Cybernetic system
for plant growth control
Land Green TechnologyLAGRE™Integrated Research Platform
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INTELLIGENT
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LAGRE™ PRODUCTS & ENGINEERED SYSTEMS

OUR STRATEGIC DIRECTION:
INNOVATIVE AGRICULTURAL TECHNOLOGIES OF THE FUTURE


Our company is built on many years of fundamental research and advanced development in precision plant cultivation. Our investigation of unique nanoparticle-based nutrient formulations has led us to a key scientific conclusion: maximum biological efficiency can be achieved only through an individualized approach to each plant and the complete automation of every process.

This synergistic integration of fundamental science and robotics has opened a new strategic direction for the company: the development of fully automated, closed-loop plant cultivation systems based on high-pressure aeroponics and controlled-environment agriculture (HPA/CEA).

We do not simply manufacture equipment; we create an independent digital ecosystem for managing biological signals.


Not one universal recipe — a validated programme for a particular crop, variety, development stage and task.


Key Technological Features of Our Systems

01

Digital Intelligence

Proprietary software built on flexible PLC-based algorithms manages the entire plant life cycle in real time.

02

Spectral Modulation

Ultra-precise lighting control using programmable combinations of 16 independently controlled LED spectral bands and 256 intensity levels.

03

Precision Monitoring

An integrated array of high-precision sensors and actuators automatically maintains critical environmental parameters, including pH, electrical conductivity (EC), dissolved oxygen (DO), temperature, humidity, and atmospheric gas composition.



LAGRE™ PRODUCTS & ENGINEERED SYSTEMS

PRODUCTS AND SOLUTIONS
CATALOGUE


Our entire equipment range is developed and manufactured at our own production facility, fully certified, and equipped with centralized digital control.


1. Automated Research Phyto-Laboratories


High-technology, precision-grade chambers and modules designed for controlled seed germination and the cultivation of low-growing crops.

Scalability: The control architecture allows individual modules to be integrated into unified industrial and scientific clusters comprising from 100 to 1,000 units, with each chamber programmed independently.

Applications: An ideal solution for plant-breeding centres, university laboratories, and the R&D divisions of agricultural enterprises.


Automated Research Phyto-Laboratories
Automated Research Phyto-Laboratories

2. Intelligent Dosing and Control Units


Professional automated systems based on industrial controllers for the continuous measurement and adjustment of nutrient-solution parameters.

Controlled Parameters: Precise maintenance of acidity (pH), electrical conductivity (EC), and dissolved oxygen (DO) concentration.

Reliability: Equipped with fast-response valves and chemically resistant sensors for reliable operation in aggressive process environments.


Intelligent Dosing and Control Units
Intelligent Dosing and Control Units

3. Robotic Conveyor Systems — Vertical and Horizontal


Proprietary industrial conveyor systems designed for the high-density commercial cultivation of strawberries, other berries, leafy greens, and suitable specialty crops.

Optimization: Maximum productive growing area through automated vertical multi-tier and horizontal tray movement.

Automation: Complete control of irrigation, microclimate, and lighting throughout every section of the conveyor system.

Robotic Conveyor Systems — Vertical and Horizontal
Robotic Conveyor Systems — Vertical and Horizontal

CONTRACT RESEARCH SERVICES — R&D ON DEMAND


We believe that technology becomes truly powerful when it is validated in practice. Our company accepts commissions for comprehensive research programmes conducted at our own fully operational innovation centre.

Our Objective: To identify individualized nutrient formulations, lighting profiles, and hydrodynamic parameters for seed germination and the optimization of each customer’s crop development.

Working Format: Every research programme is conducted strictly in accordance with a technical brief agreed in advance. Upon completion, the customer receives detailed morphometric reports and performance charts.


Formula-G1™ · Cybernetic system for plant-growth control

Control the variables.
Read the plant.

Formula-G1™ brings nutrient programmes, water properties, atmospheric conditions, root-zone management and multispectral light into one programmable research environment.

Instead of treating cultivation as a fixed recipe, the system allows selected factors to be configured, varied and recorded independently for a specific plant, seed, stage and research task.

350Phytolaboratories
16Spectral ranges
250Intensity levels
3Solution tanks per phytolab

Two patent certificates · Taiwan and the United States

Patent-protected platform Two patents.
One research architecture.
Original Taiwan patent certificate as shown in Land Green Technology Poster No. 2
Taiwan PatentI 803123
Original United States patent certificate as shown in Land Green Technology Poster No. 2
United States PatentUS 12,600,768 B2
Nutrient formula Water Atmosphere Root zone Light

Patent-protected Formula-G1™ architecture

The two original patent certificates from Land Green Technology Poster No. 2 are presented openly on the first Formula-G1™ screen.

Taiwan Patent I 803123

Original Taiwan patent certificate presented in LGT Poster No. 2

United States Patent US 12,600,768 B2

Cybernetic System for Plant Growth Control · granted January 23, 2026

7+Years of research
2,000+Formulations studied
200Automated seed boxes
1,500Planned module capacity

A research system—not a single formula

Formula-G1™ defines a biological task, controls selected inputs, records plant response and supports refinement of the next experimental configuration.

Concept visualization of modular Formula-G1 plant research chambers with separate root and shoot zones
Concept visualization · Modular phytolaboratories · Root and shoot environments

From selected inputs to measured response

01

Research signals

  • Individual nutrient programmes
  • Controlled water parameters
  • Atmospheric conditions
  • Programmable light
02

Cybernetic control

  • Dosing and preparation
  • Sensors and data acquisition
  • Software schedules
  • Remote monitoring
03

Plant response

  • Germination and establishment
  • Root architecture
  • Shoot development
  • Physiological assessment

The platform supports controlled comparison and repeatability. Biological effects remain specific to the plant, protocol and experimental conditions.

Concept visualization of rice plants in transparent research chambers with visible roots and controlled LED lighting
Concept visualization · Visible root architecture and controlled shoot lighting

Built around the plant—not around a standard fertilizer

Each research programme begins with the biology of the selected plant or seed. Nutrient composition, water, atmosphere and light can then be configured for the developmental stage and the specific question under study.

Root environment

A dedicated root chamber supports controlled delivery and monitoring. Depending on the research configuration, nutrition may be supplied through hydroponic, aeroponic, drip or fine-mist methods.

Shoot environment

The upper compartment provides controlled lighting and environmental measurement around the stem and leaves, allowing the root and shoot zones to be studied as connected but distinct environments.

Individual nutrient supply

Three nutrient-solution tanks in each phytolaboratory support individually prepared treatments and structured comparisons within a defined protocol.

Light becomes a measurable research signal

Formula-G1™ provides 16 spectral ranges with 256 intensity levels. Timing, spectral selection and intensity can be programmed as part of a defined experimental sequence.

Light is therefore studied alongside nutrient, water and atmospheric signals—not presented as a universal treatment or an isolated promise of yield.

16spectral ranges × 256intensity levels
Programmable combinations are selected according to the research protocol.

A platform designed to connect people, experiments and data

Authorized users can monitor configured experiments through internet-connected control software. The objective is to make advanced plant research accessible across distance while preserving defined protocols and experimental records.

Formula-G1™ was conceived as a collaborative environment for scientists, universities, students, technology developers and agricultural partners. It can also support dedicated participation programmes for people with disabilities.

Remote monitoring Programmable schedules Sensor records Repeatable protocols
Concept visualization of an array of automated seed and plant research modules
Concept visualization · Scalable automated research modules

Build a controlled programme for a specific plant and task

Land Green Technology works with research institutions and technology partners to develop, test and document controlled plant-development programmes.

Discuss Your Research Task