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Trimble Inpho UASMaster software solution
Inpho UASMaster is a specialized software solution for photogrammetric processing of data collected by unmanned aerial vehicles (UAVs). Developed by Trimble, it combines cutting-edge photogrammetric techniques with ease of use, making it ideal for UAV mapping projects. UASMaster seamlessly integrates with Trimble’s geospatial ecosystem while supporting industry-standard data formats, enabling accurate, high-quality results for professionals in surveying, mapping, and inspection.
Description
Inpho UASMaster is designed to process UAV imagery for photogrammetric workflows, including image orientation, point cloud generation, and orthomosaic creation. It supports both large and small projects, offering a high degree of automation while retaining the flexibility to adjust settings manually for custom workflows. Its algorithms leverage Trimble's expertise in photogrammetry, ensuring precise geospatial outputs.
Key Features and Benefits
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Photogrammetric Processing:
- Automatic aerial triangulation for UAV imagery.
- Dense point cloud generation using advanced stereo matching algorithms.
- Creation of high-quality digital terrain models (DTM) and digital surface models (DSM).
- Orthomosaic generation with true color and high accuracy.
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High Precision and Accuracy:
- Processes GNSS and IMU data for precise georeferencing.
- Supports ground control points (GCPs) for enhanced positional accuracy.
- Achieves sub-centimeter accuracy, suitable for professional-grade mapping.
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UAV-Centric Optimization:
- Tailored to handle UAV-specific image capture patterns and overlaps.
- Processes data from fixed-wing and rotary UAVs with different camera types.
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Ease of Use:
- Intuitive user interface suitable for non-experts and professionals alike.
- Automated workflows for efficient processing.
- Detailed project quality reports to ensure high confidence in results.
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Customizability and Scalability:
- Supports manual adjustments for complex or custom workflows.
- Handles projects of varying scales, from small surveys to extensive datasets.
Technical Specifications
Feature | Details |
---|---|
Input Data | UAV imagery, GNSS/IMU data, Ground Control Points (GCPs) |
Camera Support | Frame, fisheye, panoramic, and RGB/multispectral sensors |
Outputs | Dense point clouds, DSM, DTM, orthomosaics, 3D models |
Supported Formats | TIFF, JPEG, LAS/LAZ, XYZ, GeoTIFF, ESRI Shapefile |
Accuracy | Sub-centimeter level with proper ground control |
Workflow Automation | Automatic aerial triangulation, point cloud creation, orthorectification |
Processing Speed | Optimized for high-speed performance on large datasets |
Hardware Requirements | High-performance workstation (see below for specifics) |
Hardware Requirements
Component | Minimum Requirement | Recommended |
---|---|---|
Processor | Intel i7 or equivalent | Intel Xeon or AMD Ryzen Threadripper |
RAM | 16 GB | 32 GB or more |
Graphics Card | Dedicated GPU with 4 GB VRAM | NVIDIA RTX series with 8+ GB VRAM |
Storage | SSD for faster processing | NVMe SSD |
Operating System | Windows 10 (64-bit) | Windows 10/11 Pro (64-bit) |
Applications
- Surveying and Mapping:
- High-resolution topographic mapping for land surveys, infrastructure planning, and urban development.
- Agriculture:
- Precision agriculture, including crop health monitoring, irrigation planning, and field analysis.
- Construction and Engineering:
- Site monitoring, volume calculation, and progress tracking for construction projects.
- Inspection:
- Inspection of infrastructure, including roads, bridges, and utilities.
- Environmental Monitoring:
- Data collection for forestry, water resource management, and environmental conservation.
Compatibility
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Input Data:
- Compatible with UAV data from Trimble UX5, DJI, Autel Robotics, and other UAV platforms.
- Supports a variety of camera types and photogrammetric sensors.
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Trimble Ecosystem:
- Fully compatible with Trimble Business Center for advanced data analysis and integration.
- Seamless integration with other Inpho modules for photogrammetry workflows.
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Third-Party Software:
- Outputs can be exported to CAD and GIS platforms like AutoCAD, ArcGIS, and QGIS.
- LAS/LAZ point clouds can be imported into 3D modeling tools and GIS systems.
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Output Formats:
- GeoTIFF, LAS/LAZ, ESRI Shapefiles, and other standard formats for easy sharing and analysis.