<?xml version="1.0" encoding="UTF-8" standalone="no"?><metadata>
    <idinfo>
        <citation>
            <citeinfo>
                <pubdate>2023-11-11T22:00:06</pubdate>
                <title>BUILDING</title>
                <geoform>vector digital data</geoform>
                <serinfo>
                    <sername>Building Footprint</sername>
                </serinfo>
                <onlink>https://data.cityofnewyork.us/Housing-Development/Building-Footprints/nqwf-w8eh</onlink>
            </citeinfo>
        </citation>
        <descript>
            <abstract>Building footprints represent the full perimeter outline of each building as viewed from directly above. Additional attribute information maintained for each feature includes: Building Identification Number (BIN); Borough, Block, and Lot information (BASE_BBL and MAPPLUTO_BBL); ground elevation at building base; roof height above ground elevation; construction year; GLOBAL ID; and feature type.</abstract>
            <purpose>This feature class is used by the NYC OTI GIS group to maintain and distribute an accurate 'basemap' for NYC. The basemap provides the foundation upon virtually all other geospatial data with New York.</purpose>
            <supplinf>Features are updated daily by OTI staff and a public release is available weekly on NYC Open Data. Every four years a citywide review is made of the building footprints and features are updated photogrammetrically.

For this dataset, the source imagery used for photgrammetric update was captured in the early spring of 2021. The New York State (NYS) Statewide Digital Orthoimagery Program (DOP) released the 2020 Annual Lot or orthoimagery which was acquired from March 2020 through April 2020 for New York City’s five boroughs, along with Nassau and Suffolk Counties. The orthoimagery was produced at 0.5 ft (~15cm) resolution, 8 bit, 4 band (RGB-NIR) and supports both natural color and color infrared display. For more details and specifics pertaining to these data, please refer to the DOP metadata information page.

Estimated positional accuracy for photogrammetrically updated features (those with GEOM_SOURCE = Photogrammetric) is +/- 2 feet and meets ASPRS Class 1 horizontal mapping standards and ASPRS vertical Class 2 accuracy specifications.  The mapping standards deal with Root Mean Square (RMS) calculations that states if a random number of clearly identifiable surveyed ground control points throughout the project were compared to the mapped features, the RMS of the points would not exceed 2'. In layman's terms,  95% of the data is accurate to +/- 2'.
Features with GEOM_SOURCE = Other (Manual) are captured by heads-up digitizing using the most current orthophotography available. These will be somewhat less accurate than the photogrammetrically updated features. Features so identified are reviewed photogrammetrically every four years and updated as necessary.

Features Captured
All buildings &gt;400 sq. feet and taller than 12 feet are to be captured.  Buildings with &lt;12 feet height but with BIN should be captured.
Buildings with BIN but &lt;400 sq. feet will be captured.
Buildings with flat roofs will be captured on roof outline, capturing the largest outline (excluding overhangs, awnings, construction features, etc.).
Buildings with pitched roofs will be captured on the building footprint.
Carports, when attached to main building, will be included in the outline. 
In cases where editors have no visual or plan information to digitize a footprint, a triangle symbol is used. These features are flagged as FEATURE_CODE = Placeholder.

Features Excluded
Do not collect interior divisions (use existing building layer and BIN as guide).
Do not collect temporary trailers or tents.
Do NOT collect roofs (overhang) to gas stations, unless connected to building.
Do NOT collect movable jet bridge for access to aircraft.
Do NOT collect awnings, scaffolds, or sidewalk sheds.
Do NOT collect small tool or storage sheds in backyards which have no visible car access.  In cases where there is no BIN for a feature, a dummy BIN (1000000, 2000000, etc. for each of the Boroughs, see LION manuals pdf) will be populated until we can determine an actual BIN for the structure.

Capture Update Notes
Guidelines for Photogrammetric Update: Use parcel data and BIN as guidance for collection.  Where the parcel data indicates that a building should be two or more geometries AND there is NO physical indication, split the building using the parcel lines.   Where the parcel data indicates that a building should be two or more geometries AND there is a physical indication, split the building using the physical indications.  In cases where geometry previously existed in the legacy data, populate all resulting geometries with the original BIN (BINs will be duplicated in these cases).
Use Parcel layer to place garages within parcel or at parcel boundary  check for special cases where parcel boundary clearly crosses garage.  In these cases, either split the garage using physical features, or use the property line where there is no distinguishing physical feature.

