Smart Agriculture PLC Control Cabinet Energy Saving Greenhouse Regulation
Product Describe:
Application Scenarios | Core Function Description | Energy-Saving/Regulation Highlights |
---|---|---|
Precise Environmental Control | Links temperature, humidity, and CO₂ sensors to automatically start/stop heating/cooling, ventilation/humidification equipment | Prioritizes natural regulation (e.g., window ventilation) to avoid unnecessary equipment operation; supplements CO₂ on-demand (only during daytime photosynthesis) |
Intelligent Lighting Optimization | Integrates light sensors with LED grow lights, adjusting artificial lighting (dimming/on-off) based on natural light intensity | Reduces fixed lighting duration, matching crop light needs (e.g., supplementary light on cloudy days, dimming on sunny days) |
Efficient Water & Fertilizer Management | Connects to soil moisture sensors for automatic drip irrigation and precise fertilization, regulating dosage by crop growth stage | Avoids over-irrigation/fertilization; schedules irrigation during low-evaporation periods to save water and energy |
Energy-Saving Equipment Coordination | Integrates solar energy and energy storage systems, prioritizing renewable energy use; staggers operation of high-energy devices (e.g., heat pumps) during off-peak hours | Reduces grid reliance, lowers peak-time electricity costs and fossil energy consumption |
Multi-Zone Adaptive Regulation | Controls temperature, humidity, and lighting independently for zones (e.g., seedling vs. fruiting areas); adjusts strategies seasonally (heat retention in winter, shading in summer) | Eliminates energy waste from uniform regulation; recovers waste heat (e.g., from dehumidifiers) for supplementary heating |
Data-Driven Energy Efficiency Analysis | Collects energy consumption and equipment operation data, generating reports to optimize control strategies | Identifies inefficient equipment; dynamically adjusts parameters (e.g., night temperature thresholds) to reduce energy use |
Design:
Type | Common Size Range (H × W × D, unit: mm) | Application Scenarios |
---|---|---|
Small Control Cabinet | 600×400×300 to 800×600×400 | Simple environmental control (e.g., temperature and humidity regulation in single-zone greenhouses), integrating a small number of sensor and actuator interfaces |
Medium Control Cabinet | 1000×800×500 to 1200×1000×600 | Multi-parameter regulation (temperature, humidity, light, CO₂), suitable for medium-sized greenhouses (500-1000㎡) |
Large Control Cabinet | 1400×1200×800 to 1800×1500×1000 | Complex systems (including renewable energy integration, multi-zone independent control) for large multi-span greenhouses or agricultural parks |
Custom Sizes | Custom-designed (e.g., wall-mounted, embedded) |
Special installation environments (e.g., space-constrained greenhouse corners) or customized functions (e.g., installation of additional expansion modules) |
IP Grade:
IP54 / IP55 / IP65 / IP66
Suggestion: