Learning Objectives
- Describe what Neara does and why a physics-based grid digital twin matters
- Explain how LiDAR and imagery become engineering-grade 3D models that can be simulated
- Identify the utility use cases, from vegetation and wildfire risk to storm resilience and network planning
What Is Neara?
Neara is a software company that builds highly detailed, physics-enabled digital twins of electric grids. Utilities own millions of poles, wires, and other assets spread across vast areas, and understanding how each will behave under stress — heavy load, extreme heat, high wind, or encroaching vegetation — has traditionally required slow, manual engineering studies. Founded in 2016 and based in Sydney, Australia, Neara converts LiDAR scans and imagery into engineering-grade 3D models of the network, then applies physics so utilities can simulate real-world conditions across their entire system rather than one span at a time.
Because the models are physics-enabled, they do more than look like the grid — they behave like it. A utility can ask how a line will sag in a heat wave, how much clearance remains as trees grow, or how the network will hold up in a storm, and get engineering-grade answers at scale. Neara's customers include Southern California Edison, which has used it to address vegetation risk faster.
💡Key Concept
Physics-based grid digital twin: A virtual 3D replica of an electrical network that is not just visually accurate but obeys the physics of the real system. It can simulate how conductors sag under heat and load, how structures respond to wind, and how vegetation growth reduces clearance — letting engineers test conditions and scenarios in software instead of only in the field.
What Neara Does
- Engineering-grade 3D models — converts LiDAR and imagery into accurate models of poles, wires, and assets
- Physics simulation — models how assets behave under load, heat, wind, and vegetation growth
- Vegetation and wildfire risk — analyzes clearance and encroachment to reduce ignition and outage risk
- Clearance analysis — checks conductor-to-ground and conductor-to-vegetation clearances at scale
- Flood, storm, and resilience planning — simulates how the network holds up under severe weather
- Network planning — supports design and upgrade decisions across millions of assets
How AI Is Applied
Neara combines physics with machine learning. The starting point is raw survey data — LiDAR point clouds and imagery — which the platform processes into structured, engineering-grade 3D models of the grid. Machine learning helps interpret that data and build the models efficiently across millions of assets, work that would be impractical to do by hand. The distinctive part is what comes next: the models are physics-enabled, so instead of a static picture the utility gets a system that can be simulated.
That physics layer is the core of Neara's value. Engineers can run scenarios — a heat wave that makes lines sag, a wind event that stresses structures, years of vegetation growth that erodes clearance, or a flood that threatens equipment — and see engineering-grade results across the whole network. This lets utilities find risky spans, prioritize vegetation and wildfire work, and plan upgrades based on how the grid will actually respond, rather than relying on periodic manual studies. Southern California Edison, for example, has used Neara to address vegetation risk more quickly.
Who Uses Neara
Neara is used by electric utilities and grid operators managing large transmission and distribution networks. Its users include engineering, vegetation-management, wildfire-mitigation, and network-planning teams. Named customers include Southern California Edison.
Pricing
Neara is enterprise software with quote-based pricing. Cost depends on the size of the network modeled, the volume of survey data processed, and which simulation and analysis capabilities are included. Utilities contact Neara directly for a tailored quote.
Company Details
| Detail | Info |
|---|---|
| Company | Neara |
| Founded | 2016 |
| Headquarters | Sydney, Australia |
| Category | Physics-based grid digital twin |
| Core Technology | LiDAR and imagery converted to physics-enabled 3D models |
| Notable Customer | Southern California Edison |
| Website | neara.com |
Strengths
- Physics-enabled — models behave like the real grid under heat, load, wind, and vegetation growth
- Engineering-grade — outputs are accurate enough for real design and clearance decisions
- Scale — simulates conditions across millions of assets, not one span at a time
- Broad use cases — spans vegetation, wildfire, clearance, flood and storm resilience, and network planning
- Proven impact — customers such as Southern California Edison have used it to address vegetation risk faster
Limitations and Considerations
- Survey-data dependent — model quality relies on good LiDAR and imagery of the network
- Modeling effort — building and maintaining accurate twins across a large grid is substantial work
- Specialized — deep in grid engineering, not a general-purpose modeling tool
- Enterprise scope — quote-based utility software rather than a self-serve product
Key Takeaways
- Neara builds physics-enabled digital twins of electric grids from LiDAR and imagery
- Its engineering-grade 3D models simulate how assets behave under load, heat, wind, and vegetation growth
- Utilities use it for vegetation and wildfire risk, clearance analysis, storm and flood resilience, and network planning across millions of assets
- Best for utilities that want to test real-world conditions on their grid in software rather than relying only on manual field studies