For more information on capture and update of the Building Footprints dataset, see (Capture Rules.) [https://github.com/CityOfNewYork/nyc-planimetrics/blob/master/Capture_Rules.md]

Guidelines for Manual Update: Features captured by manual update are digitized from the most recent aerial imagery available. In cases where no imagery is available, features are digitized using plan diagrams available from Dept. of Buildings. In cases where there is no imagery or plan source available, a triangle is added and FEAT_CODE is set to Placeholder. Ground elevations are taken from neighboring buildings or from nearby planimetric spot elevation point features. Roof heights are taken from Dept. of Buildings plan diagrams if available or measured from controlled terrestrial image sources. If no source is available, roof height is left zero or NULL. </supplinf>
        </descript>
        <status>
            <progress>In work</progress>
            <update>Weekly</update>
        </status>
        <spdom>
            <bounding>
                <westbc>-74.257061</westbc>
                <eastbc>-73.699273</eastbc>
                <northbc>40.915087</northbc>
                <southbc>40.498294</southbc>
            </bounding>
        </spdom>
        <keywords>
            <theme>
                <themekt>None</themekt>
                <themekey>Buildings, Building footprint, BIN, Structure</themekey>
            </theme>
            <theme>
                <themekt>ISO 19115 Topic Categories</themekt>
                <themekey>structure</themekey>
            </theme>
        </keywords>
        <accconst>None</accconst>
        <useconst>Open Data policies and restrictions apply. See Terms of Use ( https://www.nyc.gov/home/terms-of-use.page ).</useconst>
        <ptcontac>
            <cntinfo>
                <cntorgp>
                    <cntorg>NYC Office of Technology and Innovation, Applications Division</cntorg>
                    <cntper>CSCL Team</cntper>
                </cntorgp>
                <cntpos>GIS Group</cntpos>
                <cntaddr>
                    <addrtype>mailing and physical</addrtype>
                    <address>2 Metrotech Center, 4th Floor</address>
                    <city>Brooklyn</city>
                    <state>NY</state>
                    <postal>11201</postal>
                    <country>US</country>
                </cntaddr>
                <cntvoice>None</cntvoice>
                <cntemail>gis-group@oti.nyc.gov</cntemail>
            </cntinfo>
        </ptcontac>
        <native> Version 6.2 (Build 9200) ; Esri ArcGIS 10.3.1.4959</native>
    </idinfo>
    <dataqual>
        <posacc>
            <horizpa>
                <horizpar>Estimated positional accuracy: 95% of the data is accurate to +/- 2 feet

