Preparing a Survey Plan for NSW LandXML Export¶
This guide walks through the complete process of preparing a survey plan in AutoCAD using R3Survey, ready for NSW LandXML export and lodgement via LRS Connect.
How R3Survey differs from other NSW LandXML tools
If you've used Nixon's LandXML for AutoCAD (LXML4AC) or the LRS Digital Plan Builder, you'll find R3Survey takes a similar underlying approach — all three programs store plan data as XData on drawing entities, not as text. In Nixon's LXML4AC, you run XAL to assign bearing/distance data to each line (computed from geometry, with optional rounding). In R3Survey, this happens automatically — you don't need to assign lines one by one.
Key differences in R3Survey:
- No per-line assignment step. Bearings and distances are computed from polyline vertex coordinates automatically at export time. You don't need to run a command on each line to "assign" it.
- No separate lines over polylines. In LXML4AC, you draw a lot definition polyline AND separate lines/arcs on top of it for the observations. In R3Survey, the polyline IS the geometry — boundaries, observations, and parcel definition all come from the one closed polyline.
- Properties panel instead of command prompts. Lot numbers, road names, easement descriptions, RM details, and parcel attributes are all set via the
R3PROPERTIESpanel — select an entity, fill in the fields. - Dimension labels are output, not input.
R3DIMSgenerates the bearing/distance text on the plan from the geometry (or overrides). The text is for plotting only — it is not read back. - Global rounding is controlled by
R3UNITS— bearing precision, distance precision, and area significant figures apply to all lines and areas in the drawing. - Dimension overrides for individual lines are entered in the Dimension Overrides expander in R3PROPERTIES when you need to show a different value (closing legs, compiled dimensions, custom rounding for a specific line).
Use R3SHOWOVERRIDES to see which entities have overrides, and R3CHECKOVERRIDES to review them in detail.
Because properties are stored on the entities, you can redraw geometry, adjust coordinates, or change rounding settings without losing your plan data — the properties travel with the entities.
Before you start¶
Make sure you have:
- R3Survey installed and licensed
- Your survey fieldwork reduced and ready to draft
- SCIMS data for the control marks on your plan (downloaded from the NSW Spatial Services portal as GeoJSON or CSV)
- Your plan number (e.g. DP 1234567) — this drives the layer naming. If you don't know the DP number yet, use a working name (e.g. your job reference) and rename later with R3PL.
Step 1 — Create the survey plan¶
Type [R3PLANLAYERSETTINGS] to open the survey plan dialog.
Enter:
- Plan name — your DP number (e.g.
DP1234567) - Datum — typically
MGA2020for modern surveys. Valid values:MGA2020,MGA94,MM,Local,ISG,TM. - Zone — your MGA zone (54, 55, or 56)
- Survey Type —
surveyedfor most plans,compiledfor compiled plans
Fill in the NSW LRS administration fields:
- LGA, Parish, County, Locality — as they'll appear on the plan
- Region —
UrbanorRural - Purpose — select from the dropdown (Subdivision, Consolidation, Easement, etc.)
- Plan Heading — the description that appears on the admin sheet (e.g. "Subdivision of Lot 1 DP 123456")
- Surveyor, Firm, Reference — your registration details
- Date — date of survey
All of these fields populate the LandXML header at export. Getting them right now saves time later.
See Survey Plan Setup (R3PL) for full details.
Step 2 — Import SCIMS control marks¶
Type R3IMPORTSCIMS and select your SCIMS data file (GeoJSON, CSV, or MOSS format).
Choose your import mode:
- Select — lets you pick an insertion point in the drawing. Use this when your survey is drawn at a local origin.
- Adopt — places marks at their MGA coordinates. Use this when working in MGA.
The marks appear as R3_PM_A blocks on the plan's Control Marks layer (e.g. DP1234_PMS) with all their metadata (MGA coordinates, GDA class, positional uncertainty, CSF, AHD height).
Assign datum terminals¶
After importing, you must designate two marks as your datum terminals — the two SCIMS marks that define the survey datum line.
- Click on a SCIMS mark in the drawing
- In
R3PROPERTIES, open the SCIMS Control Point expander - Set the Datum field to
X(Terminal A) orY(Terminal B) - Repeat for the second mark
Tip
X and Y are used for the Datum Terminals in [R3PROPERTIES] however, they export as datum terminals A and B in the LandXML file as per the recipe.
