UAV image processing, video and high-performance single-screen and multi-screen portable workstations

UAV data processing aerial survey software Pix4D.Pix4Dmapper.Pro.v2.0.104

 

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  Specialization and simplification--PIX4D mapper brings photogrammetry into a new era, the whole process is fully automated, and the accuracy is higher, truly turning drones into a new generation of professional surveying tools. With simple operation and no professional knowledge, the flight controller can process and view the results, and send the results to the end user.

  Aerial triangulation, accuracy report--PIX4D mapper automatically calculates the external orientation elements of the original image through the software. Using PIX4UAV's technology and block adjustment technology, images are automatically calibrated. The software automatically generates an accuracy report, allowing a quick and accurate assessment of the quality of the results. Provides detailed, quantitative automatic air triangulation, block adjustment and ground control point accuracy.

  Fully automatic, one-key operation--PIX4D mapper does not need IMU, only needs the GPS location information of the image, it can be fully automatic and one-key operation, and does not need human interaction to process UAV data. Native 64-bit software, which can greatly improve the processing speed. Automatically generate orthophotos and automatically mosaic and level, stitching all data into one large image. Image results can be displayed by GIS and RS software.

  Cloud data, multiple cameras - PIX4D mapper can process up to 10,000 images simultaneously using its own unique model. It can process images shot by multiple different cameras, and combine multiple data into one project for processing.

PIX4D mapper data processing software workflow:

  Supports simultaneous processing of up to 10,000 images—processing data from different cameras in the same project—automatic processing of multiple flights and data greater than 2,000 images—intuitive and convenient interface, easy to add GCP—quick result graphs (DOM, DSM, etc.).

  Application areas: aerial surveying and mapping, disaster emergency response, safety law enforcement, agriculture and forestry monitoring, water conservancy and flood control, power line patrol, marine environment, university scientific research.

  At present, most brand workstations are general-purpose products, only UltraLAB graphics workstations, professional engineers configure hardware according to software features and specific user requirements, and graphics workstations provide one-to-one customized services.

       In 2018, the latest intel high-performance processor is adopted, which has greatly improved the performance of the previous generation. Combined with the characteristics of UAV aerial photography image data processing and calculation, the application of different scale departments, and its data scale, a more practical configuration scheme is given.

(1) Introduction of UltraLAB P490 all-round portable workstation

  Comprehensive improvement, the CPU frequency is greatly increased, the heat dissipation is more reasonable, and it meets the needs of mobile outdoor 3D modeling applications. It is currently the fastest portable workstation in the market. The biggest difference from counterfeit products on the market has higher core count and frequency (automatic overclocking) , dual GPU, system low-latency optimization, parallel storage architecture, providing 10-core 4.5GHZ/8-core 4.6Ghz/6-core 4.8Ghz high-frequency mobile 3D high-speed modeling requirements, maximum 12TB SSD or 8TB SATA capacity storage stand-alone portable model.

(2) Introduction of UltraLAB P480T all-around three-screen portable workstation

 

The function description is exactly the same as the above P480, providing a three-screen display solution

Recommended latest hardware configuration

 

 

​Conclusion

       In the fields of factory site selection, smart city, smart community, river monitoring, road monitoring, power line patrol, digital mine and other fields, there are more and more applications of oblique photogrammetry, and the image accuracy and data volume are increasing. State-of-the-art high-speed and perfect application hardware configuration significantly enhances the application's ever-increasing demand for processing speed.

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