All the NYCMap data was aerotriangulated and stereo-compiled to meet ASPRS Class 1 horizontal mapping standards and ASPRS vertical Class 2 accuracy specifications.  The mapping standards deal with Root Mean Square (RMS) calculations that states if a random number of clearly identifiable surveyed ground control points throughout the project were compared to the mapped features, the RMS of the points would not exceed 2'. In layman's terms,  95% of the data is accurate to +/- 2'.
</horizpar>
            </horizpa>
        </posacc>
    </dataqual>
    <spdoinfo>
        <direct>Vector</direct>
        <ptvctinf>
            <esriterm Name="Buildingslesst_ExportFeature">
                <efeatyp Sync="TRUE">Simple</efeatyp>
                <efeageom Sync="TRUE" code="4"/>
                <esritopo Sync="TRUE">FALSE</esritopo>
                <efeacnt Sync="TRUE">0</efeacnt>
                <spindex Sync="TRUE">TRUE</spindex>
                <linrefer Sync="TRUE">FALSE</linrefer>
            </esriterm>
        </ptvctinf>
    </spdoinfo>
    <spref>
        <horizsys>
            <planar>
                <planci>
                    <plance>coordinate pair</plance>
                    <coordrep>
                        <absres>0.0003280833333333335</absres>
                        <ordres>0.0003280833333333335</ordres>
                    </coordrep>
                    <plandu>foot_us</plandu>
                </planci>
            </planar>
            <geodetic>
                <horizdn>D North American 1983</horizdn>
                <ellips>GRS 1980</ellips>
                <semiaxis>6378137.0</semiaxis>
                <denflat>298.257222101</denflat>
            </geodetic>
        </horizsys>
    </spref>
    <eainfo>
        <detailed Name="Buildingslesst_ExportFeature">
            <enttyp>
                <enttypl>BLDG.BUILDING</enttypl>
                <enttypt Sync="TRUE">Feature Class</enttypt>
                <enttypc Sync="TRUE">0</enttypc>
            </enttyp>
            <attr>
                <attrlabl>BIN</attrlabl>
                <attrdef>Building Identification Number. A number assigned by City Planning and used by Dept. of Buildings to reference information pertaining to an individual building. The first digit is a borough code (1 = Manhattan, 2 = The Bronx, 3 = Brooklyn, 4 = Queens, 5 = Staten Island). The remaining 6 digits are unique for buildings within that borough. In some cases where these 6 digits are all zeros (e.g. 1000000, 2000000, etc.) the BIN is unassigned or unknown.</attrdef>
                <attalias Sync="TRUE">BIN</attalias>
                <attrtype Sync="TRUE">Integer</attrtype>
                <attwidth Sync="TRUE">4</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>BASE_BBL</attrlabl>
                <attrdef>Borough, block, and lot number for the tax lot that the footprint is physically located within.</attrdef>
                <attalias Sync="TRUE">BASE_BBL</attalias>
                <attrtype Sync="TRUE">String</attrtype>
                <attwidth Sync="TRUE">10</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl Sync="TRUE">NAME</attrlabl>
                <attalias Sync="TRUE">NAME</attalias>
                <attrtype Sync="TRUE">String</attrtype>
                <attwidth Sync="TRUE">50</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>OBJECTID</attrlabl>
                <attrdef>Internal feature number.</attrdef>
                <attrdefs>ESRI</attrdefs>
                <attrdomv>
                    <udom>Sequential unique whole numbers that are automatically generated.</udom>
                </attrdomv>
                <attalias Sync="TRUE">OBJECTID</attalias>
                <attrtype Sync="TRUE">OID</attrtype>
                <attwidth Sync="TRUE">4</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>HEIGHTROOF</attrlabl>
                <attrdef>Building Height is calculated as the difference from the building elevation from the Elevation point feature class and the elevation in the interpolated TIN model. This is the height of the roof above the ground elevation, NOT its height above sea level. Records where this is zero or NULL mean that this information was not available.</attrdef>
                <attalias Sync="TRUE">HEIGHTROOF</attalias>
                <attrtype Sync="TRUE">Double</attrtype>
                <attwidth Sync="TRUE">8</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl Sync="TRUE">LSTMODDATE</attrlabl>
                <attalias Sync="TRUE">LSTMODDATE</attalias>
                <attrtype Sync="TRUE">Date</attrtype>
                <attwidth Sync="TRUE">8</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>CNSTRCT_YR</attrlabl>
                <attrdef>The year construction of the building was completed. &lt;br&gt;Originally this column was populated using the Department of Finance Real Property Assessment Database (RPAD). Beginning in 2017 this will be the first year the completed structure is visible in available orthoimagery. Records where this is zero or NULL mean that this information was not available.</attrdef>
                <attalias Sync="TRUE">CNSTRCT_YR</attalias>
                <attrtype Sync="TRUE">Integer</attrtype>
                <attwidth Sync="TRUE">4</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>GEOMSOURCE</attrlabl>
                <attrdef>Indicates the reference source used to add or update the feature. Photogrammetric means the feature was added or updated using photogrammetric stereo-compilation methodology. This is the most accurate update method and should conform to the ASPRS accuracy standards. Other (Manual) means the feature was added or updated by heads-up digitizing from orthophotos or approximated from a plan drawing. These features will generally be less accurate and may not conform to the ASPRS accuracy standards.</attrdef>
                <attalias Sync="TRUE">GEOMSOURCE</attalias>
                <attrtype Sync="TRUE">String</attrtype>
                <attwidth Sync="TRUE">10</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>LSTSTATYPE</attrlabl>
                <attrdef>Feature last status type (Demolition, Alteration, Geometry, Initialization, Correction, Marked for Construction, Marked For Demolition, Constructed)