See Import SCIMS Control Points for full details.
Adding SCIMS marks manually¶
If you don't have a SCIMS data file, you can enter control marks manually:
- Type
R3PMto insert a permanent mark block at a picked point on the plan's Control Marks layer (in model space) - Select the block — the SCIMS Control Point expander appears in
R3PROPERTIES - Fill in the fields:
| Field | What to enter | Example |
|---|---|---|
| Mark | Mark type | SSM, PM, TS |
| Number | SCIMS mark number | 66367 |
| Easting | MGA easting | 323456.789 |
| Northing | MGA northing | 6234567.890 |
| GDA Class | Horizontal class | C, D, U |
| PU | Positional uncertainty (metres) | 0.030 |
| Currency | SCIMS date (ISO format) | 2024-06-15 |
| AHD | AHD height (if known) | 45.678 |
| Datum | Datum terminal designation | X or Y (for the two datum marks) |
All fields are editable — type a value and press Tab to save it to the entity. Fields left blank are omitted from the export.
Tip
The same fields are populated automatically when you use R3IMPORTSCIMS to import from a SCIMS data file. Manual entry is useful when you have mark data from a previous plan or field notes rather than a SCIMS download.
Step 3 — Draw the survey¶
Understanding survey plan layers¶
When you created the plan in Step 1, R3Survey created a set of component layers for you. Each layer type serves a specific purpose in the LandXML export:
| Layer component | What to draw on it | LandXML result |
|---|---|---|
| Boundaries | Lot boundaries (as closed polylines) | Parcel with class="Lot" |
| Roads | Road, reserved road, railway parcels (as closed polylines) | Parcel with class="Road"/"Reserved Road"/"Railway" |
| Easements | Easement and secondary interest parcels (as closed polylines) | Parcel with class="Easement"/"Covenant"/etc. |
| Hydrography | Water body parcels (as closed polylines) | Parcel with class="Hydrography" |
| Administrative Areas | LGA/parish/county boundaries (as closed polylines) | Parcel with class="Administrative Area" |
| Adjoining Boundaries | Existing adjoining lot boundaries (solid lines) | ReducedObservation with desc="Connection" (exported as dimensioned connection observations) |
| Miscellaneous | Drafting-only linework — not exported to LandXML | Not exported |
| Reference Marks | Lines from boundary corners to their reference marks | ReducedObservation with desc="Reference" |
| Connections | Lines from SCIMS marks to boundary corners (dashed lines) | ReducedObservation with desc="Connection" |
| Control | Lines between SCIMS marks (the control traverse) | ReducedObservation with desc="Connection" + combined scale factor |
Layer names follow the pattern {planName}_{componentName} (e.g. DP1234567_BOUNDARIES).
Draw on the right layer
The exporter only picks up entities from recognised plan component layers. A polyline on the wrong layer won't appear in the exported file.
Drawing parcel boundaries¶
Draw each parcel as a closed polyline on the appropriate component layer.
- Lots → Boundaries layer
- Roads, Reserved Roads, Railway → Roads layer
- Easements, Covenants, and other secondary interests → Easements layer
- Water bodies → Hydrography layer
- LGA, Parish, County boundaries → Administrative Areas layer
- Building, Common Property, and other types → Easements layer (set Class in R3PROPERTIES)
You can use R3TRAV to draw with precise bearing and distance entry, or use standard AutoCAD drafting tools (LINE, PLINE, etc.) and ensure the geometry is accurate.
Switching layers during R3TRAV
While in R3TRAV, type a prefix letter at the bearing prompt to switch component layers without leaving the command: b (Boundaries), r (Reference Marks), c (Control), o (Other/Connections), e (Easements). This is faster than manually changing layers.
Drawing reference marks¶
Draw a line on the Reference Marks layer from each boundary corner to its reference mark. The line direction (corner → mark or mark → corner) doesn't matter — the exporter handles both.
