28.1 | 8.8 | 8.7 |
Lemgo (small town) | 25,002 | 1.2 | 13.0 | 1.8 | 1.7 |
Kreis Coesfeld (rural district) | 150,933 | 9.4 | 21.4 | 10.5 | 9.6 |
Entire State | 8,887,495 | 15.6 | 45.9 | 25.0 | 24.3 |
4.2. Growth in Completeness of OSM Buildings over Time
Completeness in % at Different Time Points | Difference in Percentage Points (p.p.) | Completeness Growth Rate p.a. in % | |||||
---|---|---|---|---|---|---|---|
Temporal Reference | 17 November 2011 | 24 May 2012 | 5 November 2012 | b/t 1st and 3rd | b/t 1st and 3rd | ||
Number of Buildings (Unit-Based Method) | |||||||
Saxony | 14.5 | 19.7 | 22.8 | 8.3 | 56.8 | ||
Leipzig | 25.2 | 29.6 | 30.7 | 5.5 | 21.7 | ||
Chemnitz | 24.3 | 26.2 | 28.0 | 3.8 | 15.6 | ||
Bautzen | 37.4 | 47.4 | 48.1 | 10.7 | 28.6 | ||
Vogtlandkreis | 6.5 | 8.5 | 12.2 | 5.6 | 85.6 | ||
Sum of Building Area (Unit-Based Method) | |||||||
Saxony | 30.7 | 37.6 | 41.7 | 11.0 | 35.9 | ||
Leipzig | 58.8 | 65.7 | 68.4 | 9.6 | 16.3 | ||
Chemnitz | 60.4 | 66.4 | 70.3 | 9.9 | 16.3 | ||
Bautzen | 80.8 | 91.5 | 92.7 | 11.9 | 14.7 | ||
Vogtlandkreis | 15.6 | 18.7 | 23.1 | 7.5 | 48.4 | ||
Number of Buildings (Centroid Method) | |||||||
Saxony | 15.3 | 20.0 | 23.0 | 7.7 | 50.6 | ||
Leipzig | 28.9 | 33.8 | 35.0 | 6.1 | 20.9 | ||
Chemnitz | 32.0 | 34.4 | 36.3 | 4.3 | 13.5 | ||
Bautzen | 47.8 | 57.1 | 60.0 | 12.2 | 25.5 | ||
Vogtland | 4.9 | 5.6 | 7.9 | 3.0 | 61.8 | ||
Number of Buildings (Overlap Method) | |||||||
Saxony | 14.4 | 18.8 | 22.2 | 7.7 | 53.8 | ||
Leipzig | 28.4 | 33.1 | 34.5 | 6.2 | 21.8 | ||
Chemnitz | 31.4 | 33.7 | 35.8 | 4.4 | 14.0 | ||
Bautzen | 44.5 | 53.1 | 57.8 | 13.3 | 30.4 | ||
Vogtland | 4.5 | 5.1 | 7.2 | 2.7 | 59.6 |
5. Sources of Error in Measuring Completeness
5.1. Discrepancies in Modeling
1:1 | 1:0 | 1:n |
The building in the reference dataset corresponds to one building in the target dataset | The building in the reference dataset does not correspond to any building in the target dataset | The building in the reference dataset corresponds to several (n) buildings in the target dataset |
n:m | 0:1 | n:1 |
Several (n) buildings in one dataset correspond to several (m) buildings in the other dataset | No building in the reference dataset corresponds to a building in the target dataset | Several (n) buildings in the reference dataset correspond to one building in the target dataset |
5.2. Positional Mismatches
6. Conclusions and Outlook
6.1. Conclusions
6.2. Outlook
Acknowledgments
Conflicts of Interest
References
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Hecht, R.; Kunze, C.; Hahmann, S. Measuring Completeness of Building Footprints in OpenStreetMap over Space and Time. ISPRS Int. J. Geo-Inf. 2013, 2, 1066-1091. https://doi.org/10.3390/ijgi2041066
Hecht R, Kunze C, Hahmann S. Measuring Completeness of Building Footprints in OpenStreetMap over Space and Time. ISPRS International Journal of Geo-Information. 2013; 2(4):1066-1091. https://doi.org/10.3390/ijgi2041066
Chicago/Turabian StyleHecht, Robert, Carola Kunze, and Stefan Hahmann. 2013. "Measuring Completeness of Building Footprints in OpenStreetMap over Space and Time" ISPRS International Journal of Geo-Information 2, no. 4: 1066-1091. https://doi.org/10.3390/ijgi2041066