Power Station Inspection Robot
The Power Station Inspection Robot is equipped with a highly passable tracked chassis specially designed for the complex terrain of photovoltaic power stations. Meticulously engineered and optimized via simulation, this chassis delivers exceptional obstacle-crossing, climbing capabilities, and maneuverability on sandy and soft ground.
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Product Introduction
Solution Introduction
The Power Station Inspection Robot features a highly passable tracked chassis specially engineered for the complex terrain of photovoltaic (PV) power stations. Meticulously designed and simulation-optimized, this chassis delivers exceptional obstacle-crossing, climbing capabilities, and maneuverability on sandy and soft ground surfaces.
Superior Terrain Adaptability
- The tracked locomotion system boasts low ground pressure, effectively preventing sinkage risks on sandy, gravelly and other soft terrains.
- Its proprietary track pattern and material formulation provide ample grip, ensuring stable operation on dry sand dunes and slopes up to 30° without slipping or overturning.
High-Reliability Structure
- The chassis frame is constructed from high-strength aluminum alloy and carbon steel, optimized via Finite Element Analysis (FEA). It achieves an optimal balance of lightweight design and high rigidity, withstanding long-term exposure to field vibrations and harsh environments.
- Key components feature an IP67 protection rating, effectively resisting erosion from sandstorms and rainfall.
Agile Maneuverability
- Dual-motor independent drive paired with differential steering control enables an ultra-small turning radius. The robot can flexibly steer and U-turn within the narrow gaps between PV arrays, achieving full-coverage inspection with zero blind spots.
AI-Powered Intelligent Inspection & Analysis
- Leveraging years of accumulated PV industry data, we have built a dedicated PV scenario database covering various fault types such as module cracks, loose backsheets and abnormal temperature points.
- Trained on full-scenario inspection data, the integrated AI monitoring model supports front-side module defect detection, backsheet anomaly identification and power station temperature abnormality diagnosis, with an overall recognition success rate of over 95%.
Integrated & Modular Functional Platform
- A pan-tilt unit, multi-sensor suite, computing module and power supply system are seamlessly integrated on the chassis with a well-optimized layout and low center of gravity, further enhancing motion stability.
- The modular design facilitates convenient post-deployment maintenance and flexible function expansion.
This tracked robot platform serves as a robust foundation for achieving efficient, stable and fully automated full-coverage inspection in project sites characterized by low sand dunes and undulating terrain.
Performance parameters
Category | Attribute | |
Basic Parameters | Walking Mechanism | All-terrain tracked vehicle |
Source of power | Motor drive / Lithium battery | |
Performance | Operating Temperature | -30℃ to 60℃ |
Protection Level | Greater than or equal to IP55 | |
Cloud Platform | Range of motion | 360° Horizontal Vertical -90° to 90° |
Visible Light Focal Length | 5–160 mm | |
Visible-light camera resolution | 2K | |
Thermal imaging camera resolution | 640×512 | |
Thermal imaging camera temperature measurement accuracy | ±2° | |
Temperature measurement range | -20℃ to 500℃ | |
Thermal imaging camera focal length | Greater than or equal to 7mm | |
Power Supply | Maximum Cruise | ≥6h |
Charging Method | Automatic charging | |
Other | Operating Mode | Autonomous Navigation |
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