After drawing the line, select it and use the Reference Mark expander in R3PROPERTIES to set:
| Field | What to enter | When to set |
|---|---|---|
| Type | The mark type — DH&W, GIP, Peg, PM, Nail, etc. | Always |
| State | Found, Placed, Not Found, Gone, or Found By Me | Always |
| Origin | The plan the mark was originally placed on (e.g. DP123456) |
When State is Found or Found By Me — hidden when Placed |
| Desc | Optional physical description of the mark (e.g. "ON KB", "IN CONCRETE") | Optional |
The State field controls how the reference mark is exported:
| State | Meaning | Export effect |
|---|---|---|
| Found | Mark found, original reference accepted | distanceType=Adopted, distanceAccClass=Found, adoptedDistanceSurvey set from Origin |
| Placed | New mark placed by you | distanceType=Measured, distanceAccClass=Placed, no Origin needed |
| Found By Me | Mark found but re-referenced (you disagree with the original reference and re-measured it) | distanceType=Measured, distanceAccClass=Found By Me, adoptedDistanceSurvey set from Origin |
| Gone / Not Found | Mark is missing | No observation exported — monument record only |
All of these export attributes are derived automatically from the State and Origin fields — you don't need to set them separately.
Labelling reference marks¶
Use R3RMT (or R3ADDRMLABELS) to place reference mark labels on the drawing. The command reads the RM data from each line on the Reference Marks layer and places multi-line MText showing:
RM DH&W FD
256°15'56" - 16.935
(DP123456)
The label format adjusts automatically based on the mark state:
- Found:
RM TYPE FD/ bearing - distance / (Origin DP) - Placed:
RM TYPE/ bearing - distance - Found By Me:
RM TYPE FD/ (Origin DP) / bearing - distance / (BY ME) - Gone:
RM GONE/ (Origin DP) - Not Found:
RM NOT FOUND/ (Origin DP)
Drawing adjoining boundaries¶
Draw existing adjoining lot boundaries on the Adjoining Boundaries layer. These are the solid lines showing where neighbouring lots sit relative to your subject parcels — the existing boundaries that define the context around your new lots.
Entities on the Adjoining Boundaries layer export as desc="Connection" observations (dimensioned connection lines). The key difference from the Connections layer is the plotted appearance — adjoining boundaries plot as solid lines, while connections plot as dashed lines.
Use the Adjoining Boundaries layer for existing boundary lines that you want dimensioned on the plan (e.g. existing lot frontages along a road). For context lines that don't need dimensions, use the Miscellaneous layer instead.
Adjoining folio parcels
The NSW LandXML Recipe supports adjoining parcels with state="adjoining" and lot/plan names (e.g. 1/DP123456). R3Survey does not currently export adjoining folio parcels — adjoining boundary lines are exported as connection observations only. See Known Limitations for details.
Drawing connections¶
Draw connection lines on the Connections layer. These plot as dashed lines and export as desc="Connection" observations.
Connections include any line on the plan shown as a dashed line:
- SCIMS marks to boundary corners (the "two connections to boundary" required by the SSIR)
- Corner to corner connections across the plan
- Lines across roads
- Any other survey connection line that shows how the survey definition was obtained
Drawing the control traverse¶
Draw lines on the Control layer between SCIMS marks. These get the plan's combined scale factor applied automatically.
Miscellaneous (drafting only)¶
Draw any linework on the Miscellaneous layer that should appear on the plan but should NOT be exported to LandXML. Use this for:
- Broken adjoining boundaries shown for context that don't require dimensions
- Building outlines or other annotations
- Any other drafting element that is not part of the survey definition
Entities on the Miscellaneous layer are not exported and will not be picked up by R3DIMS.
Labelling permanent marks¶
Use R3ADDPMLABELS to place labels at each permanent mark and dimension the control connections:
- Mark labels — automatically placed next to each R3_PM_A block showing the mark name and state (e.g.
SS 62274 FD,PM 3458 GONE) - Connection dimensions — placed along each control line showing both the survey bearing/distance and the MGA ground bearing/distance
The connection dimensions can be placed as:
- Text along lines (default) — bearing and distance text placed at the midpoint of each control line, with BY SURVEY on one side and MGA GROUND on the other
- Table — rows added to an existing
R3_COORD_CONNECTIONStable in the drawing - Text table — a text table (rows without borders) placed at a picked point
Configure the mode in R3PMLABELSETTINGS (or R3LABELSETTINGS → Permanent Marks tab).
Filling the MGA Coordinates table¶
Use R3MGATABLE to automatically populate the R3_COORD_SCHEDULE table in the drawing with MGA coordinates, accuracy class, and CSF for all control marks on the working plan.
