Description:Photovoltaic cleaning robots can achieve indoor positioning and navigation. The first two groups (25 sets) of M and 10M scanning range LiDAR ensure positioning and navigation accuracy to within 2.5 centimeters. To help the robot effectively and sensitively avoid obstacles, up to 13 sets of ultra-wideband radars are equipped around the robot.
Photovoltaic cleaning robots can automatically plan cleaning paths and complete the cleaning tasks according to a set list; with a cleaning speed of about 0.6m/s, equipped with a high-capacity lithium battery (which can operate continuously for 6 hours), the cleaning efficiency reaches 2000 square meters. With the advancement of science and technology, the emergence of photovoltaic cleaning robots has replaced manual labor, effectively addressing issues such as hidden cracks on the panels due to uneven manual cleaning efforts and safety concerns.
Photovoltaic cleaning robots can achieve indoor positioning and navigation. The first two groups (25 groups) of M and 10M scanning range LiDAR ensure positioning and navigation accuracy to within 2.5 cm. To help the robot effectively and sensitively avoid obstacles, up to 13 groups of ultra-wideband radar are equipped around the robot. The photovoltaic cleaning robot is suitable for cleaning robots in public places such as large shopping malls, airports, exhibition halls, and office buildings. The photovoltaic cleaning robot can help cleaners repeat large amounts of cleaning work.
Photovoltaic cleaning robots are equipped with special anti-slip movement to increase contact area with solar panels, ensuring surface damage-free water cleaning without slippage, and are safe and reliable to use. The robots operate at high speed; both the front and rear ends are fitted with efficient cleaning devices, achieving five cleaning effects in a single movement, offering high efficiency and excellent results. The photovoltaic cleaning robots are controlled by remote wireless control for greater flexibility.
The photovoltaic cleaning robot is mainly composed of three parts: the main body of the cleaning robot, a high-pressure water pump truck, and a remote controller.
1. Robot Main Body: The main body of the robot is the primary component for cleaning tasks, comprising a tracked chassis, high-efficiency cleaning equipment, and a central control automatic system. It achieves high cleaning efficiency in both water and dry conditions for photovoltaic arrays, operates without external power connections, and is convenient and reliable to use. Under the control of the remote, the robot can move forward, backward, and turn left or right, allowing it to navigate any direction on the surface of the photovoltaic panels with no blind spots in cleaning operations.
2. High-pressure Water Pump Truck: To ensure a stable water supply for the cleaning robot, our company uses a high-pressure water pump truck, which can reach a pressure of 12MPa and discharge 14 liters per minute. It is easy to transport and can significantly improve the cleaning effect.
3. Remote Control: Operate the robot's cleaning functions remotely via the remote control, including movement direction, speed, drum brush rotation direction, edge detection switch, and current voltage checks.
4. Additional Extended Equipment: According to the customer's specific needs, we can provide equipment such as a view angle image transmission system, lighting system, etc., to facilitate ground-level observation of the surface and cleaning condition of photovoltaic panels, and assist robots in nighttime cleaning operations. We can also equip vehicles with different lengths of hoses and tailor-made water and electricity supply systems, along with other auxiliary equipment to meet customer requirements.
Our company adheres to the "creativity" philosophy and upholds the quality policy of "customer first, people-oriented, honesty for trust, quality for victory, and innovation for global competition," as well as the corporate spirit of "being honest in character and earnest in work."































