We design intelligent greenhouse systems that balance light, climate, irrigation, and nutrients—maximizing yield while reducing inputs. Data-guided. Low maintenance. Built to scale.
Our automated greenhouses minimize manual monitoring and control.
Built around sensor-fusion (temperature, humidity, CO₂, soil moisture, illuminance) with low-power control of lighting, water, heat, and ventilation with an optional robotics and camera systems.
Our solution is designed as modular prototypes that scale to ~15 m × 25 m houses.
Quickly configure bays and mounts for sensors, cameras, and actuators; waterproofed electronics and ISO-minded casing, with CAD-driven design for build and simulation.
Integrated control loops for lighting, water, heat, and ventilation, calibrated from live sensor data to keep stable conditions and reduce inputs. Wireless links tie sensors, microcontrollers, and the server for reliable operation.
On-board AI analyzes camera feeds to flag pests and diseases, estimate ripeness, and indicate water need, surfacing issues early for targeted intervention.
Simulation tools predict winter energy use, water consumption, and harvest dates (±7 days), helping plan resources and labor across cycles.
We are a collective of mechatronics, mechanics, electronics, software, and innovation students and partners in Denmark are developing the automated greenhouse solution as a common dream.
Get to know more about who we are and what we do!
We’re a hands-on group with 2,250+ project hours across multiple areas, with our main experties coming from prototyping, designing the housing, waterproofing and reliability tests, and sensor-fusion for climate control. We are focused on proving a functional, scalable concept rather than a polished product.
We integrate temperature, humidity, CO₂, soil-moisture and illuminance sensors with camera AI to flag pests and disease, estimate ripeness, and signal water need. All of these backed by a digital twin that forecasts winter energy use, water consumption, and harvest dates (±7 days).
Modular structures designed and simulated in CAD, built for serviceability and growth: compact modules (L/W 1.2–1.7 m, H 1.9–2.5 m) engineered to scale to ~15 m × 25 m. Emphasis on energy-efficient heating/ventilation and material choices suited to Danish weather conditions.
From low-power actuation of lighting, water, heat and ventilation to the backend: SQL database, Tomcat 9+, Spring/Spring Security, JWT (RS256/ES256), and TLS 1.3/HTTPS. Wireless links connect sensors, microcontrollers and server; dashboards surface trends, alarms, and site status.
From harsh winters to labor gaps, autonomous climate and irrigation make dependable indoor production possible.
Our platform is built for sites where conditions swing by the hour or hands-on oversight is limited. It stabilizes temperature, humidity, CO₂ and watering through low-power control of lighting, heat, ventilation, and fertigation; forecasts winter energy use, monthly water needs, and harvest windows; and flags pests, disease, ripeness, or water stress with AI vision—so yields stay on schedule with fewer inputs.
Why now?
Automation costs are falling faster than energy prices.
Climate volatility is rising, making controlled environments essential.
The first movers in autonomous greenhouses will set the standards.
We’re ready to be among them WITH YOU.
Our team has the research, the grit, and a clear vision.
What we need next are partners who see the same opportunity.
Whether you invest capital or bring a first site, your involvement now shapes the next wave of automated greenhouses.
Contact us using the form, or send our team an email!
E-Mail: szelgaardaps@dimosaholdingaps.com
Prefer to talk by phone?
We’re available Mon–Fri, 09:00 – 18:00 (Danish time, CET/CEST)
📞 +45 50 41 29 27