This field will eventually be consolidated into a single STATUS field with LSTSTATTYPE, as some of the information is redundant or no longer used.</attrdef>
                <attalias Sync="TRUE">LSTSTATYPE</attalias>
                <attrtype Sync="TRUE">String</attrtype>
                <attwidth Sync="TRUE">254</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>DOITT_ID</attrlabl>
                <attrdef>Identification number used within OTI to uniquely identify buildings. DOITT_IDs are never reused. </attrdef>
                <attalias Sync="TRUE">DOITT_ID</attalias>
                <attrtype Sync="TRUE">Integer</attrtype>
                <attwidth Sync="TRUE">4</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>SHAPE</attrlabl>
                <attrdef>Feature geometry.</attrdef>
                <attrdefs>ESRI</attrdefs>
                <attrdomv>
                    <udom>Coordinates defining the features.</udom>
                </attrdomv>
                <attalias Sync="TRUE">Shape</attalias>
                <attrtype Sync="TRUE">Geometry</attrtype>
                <attwidth Sync="TRUE">0</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>FEAT_CODE</attrlabl>
                <attrdef>Type of Building. List of values:
2100 = Building
5100 = Building Under Construction
5110 = Garage
2110 = Skybridge
1001 = Gas Station Canopy
1002 = Storage Tank
1003 = Placeholder (triangle for permitted bldg)
1004 = Auxiliary Structure (non-addressable, not garage)
1005 = Temporary Structure (e.g. construction trailer)</attrdef>
                <attrdomv>
                    <edom>
                        <edomv>2100</edomv>
                        <edomvd>Building</edomvd>
                    </edom>
                    <edom>
                        <edomv>5100</edomv>
                        <edomvd>Building under construction.</edomvd>
                    </edom>
                    <edom>
                        <edomv>5110</edomv>
                        <edomvd>Garage</edomvd>
                    </edom>
                    <edom>
                        <edomv>2110</edomv>
                        <edomvd>Skybridge</edomvd>
                    </edom>
                </attrdomv>
                <attalias Sync="TRUE">FEAT_CODE</attalias>
                <attrtype Sync="TRUE">Integer</attrtype>
                <attwidth Sync="TRUE">4</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>GROUNDELEV</attrlabl>
                <attrdef>Represents an interpolated elevation value at the centroid (center point) of the building. The process for capturing this is as follows:

1. A bare-earth surface is generated from the 2010 LiDAR by first removing any points that fall within a building polygon. These points are removed to eliminate any data anomalies (e.g., points captured at the roof level). A Digital Terrain Model (DTM) is then generated from the remaining points by interpolating the elevations around the building edges to develop a continuous surface.

2. Building centroids (i.e., the center point within each building) are then draped over the  DTM generated from step 1.  The bare-earth elevation value at that building centroid is then transferred to the ground elevation attribute of the building footprint.  The purpose is to determine a single elevation value that is representative of the elevation values surrounding each building.

