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[Urban Planning Operators × 3D Data Utilization] Acquisition of Current 3D Data for Redevelopment Areas, etc.

We possess the technical capability to operate drone aerial photography, Hovermap scanning, and photogrammetry as an integrated system, demonstrating high adaptability!

Using the unmanned aerial vehicle 'Hovermap', it is possible to obtain 3D data of the current state of redevelopment areas, conduct spatial simulations, and create visualization content for residents and government officials. With photorealistic 3D visualization using tools like Twinmotion, we can support consensus-building among stakeholders, residents, and government officials. Additionally, our track record of providing aerial footage for NHK information programs and historical dramas enhances our credibility with media and government agencies. 【Features】 - High-precision scanning of locations where GPS signals are unavailable, such as indoors, underground, and behind structures, which were difficult to scan conventionally. - Generation of high-precision and high-quality 3D models through the combination of photogrammetry. - A composite technology of aerial photography and scanning for a three-dimensional understanding of structures and digital archiving. *For more details, please download the PDF or contact us.

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basic information

【emesent Hovermap Specifications】 ■Laser Sensor: Velodyne Lidar VLP-16-Lite ■Measurement Accuracy: ±3cm ■Laser Class: Class 1 ■Laser Range: Up to 100m ■Data Acquisition Speed: 300,000 points/second ■System Weight: 1.8kg *For more details, please download the PDF or contact us.

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Applications/Examples of results

【Measurement Utilization Examples】 ■ Underground and Cave Surveys ■ Bridge Inspections ■ Building Exterior and Interior Surveys ■ Structural Surveys and Inspections ■ Forest Surveys ■ Urban Block Measurements ■ Tunnel Surveys ■ Power Line Surveys and Inspections ■ Traffic Accident and Disaster Scene Investigations *For more details, please download the PDF or contact us.

Unmanned Aerial Vehicle 'Hovermap' *Achieves self-position estimation in places where GPS is unavailable, even at night or in darkness.

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