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Top 10 Best LiDAR Solar Design Tools We Tested (2026)

We tested 10 LiDAR solar design tools and ranked them for 2026. See pricing, honest pros and cons, and which tool suits your projects.

Keyur Rakholiya

Written by

Keyur Rakholiya

CEO & Co-Founder · SurgePV

Rainer Neumann

Edited by

Rainer Neumann

Content Head · SurgePV

Published ·Updated

Expert Verified — Written by Keyur Rakholiya, SurgePV Editorial. 10 tools tested for LiDAR-based solar design. Pricing verified July 2026. Based on 1+ GW of delivered projects across 50+ countries.

A bad roof model kills a solar project twice. First at design, when the shade numbers are wrong. Then on install day, when the panels do not fit.

LiDAR (Light Detection and Ranging) fixes the first problem. Laser-scanned 3D data captures roof pitch, tree heights, and obstructions that flat aerial photos miss. The result is a shade model you can quote from with confidence.

We tested 10 tools that use LiDAR, drone photogrammetry, or terrain data for solar design. Some are full design platforms. Some are survey tools. 1 entry is our own product, and we tell you exactly where it does not fit.

Quick Picks

PickToolWhy
Best for residential sales designAurora SolarLiDAR 3D modeling, automated shading, proposals in 1 flow
Best for survey-grade accuracyScaniflyDrone photogrammetry plus USGS LiDAR, 1 to 3 inch accuracy
Best for C&I shading analysisHelioScopeLiDAR on Pro plan, DNV validated within 1% of PVsyst
Best for quick residential quotesSolargrafLiDAR roof pitch and height, 3-minute proposals
Best without LiDAR hardware dataSurgePV3D design plus physics-based shadow analysis, cloud-only
Best desktop tool with LiDAR importPV*SOL PremiumImports LiDAR and terrain data, €845/year

How We Evaluated

We scored each tool on 5 criteria. Weighting reflects what matters when real roof data drives the design.

CriterionWeightWhat We Measured
3D accuracy30%Roof geometry, obstruction detection, shade realism
Workflow speed20%Minutes from address to usable 3D model
Simulation quality20%Production estimates tied to the 3D model
Coverage15%LiDAR and imagery availability by region
Cost per project15%Subscription or per-project price vs. volume

At-a-Glance Comparison

ToolBest For3D Data SourceStarting PriceCloudStandout
Aurora SolarResidential sales designLiDAR + aerial imageryCustom (contact sales)YesLiDAR-assisted modeling with automated shading
ScaniflySurvey-grade accuracyDrone photogrammetry + USGS LiDARCustom (credits)Yes1 to 3 inch accuracy, NYSERDA-approved shading
HelioScopeC&I shading analysisLiDAR (Pro) + imagery$159/moYesDNV validated within 1% of PVsyst
SolargrafQuick residential quotesLiDAR + HD imagery$2,799/yr (Starter)YesLiDAR roof pitch and height detection
SurgePVDesign without LiDAR data3D rooftop modeling$1,899/yr (3 users)YesPhysics-based shadow analysis in the browser
PV*SOL PremiumDesktop engineeringLiDAR + terrain import€845/yrNo (Windows)Imports LiDAR point clouds and terrain data
PVcaseUtility-scale terrainTopography import + Google TerrainCustomNo (AutoCAD-based)Terrain-following tracker layouts
RatedPowerUtility-scale site analysisTopography import (XYZ, CSV)CustomYesLayout generation in under 60 seconds
Arka360Emerging-market EPCsLiDAR + dual maps$199/mo (US)YesCentimeter-level LiDAR precision claims
OpenSolarFree photogrammetry optionPhotogrammetry DSM (not LiDAR)$0YesFree 3D design for 28,000+ users

1. Aurora Solar — Best LiDAR Tool for Residential Sales Design

Aurora Solar is the default LiDAR-based design platform for US residential solar. Over 7,000 companies use it, and its 3D modeling is the benchmark everyone else is compared against.

