LiDAR · GIS · Photogrammetry · BIM

Precision geospatial data for mission-critical decisions.

GeoProcess Consulting is a global geospatial production and engineering partner delivering GIS, LiDAR, CAD, BIM/Revit, Telecom GIS, 3D modeling, photogrammetry, remote sensing, mapping, survey-data processing, data annotation, and QA/QC services. We support engineering, infrastructure, transportation, utilities, telecom, oil & gas, mining, AEC, and government projects with scalable, accurate, and reliable geospatial data processing. Our team works as an extended production partner for organizations seeking dependable project support, capacity expansion, and specialized geospatial expertise.

What we do

From raw survey data to usable geospatial intelligence.

A focused service portfolio for utilities, engineering, mapping and spatial-data workflows.

LiDAR powerline corridor analysis
Flagship

Powerline Vegetation Analytics

LiDAR corridor analysis for vegetation proximity, danger-zone identification and operational decision support.

Advanced LiDAR classification
Point cloud

Advanced Classification

Structured classification of ground, vegetation, buildings and infrastructure from 3D point-cloud data.

DTM terrain model
Terrain

DTM / DSM / DEM

Terrain and surface modeling for mapping, engineering, corridor analysis and downstream GIS workflows.

GeoProcess Consulting team
Built around your workflow

Engineering-ready results, not just pretty maps.

Our workflow connects acquisition, classification, spatial analysis, QA and delivery. The source brief describes a six-stage process from corridor scoping through final export.

  • Danger-zone analytics
  • LiDAR classification
  • High-precision DTM / DSM
  • GIS & CAD deliverables
  • UAV & orthophoto mapping
  • 3D CAD / BIM modeling
Frequently Asked Questions

FQAs

Answers to common questions about GeoProcess Consulting, our services and project delivery.

Why choose GeoProcess Consulting?
  • Actionable intelligence: We turn complex raw point clouds into clear, decisive field execution.
  • Unmatched precision: Our automated AI pipelines deliver sub-centimeter calibration you can trust.
  • Deep domain expertise: We understand utility corridors and the specific challenges of vegetation management.
  • Proactive cost savings: We shift your operations from expensive, reactive fixes to predictive pruning schedules.
What services do you offer?

We provide full-lifecycle geospatial analytics and engineering data processing, including:

  • Powerline Vegetation & Danger-Zone Pruning: 3D encroachment, species risk class, and tree-fall modeling.
  • Advanced LiDAR Classification: AI-driven segmentation for ground, canopy, towers, conductors, and buildings.
  • Enterprise GIS & Web Mapping: Enterprise geodatabase modeling, custom field-app layers, and live dashboards.
  • DTM / DSM Extraction: Bare-earth terrain models and digital surface canopy envelopes.
  • UAV & Orthophoto Mapping: Sub-centimeter true-orthomosaics and multispectral survey workflows.
  • 3D CAD / Scan-to-BIM: Vectorized asset models ready for engineering and design software.
What is Danger-Zone Detection for Tree Pruning?

Danger zone detection for tree pruning near power lines using LiDAR and GIS is a digital safety system. It uses laser scans and maps to find trees that are too close to electric wires. This helps crews clear branches before they cause power outages or fires.


How LiDAR Works:
  • Light Detection: Sends laser pulses from a plane, drone, or truck to the ground.
  • 3D Mapping: Measures the exact distance from tree branches to power lines.
  • Data Points: Creates a 3D picture of the entire utility corridor.
How GIS Works:
  • Geographic Data: Stores the precise location of power poles, wires, and equipment.
  • Spatial Analysis: Combines map data with LiDAR scans to find problem areas.
  • Risk Zones: Creates a digital boundary or buffer zone around live wires.
Safety and Benefits:
  • Automated Alerts: Flags trees that enter the danger buffer zone.
  • Smart Planning: Helps workers target high-risk trees first.
  • Fewer Outages: Prevents branches from touching lines during storms.
What is Advanced Classification & 3D Vectorization?

Advanced 3D building classification and vectorization converts unorganized 3D spatial data into clean, structured geometric vectors (like polygons and shapefiles).

Our automated pipeline isolates key infrastructure elements—such as towers, conductor sags, ground surfaces, and buildings—allowing utilities to export directly into GIS databases, CAD layouts, or BIM platforms for structural audits.

How long does a typical project take?

Turnaround depends on project scope, point density, and whether the data is linear corridor or area-based:

  • Free Pilot / Sample Verification (24–48 Hours):
    • Powerline Corridors: 1 to 3 km (1–2 line spans) danger-zone clearance audit.
    • Advanced LiDAR / DTM: 10 to 50 Hectares (1–2 tiles) full ASPRS classification & bare-earth model.
  • Standard Production Projects (3–5 Business Days):
    • Corridors: 20 to 100 km of transmission/distribution line classification.
    • Area Topography: 5 to 25 km² of urban, forestry, or civil DTM/DSM & 3D building vectorization.
  • Large-Scale / Enterprise Scopes (2–3 Weeks):
    • Corridors of 250–1,000+ km or area surveys exceeding 50–200+ km² with continuous rolling milestone deliveries.
  • Emergency / Storm Damage Triage (Within 24 Hours):
    • Fast-track priority pipeline for immediate danger-tree and wire strike identification.
Ready when you are

Let's discuss your next geospatial project.

Choose a date and time online instead of waiting for a reply.