Inserting boundary corner symbols¶
Use R3INSERTCORNERS to automatically place boundary corner symbols at every vertex of the boundary polylines:
- R3_BC_A — placed at corners with no reference mark connection
- R3_RM_A — placed at corners that have a reference mark line connecting to them, and at the end of every reference mark line
- Corners where both legs are natural boundary are skipped
- An RM line ending anywhere other than a subject boundary corner gets State No Mark Required (not exported as a monument)
You can also insert individual symbols manually with R3BC or R3RM. All mark symbols are annotative blocks in model space — see Annotative mark blocks for scale setup.
Freezing control line geometry¶
If you need to move or shorten control lines to fit them on the plan form (a common requirement when the traverse is much larger than the plan sheet), use R3FREEZECTRL:
- Run
R3FREEZECTRL - Select the control lines you want to freeze
- Move or shorten the lines to fit your plan layout
- If you move PMs to the new line ends, use
MOVEin the Model tab thenR3RESETMARKSso every viewport shows them in the new place (see Moving marks)
The frozen values (bearing and distance) are stored as XData overrides on each line. R3ADDPMLABELS, R3DIMS, and the LandXML export all read the frozen values instead of the current geometry, so labels and export remain correct.
Use R3SHOWFROZEN to highlight all frozen lines in the drawing (shown in green). Press Enter to dismiss.
Step 4 — Set parcel attributes¶
Select each parcel polyline and set its attributes in the Parcel expander in R3PROPERTIES.
Lot number¶
Enter the lot number in the Lot field. For new proposed lots, just enter the number (e.g. 1, 2, 101).
Part lots¶
For part lots (where one lot number appears in multiple non-contiguous areas), prefix the lot number with PT — for example, PT101.
R3Survey automatically:
- Detects the "PT" prefix
- Sets the parcel type to
Partin the exported XML - Strips the prefix from the lot name (so
PT101exports asname="101" parcelType="Part") - At export, groups all Part lots with the same base number under a Multipart parent with the summed total area
You don't need to set the parcel type manually or worry about letter suffixes — the export handles all of this automatically:
<!-- Multipart parent (auto-generated at export) -->
<Parcel name="101" parcelType="Multipart" area="950.5" ...>
<Parcels>
<Parcel name="101A" pclRef="101A"/>
<Parcel name="101B" pclRef="101B"/>
</Parcels>
</Parcel>
<!-- Individual parts (each drawn as a separate polyline with LotNo = "PT101") -->
<Parcel name="101A" parcelType="Part" area="450.5" ...>
<CoordGeom>...</CoordGeom>
</Parcel>
<Parcel name="101B" parcelType="Part" area="500.0" ...>
<CoordGeom>...</CoordGeom>
</Parcel>
Parcel class¶
The Class dropdown determines the parcel type in the LandXML. The class is auto-populated from the layer component type, so you usually only need to change it for non-standard cases.
Standard classes:
| Class | When to use |
|---|---|
| Administrative Area | LGA, parish, county boundaries (Administrative Areas layer) |
| Association Property | Association property lots (Boundaries layer) |
| Building | Building parcels (Miscellaneous layer) |
| Common Property | Common property in community/strata plans (Miscellaneous layer) |
| Hydrography | Water bodies — rivers, creeks, etc. (Hydrography layer) |
| Lot | Standard lots (default for Boundaries layer) |
| Railway | Railway parcels (Roads layer) |
| Reserved Road | Reserved road parcels (Roads layer) |
| Road | Road parcels (Roads layer) |
Secondary interest classes (require a description):
| Class | When to use |
|---|---|
| Caveat | Caveat areas |
| Covenant | Covenant areas |
| Designated Area | Designated areas |
| Easement | Easement parcels (default for Easements layer) |
| Exclusive Use Area | Exclusive use areas |
| Footprint | Building footprints |
| Lease | Lease areas |
| License | License areas |
| Permit | Permit areas |
| Positive Covenant | Positive covenant areas |
| Profit A Prende | Profit a prendre areas |
| Restriction On Use Of Land | Restriction on use of land |
| Restriction On User | Restriction on user |
Description (conditional)¶
When you select certain classes, a description field appears with a context-specific label:
| Class | Field label | What to enter |
|---|---|---|
| Road / Reserved Road | Road Name | Road name, type, and width — e.g. SMITH STREET (20.115 WIDE) |
| Railway | Railway Name | Railway name |
| Easement | Easement Desc | Easement description — e.g. Easement to Drain Water 0.5 wide |
| Hydrography | Water Body | Name of the water body — e.g. Pioneer River |
| Common Property | CP Desc | Purpose — e.g. Visitor Parking |
| Building | Building Desc | Building description — e.g. Two Story Brick Units |
| Administrative Area | Admin Area | Area description |
| Covenant / Positive Covenant | Description | Covenant description |
| All other secondary interests | Description | Appropriate description |
For standard Lot parcels, the description field is hidden — it's not needed.