What It Does Well

Aurora pulls LiDAR data from multiple sources and builds a 3D roof model from an address. Aurora AI automates roof face detection, and the shading engine models obstructions in 3D. For a sales rep, that means a quote-ready design without a ladder or a tape measure.

The sales workflow is the real strength. Sales Mode produces proposals fast, and the design behind them carries real geometry. G2 reviewers rate Aurora 4.6 out of 5 on G2, with 3D visualization scoring 9.5 out of 10.

HD Nearmap imagery fills gaps where LiDAR coverage is thin. The combination handles most US suburban roofs well.

Our Take: Aurora is the strongest residential LiDAR workflow we tested. It is also the most expensive, and the automation still misreads complex roofs often enough that a human must check every model.

Where It Falls Short

Pricing is custom and reviewers consistently call it expensive for small teams. Automated roof modeling is hit-or-miss on multi-level roofs, turrets, and rural addresses. LiDAR data age varies by region, so a roof re-shingled or extended last year may model wrong.

Key Features

  • LiDAR-assisted 3D site modeling from multiple data sources
  • Aurora AI roof detection and obstruction modeling
  • Automated shading analysis on the 3D model
  • Sales Mode proposals from the same design

Pricing

  • Foundation, Build, Grow, Scale: Custom pricing, contact sales
  • Free trial: Guided demo only

Who Should Use Aurora Solar

Strong fit: US residential sales teams that quote from 3D models at volume. Probably not right for: Solo installers, budget-constrained teams, and markets with thin LiDAR coverage.


2. Scanifly — Best LiDAR Tool for Survey-Grade Accuracy

Scanifly is the drone-first platform in this category. It combines drone photogrammetry with USGS LiDAR data and targets the accuracy problem that satellite tools cannot solve.

What It Does Well

Accuracy is the headline. Scanifly reports 1 to 3 inch measurements across X, Y, and Z planes from drone captures. Its PrelimDesign product uses satellite imagery and USGS LiDAR for fast remote designs. DroneDesign then handles post-sale verification with photorealistic 3D models.

The regulatory stamp matters. Scanifly says its drone-based shading is approved by NYSERDA, MassCEC, the California Energy Commission, and several lenders, per the company’s documentation at Scanifly. That approval lets installers skip truck rolls in rebate program states.

Customer results are documented. EmPower Solar cut software spend 53% after switching from Aurora. Namaste Solar dropped its revision rate from 25% to under 1%. Hammond Energy cut survey time 84%. These are company-published case studies, so treat them as best-case outcomes.

Our Take: If install-day fitment problems cost you real money, Scanifly’s drone workflow is the most direct fix we tested. Budget for the drone, the training, and a pricing conversation, because none of it is published.

Where It Falls Short

Subscription pricing is not public; design services run on a credit model (15 credits for residential site modeling, 70 for a plan set). Image quality constraints like glare and cloud cover affect processing. Several popular low-end drones are incompatible, and the platform historically skews residential.

Key Features

  • PrelimDesign with satellite imagery and USGS LiDAR
  • DroneDesign with 1 to 3 inch accuracy and real-time shading
  • Free mobile app for field data capture
  • CAD export, shade reports, and engineering plan sets

Pricing

  • Subscription: Custom, contact sales
  • Design services: Credit-based — 15 credits (residential site model) to 70 credits (plan set)
  • Free trial: Contact sales

Who Should Use Scanifly

Strong fit: Installers who want drone-verified designs and near-zero install-day revisions. Probably not right for: Teams unwilling to fly drones, or those needing transparent published pricing.


3. HelioScope — Best LiDAR Tool for C&I Shading Analysis

HelioScope, now part of Aurora Solar, is the fast engineering tool for commercial rooftops. Its Pro plan adds LiDAR data to bankable module-level simulations.

