Product Details
Full-automatic Uav Inspection System
After completion, this photovoltaic power station will face enormous operational and maintenance pressure. Firstly, the large area covered by the photovoltaic panels makes manual inspection difficult; secondly, traditional visible light makes it hard to locate overheating areas of the photovoltaic panels and prevents automatic sprinkler cooling. These are issues that urgently require solutions.
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Full-automatic Uav Inspection System
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Description
Project Background
After completion, this photovoltaic power station will face enormous operational and maintenance pressure. First, the large area covered by the photovoltaic panels makes manual inspection difficult; second, traditional visible light methods struggle to locate overheating areas on the photovoltaic panels and cannot automatically trigger sprinkler cooling systems. These are urgent problems that need to be solved.
Solution
Lenovo has customized a fully automated closed-loop operation and maintenance solution for the client, incorporating drone-based precise repositioning inspection, intelligent algorithms for rapid defect detection, and sprinkler system activation for defect elimination. Based on the park's layout, multi-drone collaborative scheduling is used to collect comprehensive inspection materials from the photovoltaic panel area. Then, using drone RTK precise positioning and mapping + 3D reconstruction technology, precise photovoltaic panel positioning is achieved. A thermal spot detection algorithm based on infrared images is used to automatically identify areas of abnormal overheating on the photovoltaic panels, triggering the sprinkler system.
Customer income
Comprehensive inspection coverage of the photovoltaic power generation area; complete inspection of 32 buildings in just 20 minutes.
Precisely locates defect coordinates, eliminating the need for manual visual inspection.
Fully automated process, saving significant labor costs for inspection
Related Solutions
A novel parallel reactor is connected to the power system in a parallel configuration to compensate for capacitive reactive power in the transmission and distribution system.
The smoothing reactor is connected in series with the DC high-voltage line, acting as both part of the converter station and a back-to-back interconnection between different
The converter reactor is located between the flexible DC converter valve and the connecting transformer. It can be installed on either the DC side or the AC side of the converter valve.
Consulting
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