Auto-numbering at export¶
You do not need to manually number roads, easements, or other non-lot parcels. At export, R3Survey automatically assigns prefix numbers:
- Roads get R1, R2, etc.
- Easements and other secondary interests get E1, E2, etc.
- Hydrography parcels get H1, H2, etc.
Just enter the description name (e.g. the road name or easement description) and R3Survey handles the numbering.
Use of Parcel¶
For certain parcel classes, a Use dropdown appears in R3PROPERTIES:
- Hydrography — Creek, River, Bay, etc.
- Administrative Area — Parish, County, LGA, etc.
- Lot — Public Reserve, Cemetery, etc.
This is an optional field that provides additional classification for the parcel.
Area Override¶
In the Areas expander in R3PROPERTIES, you can set an Area Override to specify a legal area that differs from the polyline's geometric area. This override value is used in the LandXML export instead of the computed area.
For road parcels, the Export Road Area checkbox controls whether the road area is included in the exported file.
Parcel state¶
| State | When to use |
|---|---|
| proposed | New lots, roads, and easements being created by this plan (default) |
| existing | Existing parcels within the subject area (e.g. an existing easement crossing a new lot) |
| adjoining | Entities on the Adjoining Boundaries layer (auto-set) |
Note
The adjoining state is auto-set for entities on the Adjoining Boundaries layer. Adjoining boundary lines export as connection observations (dimensioned). For lines that don't need dimensions, use the Miscellaneous layer.
Parcel format¶
Leave as Standard for normal deposited plan lots. Select Stratum for stratum lots (cubic space parcels). Strata format is not currently supported by LRS for digital plans.
Plan and section number¶
- Plan — the plan number for adjoining parcels (e.g.
DP123456). Not needed for proposed lots. - Sec — section number. This field only appears when populated (typically from imported LandXML files). You don't need to enter it for new plans.
Step 5 — Set observation overrides and survey method¶
For most segments, the drawn geometry is the legal dimension — R3Survey computes bearings and distances from the coordinates and exports them directly.
Dimension overrides (legal dimensions)¶
Where the legal plan dimensions differ from the drawn geometry, enter overrides:
- Select the polyline
- Open the Dimension Overrides expander in R3PROPERTIES
- Use the Current Leg selector to navigate to the segment
- Enter the legal bearing and/or distance
Common reasons for overrides:
- Adjusted values — where the legal bearing/distance differs slightly from coordinate geometry after least-squares adjustment
- Rounded values — where the plan shows a rounded distance
- Compiled dimensions — on compiled plans
Survey Leg Properties (observation type)¶
The Survey Leg Properties expander is collapsed by default and shows the observation method and boundary type for each line or segment.
Boundary / Road / Easement lines (parcel segments)¶
| Field | Options | Notes |
|---|---|---|
| Method | Measured, Compiled |
Default is Measured for surveyed plans, Compiled for compiled plans. Only set if different from the plan default. |
| Dim. Suffix | Free text | Text appended after the distance on the plan (e.g. PO, OCC-OCC, Per Original). Stored as a FieldNote in the LandXML export. |
Control / Connection lines¶
| Field | Options | Notes |
|---|---|---|
| Method | Measured, AUSPOS, Static GNSS, RTK GNSS, CORS NRTK GNSS, CORS RTK GNSS, CORS Static GNSS, Cadastral Traverse |
Set the GNSS method used for the observation. |
| Dim. Suffix | Free text | Optional annotation text. |
Reference Mark lines¶
The Survey Leg Properties expander is hidden for reference mark lines — the observation type is derived automatically from the State field in the Reference Mark expander (see Drawing reference marks above).