What It Does Well

The numbers hold up in diligence. DNV found HelioScope energy estimates within 1% of PVsyst, and Sunstone Credit recognized it as bankable in October 2025. For C&I deals where a financier reviews the model, that credibility shortens conversations.

The Pro plan layers LiDAR data onto the 3D shading scene, with AI-based obstruction detection and hourly shadow mapping per module. Projects scale to 15 MW across rooftops, carports, and ground mounts. P50, P90, P95, and P99 production estimates come with Pro.

Speed is a genuine advantage. Users report 4x faster design iterations than desktop tools, and the browser-based interface needs no workstation. For a deeper look at the category, see our guide to solar shadow analysis software.

Our Take: HelioScope Pro is the best C&I value in this list: LiDAR-informed shading plus lender-grade simulation at $259 per month. Residential teams and storage-heavy deals should look elsewhere.

Where It Falls Short

LiDAR sits behind the Pro tier, and coverage is limited in some regions. There is no native battery modeling. Performance degrades past 10,000 modules, and small residential work under 15 kW feels clumsy.

Key Features

  • LiDAR data and AI obstruction detection on Pro
  • Module-level simulation within 1% of PVsyst
  • P50, P90, P95, and P99 production estimates
  • Financial modeling and proposal editor on Pro

Pricing

  • Basic: $159/month — 1 user, 10 projects, 1.25 MW cap
  • Pro: $259/month — adds LiDAR, P90+, financials, proposals
  • Free trial: Demo only

Who Should Use HelioScope

Strong fit: C&I installers and EPCs designing 100 kW to 5 MW projects. Probably not right for: Residential-focused teams and storage-first designs.


4. Solargraf — Best LiDAR Tool for Quick Residential Quotes

Solargraf, owned by Enphase since 2021, uses LiDAR to speed up the residential quote. Its pitch is a full proposal in 3 minutes.

What It Does Well

The LiDAR integration targets a specific pain point: roof pitch and height. Getting those numbers without a site visit removes the biggest source of design rework in residential sales. AI auto-detection handles rooflines and obstructions on top of that data.

Speed is the product. The Express Editor lets reps adjust quotes on the spot, and Good/Better/Best pricing presents 3 options in 1 proposal. DocuSign integration closes the deal in the same session.

Battery modeling is a real strength for a quoting tool. Solargraf supports 25+ battery manufacturers, and California installers get NEM 3.0 optimization with hourly sell rates.

Our Take: Solargraf is a solid pick when quote speed matters more than shading precision. Cross-check its production estimates against a second tool before you promise savings numbers.

Where It Falls Short

Shading accuracy is the most common user complaint, and some teams verify Solargraf output in Aurora or HelioScope. There is no built-in CRM. Billing is annual only, and OpenSolar’s free tier undercuts it on price.

Key Features

  • LiDAR-based roof pitch and height detection
  • 3-minute proposals with Express Editor
  • Battery design for 25+ manufacturers
  • DIY AHJ-compliant permit packages

Pricing

  • Starter: $2,799/year — 240 projects, 2 users
  • Free trial: Available; new users get 120 project credits

Who Should Use Solargraf

Strong fit: US residential installers who prioritize quote speed, especially Enphase-heavy shops. Probably not right for: Teams needing verified shading precision or monthly billing.


5. SurgePV — Best for Design When You Do Not Have LiDAR Data

Full disclosure: we build SurgePV. We ranked it #5 because it is not a LiDAR tool, and pretending otherwise would waste your time. It earns its place here for a different reason: most residential and small commercial roofs do not need LiDAR-grade data to produce an accurate design.

What It Does Well

SurgePV is a cloud solar design software platform. You model the roof in 3D, place modules, and size strings in the browser. No workstation, no AutoCAD license, no point cloud processing.

The shadow analysis is physics-based. It simulates sun position against the 3D scene and computes hourly losses per module. In our testing, that is accurate enough to quote from on standard pitched and flat roofs — the roofs that make up most of the market.

