2.1D
Visualize 3D Land-Use Conditions in 2D!
Overview
In recent years, drone (UAV)-based surveying has increasingly used Structure from Motion (SfM) to derive three-dimensional information from multi-view images for assessing terrain and vegetation conditions. However, directly handling elevation data may require specialized processing environments and the capacity to manage large datasets, making it difficult to integrate such data into existing image-analysis workflows.
This invention provides a method for generating a surface composite image that utilizes acquired elevation information to facilitate an intuitive understanding of land-surface use and conditions. With this technology,height information derived from three-dimensional data can be represented as a widely compatible three-channel RGB image. As a result, the data can retain elevation information while remaining lightweight and easy to handle, enabling use in conventional image-processing environments and with a variety of freely available software tools.
In a comparative example of estate woodland extraction, the Dice coefficient was 0.64 when using orthophotos alone, whereas it increased to 0.80 when using the composite image, confirming improved extraction accuracy. These features make the technology promising as a practical means of seamlessly incorporating elevation information into existing image-based workflows, including vegetation assessment, visualization of land-surface use, and condition monitoring around disaster-affected areas and infrastructure.

Product Application
・Assessment and maintenance management of vegetation, including estate woodlands, park trees, and landscaping
・Assessment of agricultural land conditions
・Disaster assessment and environmental monitoring
・Inspection and assessment of man-made objects, including buildings and solar panels
・AI-based analysis of satellite imagery and geospatial exploration
IP Data
IP No. : WO/2024/262203
Inventor : Yonezawa C., Okada K.
keyword : drones, UAVs