Dim. Suffix on plan labels
Text entered in the Dim. Suffix field is appended after the distance when R3DIMS places dimension labels. For example, entering PO produces 25.450 PO on the plan.
Checking overrides¶
Use these commands to review your overrides before exporting:
| Command | What it does |
|---|---|
R3SHOWOVERRIDES |
Draws magenta highlights over segments with overrides |
R3HIDEOVERRIDES |
Clears the highlights |
R3CHECKOVERRIDES |
Opens a report dialog listing all overrides with warnings |
See Observation Overrides for full details.
Reviewing lot dimensions and area (R3LOTEDIT)¶
Type R3LOTEDIT and select a closed parcel polyline to open the Lot Edit form. This shows:
- All legs with geometric dimensions (from polyline) and legal dimensions (rounded/overridden)
- Legal area — calculated from the legal dimensions (this is what gets exported)
- Geometric area — from the polyline coordinates
- Misclose — from the legal dimension traverse
- s26(2) compliance — PASS/FAIL against 15mm + 100ppm tolerance
Warnings are shown if:
- The polyline is self-intersecting (geometric or legal)
- Duplicate vertices or backtracking legs are detected
Click OK to save the calculated legal area as an area override. See R3LOTEDIT for full details.
Step 6 — Validate before export¶
Before exporting, run R3XMLVALIDATE to check for common issues:
- Type
R3XMLVALIDATE - Select any entity on the plan
- Review the validation report — fix any FAIL items
The validation checks NSW LRS rules (misclose, area, SCIMS marks, datum terminals, lot numbers) and R3Survey rules (metadata, descriptions, closed parcels, geometry issues). See R3XMLVALIDATE for the full list of checks.
Step 7 — Export the LandXML file¶
Type R3EXPORTLANDXMLNSW.
- Select any entity belonging to the plan (a parcel polyline, reference mark line, etc.)
- Choose a save location and filename
- R3Survey writes the LandXML file and runs automatic schema validation
- Check the command line for validation results
The exported file includes:
- All parcel geometry (CgPoints, Parcels with CoordGeom)
- Multipart parent elements for Part lots (auto-generated)
- All observations (bearings, distances, arcs) with legal overrides where set
- Survey header, coordinate system, administrative areas
- SCIMS control data (RedHorizontalPosition elements)
- Monuments (reference mark type, state, origin)
- Instrument setups
Schema validation¶
R3Survey validates against the NSW ePlan CIF Protocol v4.0 schema automatically. Check the command line output:
- PASSED — your file is structurally valid
- Errors — fix the reported issues and re-export
Note
Schema validation checks XML structure, not NSW business rules (misclose tolerances, mark requirements, etc.). Use the LRS Connect Digital Plans Validation Tool for full validation before lodgement.
See Export NSW LandXML for the full export command reference.
Step 8 — Review the exported file¶
After exporting, run R3XMLREPORT to generate a human-readable report from the XML:
- Type
R3XMLREPORT - Select the exported XML file
- Review: plan metadata, SCIMS marks, control traverse, lot dimensions, reference marks
- Check bearings, distances, and areas against your plan
The report can be copied to clipboard or saved as a text file. See R3XMLREPORT.