The workflow continues past design. The generation and financial tool produces yield, payback, IRR, and NPV. The proposal layer turns that into a branded PDF. Clara AI assists with routine steps. A residential design-to-proposal run takes under 10 minutes.

Our Take: If your sites are standard roofs and your bottleneck is workflow speed, SurgePV covers design, shading, financials, and proposals in 1 subscription. If you need survey-grade point clouds, pair it with Scanifly or buy Aurora.

Where It Falls Short

SurgePV does not ingest LiDAR point clouds or drone captures. Roof geometry comes from imagery and user-verified modeling, so complex roofs need manual adjustment. There is no native CRM, and the component database is deepest in markets we serve directly.

Key Features

  • 3D rooftop design, layout, and string sizing in the browser
  • Physics-based shadow analysis with hourly losses
  • Energy yield plus payback, IRR, and NPV modeling
  • Branded PDF proposals built from live design data

Pricing

  • For 3 Users plan: $1,899/year — design, simulation, financials, and proposals included
  • Free trial: Available with full capabilities

Who Should Use SurgePV

Strong fit: Installers and EPCs who want fast design-to-proposal workflows on standard roofs. Probably not right for: Teams that need LiDAR point cloud processing or survey-grade verification.

Quote From Real Engineering Data

See how SurgePV turns design, shading, and financials into a customer-ready proposal in 1 workflow.

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6. PV*SOL Premium — Best Desktop Tool with LiDAR Import

PV*SOL Premium from Valentin Software is the desktop engineer’s option. It imports LiDAR and terrain data directly, and it costs less than half of PVsyst’s street price.

What It Does Well

The 3D environment is the draw. PV*SOL Premium imports DXF, 3DS, DAE, and PVC files plus LiDAR and terrain data, then runs module-by-module, hour-by-hour shading simulation. For engineers who already work with survey data, that import path is rare at this price.

The 2026 version adds Google Solar API orthophotos and improved customer presentations in 24 languages. Reports export as PDF and DOCX. Financial analysis covers LCOE, feed-in tariffs, and 20-year lifecycle costs.

Pricing is transparent: €845 per year for Premium, verified on Valentin Software in January 2026. A 30-day trial includes full features.

Our Take: PV*SOL Premium is the pragmatic pick for engineers with LiDAR survey files who want serious shading simulation without PVsyst’s learning curve. Accept the Windows-only, dated-interface tradeoffs.

Where It Falls Short

It runs on Windows only, with no cloud, no macOS, and no mobile. Performance slows past 7,000 modules. The interface is dense and function-first, and financial analysis scores well below PVsyst in user ratings (6.9 vs 8.9 out of 10 in the research we reviewed).

Key Features

  • LiDAR and terrain data import with CAD formats
  • Module-by-module, hour-by-hour 3D shading simulation
  • Google Solar API orthophotos (2026 version)
  • Reports in 24 languages with financial analysis

Pricing

  • PV*SOL Premium 2026: €845/year plus VAT — named user license
  • PV*SOL Online: Free basic calculations, no 3D
  • Free trial: 30 days, full features

Who Should Use PV*SOL Premium

Strong fit: Solar engineers on Windows who work with LiDAR survey data and need detailed 3D shading. Probably not right for: Mac shops, cloud-first teams, and utility-scale projects.


7. PVcase — Best for Utility-Scale Terrain Modeling

PVcase is the AutoCAD-based suite for ground-mount and utility-scale engineering. Terrain, not rooftops, is where its 3D data handling pays off.

What It Does Well

PVcase Ground Mount imports topography in DWG, KML, shapefiles, and CSV or XYZ point formats. Terrain-following tracker placement and civil grading analysis run on that data. For sloped or irregular sites, this replaces days of manual CAD work.

The Yield module adds bankable simulation with validated bifacial accuracy. Roof Mount covers the commercial rooftop side. The suite exports PVsyst shading scenes, so engineering teams keep PVsyst in the diligence loop.

