1 of 5

Autonomous Robot for Maintenance and Cleaning of Solar PV Panels

Sale Sold out Pre-order
Regular price 7 107 705 Kč s DPH
5 874 136 Kč bez DPH
Regular price Sale price 7 107 705 Kč

Ask a question
Your Email
Delivery: 60 dnů
Payment: Celá částka

SKU: 1601392135611

Description

  • ✔ Maximum durability: Functional in extreme temperatures from -40°C to +50°C.
  • ✔ Autonomous operation: Intelligent navigation, obstacle avoidance and automatic charging.
  • ✔ Multifunctional solution: Panel cleaning, weed control and detailed visual inspection.
  • ✔ Accurate diagnosis: Automatic lifting PTZ and dual vision (visible light + IR).
  • ✔ Robust chassis: 8-wheel planetary mechanism for unparalleled cross-country ability.
  • ✔ Cost savings: Significant reduction in labor costs and increased efficiency of PV plants.

Introducing a revolutionary autonomous robot for photovoltaic plant maintenance and cleaning. This cutting-edge machine has been designed to optimize the operation and extend the life of your solar systems, even in the most demanding conditions. It eliminates the need for manual labor and ensures continuous, efficient operation.

Robot for PV plant maintenance

✨ Key Features for Flawless Operation ✨

  • Cleaning functions: High-pressure water guns for precise spot cleaning of dirt and prevention of hot spots.
  • Weeding function: Equipped with a mist nozzle for applying highly effective herbicides that quickly suppress weed growth around the panels.
  • Environmental monitoring: Possibility of equipping with various environmental sensors and support for visual inspections for comprehensive data collection.
  • Visual Detection: Dual vision (visible light + infrared) for accurate detection of hot spots, diode damage and other anomalies.
  • Autonomous obstacle avoidance: Accurate obstacle recognition and intelligent route planning for safe and efficient routes even in complex terrain.
  • Automatic charging: The robot automatically returns to the charging station after completing tasks or when the battery is low, ensuring continuous operation.

🔍 Explore every detail of this industrial robot 🔍

This photovoltaic power plant maintenance robot is a comprehensive solution for the efficient management and optimization of solar parks. It consists of a robust robotic chassis, an automatic PTZ lifting mechanism, a high-pressure water gun, a mist nozzle and an intelligent remote control. Its main task is to replace human labor in the operations and maintenance of centralized photovoltaic power plants, while adapting to different heights of solar panels for maximum cleaning efficiency.

Compared to traditional manual maintenance methods, the robot brings significant labor cost savings, increases the efficiency of the photovoltaic system and reduces overall operating costs. At the same time, it improves the quality of cleaning, which leads to a significant increase in the efficiency of electricity production by photovoltaic power plants. It is an investment that will quickly pay for itself thanks to optimized performance and an extended lifespan of your solar panels.

😔 Are you bothered by the difficult and expensive maintenance of your PV plant? 😔

Manual cleaning and inspection of large photovoltaic power plants is physically demanding, time-consuming and often inconsistent. Fluctuating weather conditions and difficult terrain make it difficult to maintain optimal panel performance, resulting in energy loss and shortened system life. In addition, there is a risk of worker injuries and high operating costs associated with human resources.

💡 Take back control and optimize efficiency with our robot! 💡

Our autonomous PV maintenance robot is designed to eliminate all these problems. It offers fully automated cleaning, inspection and monitoring, allowing you to keep your solar panels in perfect condition without constant human intervention. Save time, money and ensure maximum return on your solar energy investment.

Robot in action

🌟 More than just features, real benefits for your business 🌟

  • 8-wheel drive mechanism: -> Benefit: Unrivaled ability to overcome obstacles in challenging terrain, including gardens, forests and lawns.
  • Automatic lifting PTZ: -> Benefit: Accurate detection of grass and shrub height, inefficient production units, hot spots and cracks for more effective diagnostics.
  • Durable wheels for extreme temperatures: -> Benefit: Safe and stable operation in temperatures up to 50°C thanks to heat-resistant and self-extinguishing rubber wheels.
  • Low-temperature and waterproof design: -> Benefit: Reliable operation in extreme climates down to -40°C, ensuring continuity of maintenance.
  • Real-time image data collection: -> Benefit: Immediate and comprehensive support for maintenance personnel, improving the scientificity and accuracy of decision-making.
  • Advanced obstacle avoidance system: -> Benefit: Increased safety and efficiency through accurate perception of the surrounding environment and collision prevention.
  • Autonomous patrolling and tracking: -> Benefit: Intelligent planning of the optimal route according to set goals, increasing efficiency and safety.

🎯 Who is this robot the ideal choice for? 🎯

  • Operators of large photovoltaic power plants: Optimizing maintenance and reducing operating costs.
  • Companies engaged in the management and maintenance of PV plants: Increasing efficiency and expanding the service portfolio.
  • Renewable energy investors: Ensuring maximum return on investment and long-term operational stability.

🤔 Do you have concerns? We'll answer them! 🤔

  • Concern: How will the robot handle challenging terrain and obstacles? -> Answer: Thanks to the robust 8-wheel planetary mechanism and advanced obstacle avoidance system, the robot moves safely and efficiently even in complex environments.
  • Concern: Will it work in extreme weather conditions? -> Answer: Yes, it is designed to operate in a temperature range of -40°C to +50°C and has a waterproof design for reliable operation in any weather.
  • Concern: How is the quality of cleaning and inspection ensured? -> Answer: The robot uses high-pressure water guns for precise cleaning and a dual vision system (visible light + IR) with automatic PTZ for detailed and accurate diagnostics.

⚙️ Technical specifications and package contents ⚙️

Drive: 8-wheel planetary mechanism
Operating temperature range: -40°C to +50°C
Cleaning system: High-pressure water gun
Spraying system: Mist nozzle (for herbicides)
Inspection camera: Automatic lifting PTZ
Visual detection: Visible light + infrared dual vision
Wheels: Heat-resistant and self-extinguishing rubber
Autonomy: Automatic obstacle avoidance, autonomous patrolling, automatic charging
Communications: Real-time image data transmission

❓ Frequently Asked Questions (FAQ) ❓

What is this robot for?
It is designed for automated maintenance and cleaning of solar panels in large photovoltaic power plants, replacing manual labor and increasing efficiency.
What are its main advantages over manual maintenance?
The robot reduces labor costs, increases cleaning efficiency, improves inspection quality thanks to dual vision, and ensures stable operation in extreme conditions, thereby extending the life of the PV plant.
Can the robot handle maintenance in winter or heat?
Yes, it is designed for trouble-free operation in temperatures from -40°C to +50°C, making it ideal for year-round use.
Can the robot detect damage to the panels?
Thanks to its dual vision system (visible light + infrared) and automatic PTZ, it can detect hot spots, cracks and other panel damage with high accuracy.
How does the robot solve obstacles in the terrain?
It uses an advanced autonomous obstacle avoidance system that intelligently plans routes and prevents collisions, ensuring safe and smooth operation.
Is a weed control system included?
Yes, the robot is equipped with a mist nozzle that allows the application of herbicides to effectively suppress weed growth around photovoltaic panels.
Does the robot need constant supervision?
No, the robot is designed for a high level of autonomy, including automatic charging and intelligent route planning. Real-time data collection allows for remote monitoring and minimal need for human intervention.