🌞 Agriculture × Solar Energy

Maximum yield. Maximum energy.
From the same land.

AVI is a smart heat-map for farmland — it learns what the crop needs, works out how much solar coverage the land can take without hurting yield, and stays with the project from planning through day-to-day operation, with real-time alerts and recommendations.

2revenue streams from the same land
4rollout phases, planning to Scale Up
24/7monitoring, alerts & recommendations
The Mission

A smart map that speaks the plant's language

Our goal: build a live data layer over farmland that supports a well-informed decision — where, how much, and how to add solar panels without hurting (and even improving) crop output, turning every acre into the most profitable version of itself.

Energy + agriculture, not energy or agriculture

A combination that produces two revenue streams at once from the same land — instead of choosing between farm income and solar income.

Data-driven, not guesswork

Crop and solar-coverage recommendations are grounded in scientific literature, agricultural ministry data, and real-world case studies.

Learns and improves over time

Every new project feeds our model — and every existing field benefits from sharper, more accurate recommendations.

The Process

From planning to Scale Up — four phases

From an initial feasibility check, through building the infrastructure, to smart operations that keep improving with every project.

01
Phase One

Pre-Assessment (Feasibility)

  • Check what can be grown on the specific farmland, based on climate and soil.
  • Cross-reference crop needs against the developer's requested panel size and coverage percentage.
  • Deliver a clear "will it work / won't it work" verdict based on the field's geographic location.
02
Phase Two

Setup & Integration

  • Install the panels and build a full digital map of the site — creating a Digital Twin.
  • Establish the orchard: planting and agricultural infrastructure, matched to the panel layout.
  • Deploy a monitoring system for the crop — on the panels, in the soil, and from the field's control center.
03
Phase Three

Day-to-Day Operations

  • The farmer keeps farming as usual — the system runs quietly in the background.
  • Ongoing reporting: dashboard, WhatsApp alerts, and reports with actionable recommendations.
  • Solar automation: moving panels via trackers based on sun angle and crop needs, and washing panels to reduce heat load on the crop.
  • Agricultural automation: automatic irrigation control based on soil-moisture sensors.
04
Phase Four

Replicating the Process — Scale Up

  • The system gets smarter with every data point gathered from every project.
  • Scale Up gets faster and stronger the more active projects come online.
The Data Engine

Building a Database / Agentic Data Source

The foundation behind every recommendation: a living knowledge layer built from science, the field, and learning models.

01

Global scientific knowledge

Gather data from established literature and agricultural-ministry recommendations worldwide, for optimal growing conditions at any given location.

02

Learning from existing projects

Integrate data from existing agrivoltaic combinations — what worked, what didn't, and which insights can be replicated or avoided.

03

Case studies

Compile case studies from Israel and abroad, across projects of different scales.

04

Solar system specifications

Agrivoltaic-specific: ideal panel size, with or without trackers, height above the field, lateral panel movement, and all common configurations — matched to crop type.

05

Real-time field data

Collect data from the field and from the farmer's and panels' actions — storing, cleaning, and retaining it to learn from and improve real-world practice.

06

ML for continuous refinement

Learning models that keep updating and improving the data as more information is collected.

Building the Platform

From the field to the screen — and back to the field

An integration layer, dashboard, and AI agents that connect data to real-world action.

Full operational integration

Connecting every system — panels, water, power, and software — into a single data layer.

Digital Twin dashboard

An interface for spinning up new projects, built from top-down aerial imagery — as flat and simple as possible.

Reporting pipeline

Automatically generated periodic reports with clear, actionable insights.

Mobile alert agent

An agent that pushes WhatsApp and mobile alerts the moment there's an anomaly or an action recommendation.

Action-taking agent

An agent that automatically executes some recommendations — moving trackers, washing panels, adjusting irrigation.

Farmer coaching automation

Explains what makes a field succeed, and gets sharper as more data and projects accumulate.

Digital Twin

The platform in action

A field map, a management dashboard, mobile alerts, and an AI agent you can talk to — every field, in real time, in one place.

Agronomic Risk Map — Demo View

Project evidence layer
ProjectDemo Orchard A-17
CropAvocado
Monitoring periodLast 30 days
Area monitored12.8 hectares
Last synchronizationnow
0Cells monitored
0Zones flagged
Healthy Watch Elevated Critical
Daily energy output312 kWh
Avg. soil moisture38%
Open alerts2
Energy output — last 7 days
Mon Tue Wed Thu Fri Sat Today
  • 🧭 Tracker angle32° · active
  • 🚿 Panel washscheduled 04:00
  • 💧 Irrigation — Zone B2running now
2:32 PM
Tuesday, July 14
🔆 AVI · 2 min ago
Tracker auto-adjusted to a 32° tilt — optimal afternoon shade for the crop.
💧 AVI · 12 min ago
Automatic irrigation started in Zone B2 for 20 minutes.
AVI
AVI Agent
Online
How's Zone B2 doing today?
Soil moisture dropped to 31%, below the 35% threshold. Radiation forecast is high today — I'd recommend irrigating now for 20 minutes and tilting the panels to 30° for partial shade.
Approve
Done ✓ Irrigation started in Zone B2. Moisture is expected to recover to 42% within about two hours. I'll flag it if further follow-up is needed.

Weekly Report — Field 12

Jul 1–7, 2026

AVI

Agro Voltaic Intelligence

2,184 kWhWeekly energy output+6% vs. last week
36%Avg. soil moistureStable
5/6Alerts resolved83%
Week 1 Week 2 Week 3 Week 4 Combined output index (crop + energy)
  • Recommend increasing tracker angle by 5° in Zone A3 to improve morning sun exposure for the crop.
  • Panel efficiency dropped 4% due to dust buildup — recommend scheduling a wash next week.
  • Zone C2 shows early signs of heat stress — consider additional shading between 12:00–15:00.
Auto-generated by AVI · Jul 8, 2026 Sample for illustration only
Data Insights Automation Projects
Phase Four

A learning loop that only gets stronger

Every agrivoltaic project adds new data to our model. The more projects, the sharper the insights, the better the recommendations — and the faster and cheaper Scale Up becomes for the next ones.

+1new project
model accuracy
rollout time
Calculator

How much more money can your land make?

This calculator maximizes your agronomic field — as much crop output as possible, as much solar energy as possible, without one hurting the other. Pick a crop, region, and field size to see an early estimate of your combined revenue.

Estimated net profit contribution after system costs — not a raw electricity price.
Recommended coverage for Leafy greens: 48%
Estimated annual revenue $0 +$0 (+0%) vs. crop-only baseline
Crop revenue: $0 Energy revenue: $0
Expected crop yield100%
Annual energy output0 kWh

* Illustrative estimate for an initial planning conversation — not a quote. Final numbers require a full agronomic and engineering site assessment.

Let's check your land's potential

The pre-assessment phase takes just a few days — the outcome: a clear answer on whether and how to combine solar and agriculture on the same plot, and the expected return.

Book a consultation