Pricing is custom and enterprise-oriented. PVcase cites a 2-week trial, and user feedback flags cost as a barrier for small businesses. That positioning is honest: this is a tool for engineering departments, not sales reps.

Our Take: For utility-scale sites where terrain drives layout and grading cost, PVcase is the most capable option we tested. Rooftop residential teams should not pay enterprise prices for capability they will never open.

Where It Falls Short

It requires AutoCAD, which adds license cost and a steep learning curve. No public pricing makes budgeting hard. The suite is overkill for residential and most C&I rooftop work, and collaboration features lag cloud-native tools.

Key Features

  • Topography import in DWG, KML, shapefile, CSV, and XYZ formats
  • Terrain-following tracker placement and grading analysis
  • Bankable yield simulation with bifacial validation
  • PVsyst shading scene export

Pricing

  • PVcase suite: Custom quotes only, no public pricing
  • Free trial: 2 weeks

Who Should Use PVcase

Strong fit: Utility-scale developers and engineering firms designing terrain-constrained ground mounts. Probably not right for: Residential installers, small C&I teams, and anyone avoiding AutoCAD.


8. RatedPower — Best for Automated Utility-Scale Site Analysis

RatedPower automates the front end of utility-scale development. Its topography-driven site analysis turns parcels into engineered layouts fast.

What It Does Well

Speed is the claim, and it holds. RatedPower generates optimized layouts in under 60 seconds from topography imported as CSV, XYZ, or TXT files. Developers screening dozens of sites per quarter feel that difference immediately.

The scope covers feasibility through detailed engineering. Energy yield, LCOE, and revenue calculations come standard, and exports include DWG, PVsyst scenes, and PDF or Word reports. All tiers include unlimited users, projects, and designs.

Cloud delivery means no workstation dependency, and onboarding completes within 2 weeks per the company. For development teams comparing parcels, the throughput advantage is real.

Our Take: RatedPower is the fastest path from topography file to bankable utility-scale layout we tested. The custom pricing and utility-only scope make it irrelevant for rooftop installers.

Where It Falls Short

No public pricing and no free trial — only a guided demo. The platform is utility-scale only, so rooftop and small C&I work is out of scope. Detailed electrical design still exports to other tools for final engineering.

Key Features

  • Automated site analysis from imported topography
  • Layout generation in under 60 seconds
  • Energy yield, LCOE, and revenue modeling
  • DWG, PVsyst scene, and report exports

Pricing

  • Basic, Advanced, Enterprise tiers: Custom quotes, all with unlimited users and projects
  • Free trial: Demo only

Who Should Use RatedPower

Strong fit: Utility-scale developers and EPCs screening and engineering multiple ground-mount sites. Probably not right for: Rooftop installers and teams wanting transparent pricing.


9. Arka360 — Best LiDAR Tool for Emerging-Market EPCs

Arka360 serves 4,000+ installers across 27 countries, with deep roots in the US and India. It bundles LiDAR-based design with CRM and permit packages at SMB prices.

What It Does Well

The company claims centimeter-level LiDAR precision for its 3D design, paired with dual map support (Google plus Nearmap). Shading analysis, automated stringing, and AI-assisted sizing run on that geometry. The all-in-one scope — design, CRM, proposals, permits — is rare at $199 per month.

The permit service is the differentiator for EPCs. Arka360 delivers NEC-compliant permit sets in 48 hours, or under 8 hours expedited, with PE stamps available. India pricing starts at ₹7,500 per month, which fits emerging-market budgets.

G2 reviewers rate Arka360 4.7 out of 5 across 117 reviews, with ease of use the top praise. For teams comparing options, our best solar design software list covers the broader field.

Our Take: Arka360 is the practical LiDAR-based option when budget rules the decision and you need CRM plus permits in the same subscription. Expect rough edges in performance and layout repetition.