Step 9 — Validate and lodge¶
- Log in to LRS Connect
- Create or open a workspace for your plan
- Upload the LandXML file
- Review the LRS validation report — fix any issues and re-export if needed
- Upload the PDF plan and complete the Digital Forms
- Lodge the plan
Quick reference — what goes where¶
| Survey element | Component Type | Example Layer | R3PROPERTIES expander | Key fields to set |
|---|---|---|---|---|
| Lot boundary | Boundaries | DP1234_BDYS | Parcel | Lot number, Class = Lot |
| Road parcel | Roads | DP1234_ROADS | Parcel | Class = Road, Road Name (auto-numbered R1/R2) |
| Reserved road | Roads | DP1234_ROADS | Parcel | Class = Reserved Road, Road Name |
| Railway | Roads | DP1234_ROADS | Parcel | Class = Railway, Railway Name |
| Easement | Easements | DP1234_EASE | Parcel | Class = Easement, Easement Desc (auto-numbered E1/E2) |
| Covenant / secondary interest | Easements | DP1234_EASE | Parcel | Class = Covenant/etc, Description (auto-numbered E1/E2) |
| Water body | Hydrography | DP1234_HYDRO | Parcel | Class = Hydrography, Water Body, Use of Parcel (auto-numbered H1/H2) |
| Administrative area | Administrative Areas | DP1234_ADMIN | Parcel | Class = Administrative Area, Use of Parcel |
| Adjoining lot boundary (solid line) | Adjoining Boundaries | DP1234_BDYA | — | Exports as dimensioned Connection observation (solid line plotting) |
| Connection line (dashed) | Connections | DP1234_CONNS | Survey Leg Properties | Method (if GNSS) |
| Drafting-only linework | Miscellaneous | DP1234_MISC | — | Not exported |
| Reference mark tie | Reference Marks | DP1234_RMS | Reference Mark | Type, State, Origin (if Found/Found By Me) |
| Connection to boundary | Connections | DP1234_CONNS | Survey Leg Properties | Method (if GNSS) |
| Control traverse | Control | DP1234_CTRL | Survey Leg Properties | Method (if GNSS) |
| SCIMS mark | Control Marks | DP1234_PMS | SCIMS Control Point | Mark, Number, State, Datum (X or Y) |
| Boundary corner symbol | Symbols | DP1234_SYMBOLS | Monument | Type, State (default Peg / Placed) — auto-placed by R3INSERTCORNERS |
| Legal dimension override | — | (on existing entity) | Dimension Overrides | Legal Brg, Legal Dist |
| Observation method (parcels) | — | (on existing entity) | Survey Leg Properties | Method (Measured/Compiled) |
| Observation method (control) | — | (on existing entity) | Survey Leg Properties | Method (GNSS type) |
| Dimension annotation | — | (on existing entity) | Dimension Overrides | Dim. Suffix (e.g. PO, OCC-OCC) |
Common scenarios¶
Simple two-lot subdivision¶
- Create plan → import SCIMS → assign datum terminals
- Draw two closed polylines on Boundaries layer for Lot 1 and Lot 2
- Draw road frontage as part of each lot boundary (shared segments are deduplicated automatically)
- Set Lot =
1on one polyline, Lot =2on the other - Draw reference mark ties on Reference Marks layer
- Set RM Type, State, and Origin on each tie
- Draw connections from SCIMS to corners on Other layer
- Draw control traverse on Control layer
- Set any legal dimension overrides
- Export
Plan with part lots¶
- Draw each part as a separate closed polyline on Boundaries layer
- Set Lot =
PT101on both polylines (orPT102, etc.) - Each part gets its own area from its polyline geometry
- At export, R3Survey groups them automatically — Multipart parent with summed area, children with letter suffixes (101A, 101B)
Plan with existing easement¶
- Draw the existing easement as a closed polyline on the Easements layer
- Set Class =
Easement, State =existing - Enter the easement description (e.g.
Easement for Drainage 1 Wide (DP1234))
Plan with water body (Hydrography)¶
- Draw the water body as a closed polyline on the Hydrography layer
- Set Class =
Hydrography - Enter the water body name in the Water Body field (e.g.
Pioneer River) - Optionally set the Use of Parcel dropdown (Creek, River, Bay, etc.)
Plan with reserved road¶
- Draw the reserved road as a closed polyline on the Roads layer
- Set Class =
Reserved Road - Enter the road name in the Road Name field
Plan with administrative area¶
- Draw the boundary as a closed polyline on the Administrative Areas layer
- Set Class =
Administrative Area - Enter the area description in the Admin Area field
- Set the Use of Parcel dropdown (Parish, County, LGA, etc.)
Adjoining boundaries and connections¶
- Draw existing adjoining lot boundaries on the Adjoining Boundaries layer — these plot as solid lines
- Draw survey connection lines (SCIMS to corners, corner to corner, across roads) on the Connections layer — these plot as dashed lines
- For linework that appears on the plan but doesn't need dimensions and shouldn't be exported (e.g. broken adjoining lot lines shown for context), use the Miscellaneous layer
Both Adjoining Boundaries and Connections export identically as desc="Connection" observations. The layer choice controls the plotted appearance only (solid vs dashed).
See also¶
- NSW Digital Plans overview — summary and metadata reference
- Export NSW LandXML — detailed export command reference
- Observation Overrides — legal dimension override workflow
- Survey Plan Setup (R3PL) — creating and configuring plans
- Import SCIMS Control Points — importing geodetic control marks
- R3PROPERTIES — properties panel reference