SLAM LiDAR vs cavity monitoring system (CMS)

A cavity monitoring system extends a laser head past the brow on a boom and rotates it: it records what is in a straight line from that point. A SLAM LiDAR scanner goes into the void — lowered, on a pole or on a drone — and records the cavity from inside.

The difference is the part of the stope the boom cannot see, and that is the part the reconciliation has been inferring.

The short answer

SLAM LiDAR or a CMS for stope surveying?

SLAM LiDAR for the complete void — it enters the stope and records every wall at ±10 mm; a CMS for a quick line-of-sight check on a simple cavity.

How they compare

Both measure stopes; the criteria are what each records and what the reconciliation gets.

SLAM LiDAR (Artec Jet)Enters the void on a pole, in a cage or on a self-navigating drone.Cavity monitoring systemA laser head on a boom, extended past the brow and rotated.
Where the sensor isAt the end of a boom, fixed at the access
What is recordedWhat is in line of sight from that point; shadows behind shoulders are gaps
AccuracyCentimetre-class typical; depends on range and set-up
Irregular or large voidsOcclusion grows with irregularity; large voids exceed range from one position
Beyond stopesStopes only; a dedicated instrument
OutputPoint cloud from one position; gaps interpolated when closed
Choose this whenChoose this for a fast line-of-sight check on a simple cavity where a boom is already rigged.

A CMS survey remains a valid check where the void is simple and the boom has line of sight to all of it. The comparison is about the void it does not have line of sight to.

The wall the boom cannot see

A CMS records from one point, so everything behind a shoulder, above a ledge or around a bend is a gap. On a clean, simple stope that may be very little. On a real one — an irregular back, a shoulder where a ring underbroke, a cavity that has unravelled — the gaps are exactly where the reconciliation question is. The software closes them by interpolation, and the solid that reaches the planning package is partly measured and partly drawn. Dilution and overbreak are then reported from the drawn parts as much as the measured ones.

A scanner inside the void has no line-of-sight problem, because it moves. Artec Jet on a drone plans its own path through the cavity and records every wall in a 360° × 290° view at ±10 mm; on a pole or in a cage it is lowered past the brow and records from inside. The solid that Artec Twins closes is measured everywhere. Where the CMS keeps its place is the simple, clean stope where a boom is already rigged and a fast check is all that is wanted — and where entering the void with anything is not permitted. There the CMS is quick and adequate, and this page says so.

The figures behind the verdict

360° × 290°Field of view from inside the void — no far wall to inferArtec Jet specification
±10 mmSurface accuracy underground; ±5 mm change detection scan to scanArtec Jet specification
2 mmThinnest obstacle the drone plans around — bag ties and blasting cable in a stopeArtec Jet specification

See a stope flown from the drawpoint and reconciled against design with no interpolated walls — book a demo for your survey and planning teams.

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What people ask when choosing

Can we keep using the CMS alongside?

Yes. Where a boom is rigged and the void is simple, a CMS check is fast. Where reconciliation, dilution or an irregular cavity is at stake, the SLAM scanner goes in. Many mines run the CMS less and the drone more over time.

Is entering the void with a drone safe?

Nobody enters; the drone does, planning its own path around obstacles as fine as 2 mm wires, in the dark, positioned by SLAM. If it is lost, a 1.57 kg scanner is lost — not a person, and not a boom rig.

How does the accuracy compare?

Jet records at ±10 mm underground everywhere in the void; a CMS is typically centimetre-class from its single position and, more importantly, records nothing at all where it has no line of sight.

Does the SLAM scanner do anything else?

Everything else underground: headings at walking pace, shafts on the conveyance, ore passes on a line, old workings by drone, and surface from a vehicle. A CMS is a stope instrument; Jet is the mine’s survey scanner that also does stopes.

Two mine engineers in high-visibility gear looking out over the benches of an open pit

Tell us how you survey stopes today

Describe the stoping method, the CMS you run and where the reconciliation is contested. A mining specialist will come back with what a scan from inside the void would change.