Where It Falls Short

Missing features top the G2 complaint list. Users report performance issues and occasional instability. Panel re-selection for each new polygon slows layout work, and utility-scale support is limited.

Key Features

  • LiDAR-based 3D design with shading analysis
  • Built-in CRM with lead and pipeline tracking
  • NEC-compliant permit packages with PE stamps
  • ArkaGo mobile app for field proposals

Pricing

  • US Basic: $199/month — 1 user, residential and commercial
  • US Premium: $358/month — 2 users, battery sizing, CAD export
  • India Lite: ₹7,500/month or ₹46,000/year — 360 residential projects
  • Free trial: Contact sales

Who Should Use Arka360

Strong fit: Small and mid-size EPCs in the US, India, and other emerging markets. Probably not right for: Utility-scale developers and teams needing polished performance at scale.


10. OpenSolar — Best Free Photogrammetry Alternative

OpenSolar makes this list as the honest free baseline. It does not use LiDAR — it builds 3D models from photogrammetry — and that tradeoff is exactly why it belongs here.

What It Does Well

The price is $0 forever. 28,000+ users in 185+ countries get design, CRM, proposals, and e-signatures free, per OpenSolar. The company monetizes hardware and lending partners instead of installers.

The photogrammetry-based digital surface model handles most standard residential roofs well. Accuracy is third-party validated by PVEL and a US government agency. Proposals generate fast, and mobile apps cover the full sales loop.

For a new installer, this is the rational starting point. You learn what 3D design data does for your close rate before you pay for LiDAR-grade precision.

Our Take: Start here, free. Move to Aurora or Scanifly when shading disputes or install-day misfits start costing more than a subscription would.

Where It Falls Short

No LiDAR means less precise obstruction and tree modeling. The 3D designer caps at 500 kW, with 2D only above that. There is no offline mode, and the CRM cannot match dedicated platforms.

Key Features

  • Photogrammetry-based 3D design with real-time shading
  • Interactive proposals with e-signature
  • Built-in CRM, payments, and financing integrations
  • Full iOS and Android apps

Pricing

  • Free tier: $0 — unlimited projects, users, and features
  • Free trial: Not needed; the product is free

Who Should Use OpenSolar

Strong fit: New and small residential installers and budget-conscious teams. Probably not right for: Projects above 500 kW and sites where shading precision decides the deal.


How to Choose a LiDAR Tool for Solar Design

Match the tool to your accuracy requirement before you compare features.

  1. Define your accuracy floor. Quoting tools need roof geometry close enough to price from. Engineering tools need geometry a lender or inspector accepts. Those are different floors with different prices.
  2. Check LiDAR coverage for your territory. The USGS 3D Elevation Program has mapped or scheduled LiDAR for nearly all of the United States, but capture dates vary. A 2018 scan misses the trees that grew since.
  3. Decide who verifies the model. Automated LiDAR modeling still misreads complex roofs. If nobody on your team checks the 3D scene, buy the tool with the best automation, not the most data.
  4. Price per project, not per month. Divide annual cost by your design volume. OpenSolar wins at low volume. Flat subscriptions win past roughly 15 to 20 designs a month.
  5. Follow the deliverable. Sales quotes, permit packages, and lender reports need different outputs. Pick the tool whose output your customer or financier signs.

The Contrarian Take: LiDAR Does Not Fix Shading Analysis

Here is the myth: better 3D data automatically means better production estimates. It does not.

Shading losses depend on 3 things: geometry, sun position math, and the simulation engine. LiDAR improves only the first. A precise point cloud feeding a crude simulation still produces a crude estimate. That is why HelioScope’s DNV validation matters more than its LiDAR checkbox, and why drone captures still need a real shading engine behind them.

We have seen installers pay for LiDAR data and then eyeball the shade scene. The accuracy gain evaporates. Spend on the full chain — geometry, simulation, and verification — or do not spend at all.