       
</attrdef>
                <attrlabl>LSTMODDATE</attrlabl>
                <attalias Sync="TRUE">GROUNDELEV</attalias>
                <attrtype Sync="TRUE">Integer</attrtype>
                <attwidth Sync="TRUE">4</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>SHAPE_AREA</attrlabl>
                <attrdef>Area of feature in internal units squared.</attrdef>
                <attalias Sync="TRUE">Shape_Area</attalias>
                <attrtype Sync="TRUE">Double</attrtype>
                <attwidth Sync="TRUE">8</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
                <attrdefs Sync="TRUE">Esri</attrdefs>
                <attrdomv>
                    <udom Sync="TRUE">Positive real numbers that are automatically generated.</udom>
                </attrdomv>
            </attr>
            <attr>
                <attrlabl>MPLUTO_BBL</attrlabl>
                <attrdef>Borough, block, and lot number to be used for joining the building footprints data to DCP's MapPLUTO data, which aggregates data for condominium buildings using DOF's billing BBL. For non-condominium buildings the billing BBL is the same as the BASE_BBL. For condominium buildings the billing BBL may be the same for multiple buildings on different physical tax lots if they are part of the same billing unit for DOF purposes.</attrdef>
                <attalias Sync="TRUE">MPLUTO_BBL</attalias>
                <attrtype Sync="TRUE">String</attrtype>
                <attwidth Sync="TRUE">10</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl Sync="TRUE">Shape_Length</attrlabl>
                <attalias Sync="TRUE">Shape_Length</attalias>
                <attrtype Sync="TRUE">Double</attrtype>
                <attwidth Sync="TRUE">8</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
                <attrdef Sync="TRUE">Length of feature in internal units.</attrdef>
                <attrdefs Sync="TRUE">Esri</attrdefs>
                <attrdomv>
                    <udom Sync="TRUE">Positive real numbers that are automatically generated.</udom>
                </attrdomv>
            </attr>
            <attr>
                <attrlabl>GLOBALID</attrlabl>
                <attrdef>A field of type UUID (Universal Unique Identifier) in which values are automatically assigned by the geodatabase when a row is created. The GlobalID field is necessary for maintaining object uniqueness across replicas. All feature classes and tables participating in one-way or two-way replication must contain the GlobalID field. This field is not editable and is automatically populated when it is added for existing data.</attrdef>
                <attrdefs>ESRI</attrdefs>
                <attalias Sync="TRUE">GLOBALID</attalias>
                <attrtype Sync="TRUE">String</attrtype>
                <attwidth Sync="TRUE">38</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
        </detailed>
    </eainfo>
    <distinfo>
        <distliab>See access and use constraints information.</distliab>
    </distinfo>
    <metainfo>
        <metd>20230518</metd>
        <metc>
            <cntinfo>
                <cntorgp>
                    <cntorg>NYC Office of Technology and Innovation, Applications Division</cntorg>
                    <cntper>CSCL Team</cntper>
                </cntorgp>
                <cntpos>GIS Group</cntpos>
                <cntaddr>
                    <addrtype>physical</addrtype>
                    <address>2 Metrotech Center, 4th Floor</address>
                    <city>Brooklyn</city>
                    <state>NY</state>
                    <postal>11201</postal>
                    <country>US</country>
                </cntaddr>
                <cntvoice> None </cntvoice>
                <cntemail>gis-group@oti.nyc.gov</cntemail>
            </cntinfo>
        </metc>
        <metstdn>FGDC Content Standard for Digital Geospatial Metadata</metstdn>
        <metstdv>FGDC-STD-001-1998</metstdv>
        <mettc>local time</mettc>
    </metainfo>
    <dataIdInfo>
        <idPurp/>
        <idAbs>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P&gt;&lt;SPAN&gt;Building footprints represent the full perimeter outline of each building as viewed from directly above. Additional attribute information maintained for each feature includes: Building Identification Number (BIN); Borough, Block, and Lot information (BASE_BBL and MAPPLUTO_BBL); ground elevation at building base; roof height above ground elevation; construction year; GLOBAL ID; and feature type.&lt;/SPAN&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</idAbs>
        <idCitation>
            <resTitle>BUILDING</resTitle>
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        <searchKeys>
            <keyword>Buildings</keyword>
            <keyword>Building footprint</keyword>
            <keyword>BIN</keyword>
            <keyword>Structure</keyword>
            <keyword>structure</keyword>
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            <minScale>150000000</minScale>
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        <ArcGISFormat>1.0</ArcGISFormat>
        <ArcGISProfile>FGDC</ArcGISProfile>
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                <imsContentType export="False"/>
                <itemName Sync="TRUE">Buildingslesst_ExportFeature</itemName>
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            <coordRef>
                <type Sync="TRUE">Projected</type>
                <geogcsn Sync="TRUE">GCS_WGS_1984</geogcsn>
                <csUnits Sync="TRUE">Linear Unit: Meter (1.000000)</csUnits>
                <projcsn Sync="TRUE">WGS_1984_Web_Mercator_Auxiliary_Sphere</projcsn>
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        <countryCode Sync="TRUE" value="USA"/>
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        <distFormat>
            <formatName Sync="TRUE">File Geodatabase Feature Class</formatName>
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