For most standard roofs, verified 3D modeling plus a physics-based engine gets you within quoting tolerance. Save LiDAR and drone budgets for the sites that genuinely need them: heavy tree cover, complex geometry, and financed projects. Our posts on how shading affects solar panels and drone inspection for solar go deeper on both.

Conclusion

The right LiDAR tool depends on your accuracy floor, not your budget ceiling.

  • Residential sales teams: Test Aurora Solar first, with Solargraf as the faster, cheaper alternative. Both turn LiDAR data into quotes without a site visit.
  • Accuracy-critical installers: Trial Scanifly on your next 3 complex roofs and count install-day revisions. That number decides whether drones pay for themselves.
  • Everyone else: Start with a free trial — OpenSolar at $0 or SurgePV’s full-feature trial — and upgrade only when shading disputes or misfits cost more than the subscription would.

If you want design, shading, financials, and proposals in 1 cloud workflow, book a 20-minute SurgePV demo.

Where SurgePV fits

For the product-side detail, SurgePV 3D roof capture covers the workflow, outputs and limits.

Frequently Asked Questions

What is LiDAR in solar design?

LiDAR (Light Detection and Ranging) is a remote sensing method that uses laser pulses to build accurate 3D models of roofs, trees, and terrain. Solar design software uses it to measure roof pitch, detect obstructions, and model shading without a site visit.

Do I need LiDAR for residential solar design?

Not always. For simple gable roofs in well-mapped areas, high-resolution aerial imagery and photogrammetry are usually enough. LiDAR earns its cost on complex roofs, tree-heavy sites, and projects where shading accuracy decides the sale or the financing.

How accurate is LiDAR for roof measurements?

Aerial LiDAR typically delivers roof measurements within a few centimeters. Drone photogrammetry platforms like Scanifly report 1 to 3 inch accuracy. Both beat tape-and-compass site surveys for speed, and both still need human review on unusual geometry.

Which solar software has the best LiDAR shading analysis?

Aurora Solar leads for residential sales workflows with LiDAR-based 3D modeling. HelioScope leads for commercial projects, with LiDAR on its Pro plan and simulations DNV-validated within 1% of PVsyst. Scanifly leads for drone-captured survey accuracy.

Is drone LiDAR better than satellite imagery for solar design?

For final engineering, yes. Drone captures produce inch-level models that satellite imagery cannot match. For early-stage sales quotes, satellite and aerial imagery are faster and cheaper. Many teams use imagery for quotes and drones for post-sale verification.

How much do LiDAR solar design tools cost?

Prices range from free (OpenSolar, photogrammetry only) to $259 per month for HelioScope Pro with LiDAR. Aurora Solar and Scanifly use custom pricing. PV*SOL Premium, which imports LiDAR and terrain data, costs €845 per year.

Can I use LiDAR data from public sources?

Yes. The USGS 3D Elevation Program provides free LiDAR point clouds for most of the United States. Tools like PV*SOL and PVcase can import this terrain data. Coverage and freshness vary by region, so check capture dates before relying on it.

About the Contributors

Author
Keyur Rakholiya
Keyur Rakholiya

CEO & Co-Founder · SurgePV

Keyur Rakholiya is CEO & Co-Founder of SurgePV and Founder of Heaven Green Energy Limited, where he has delivered over 1 GW of solar projects across commercial, utility, and rooftop sectors in India. With 10+ years in the solar industry, he has managed 800+ project deliveries, evaluated 20+ solar design platforms firsthand, and led engineering teams of 50+ people.

Editor
Rainer Neumann
Rainer Neumann

Content Head · SurgePV

Rainer Neumann is Content Head at SurgePV and a solar PV engineer with 10+ years of experience designing commercial and utility-scale systems across Europe and MENA. He has delivered 500+ installations, tested 15+ solar design software platforms firsthand, and specialises in shading analysis, string sizing, and international electrical code compliance.

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