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Precision Agriculture solution
Agriculture

Precision Agriculture

Streamline data sampling with timely drone-based collection methods; optimizing crop management and effective disease control

Advanced precision agriculture solutions providing comprehensive crop monitoring, multispectral analysis, and automated data collection for optimized farming operations and enhanced crop management.

Advantages

Georeferenced Crop Health Evaluation

Evaluate health and prevent diseases of each individual crop with georeference data collection, addressing the difficulty of accurately locating crop areas that need attention without geotagged data.

Increased Data Sampling Frequency

Increase data sampling frequency with fast aerial data collection, eliminating manual samplings that are lengthy and labor consuming, thus reducing the possible sampling frequency.

Comprehensive Data Analysis

Access a variety of data including RGB images, multispectral, thermal, and LiDAR data, replacing traditional crop evaluation methods that rely on observation with limited data analysis.

Large Area Coverage

Cover larger areas in a single flight, providing comprehensive visibility of crop field overall health that was previously limited with traditional methods.

Applications

Crop Health Monitoring

Monitor crop health status and identify disease outbreaks early using multispectral and thermal imaging for precision agriculture management.

Yield Optimization

Optimize crop yields through data-driven decision making and precision application of fertilizers and pesticides based on field analysis.

Disease Detection

Early detection of plant diseases and stress conditions using advanced imaging and AI-powered analysis for timely intervention.

Solution Features

Comprehensive drone-based solutions designed for agriculture operations.

Portable Drone for Mapping and Stand Count Analysis Solution

The DJI Mavic 3E is a portable surveying and mapping drone suitable for single-pilot operations. Pair with 3rd party stand count algorithms, the solution enables precise and quick estimations of stand count status, empowering informed decision-making in agriculture.

  • Portable solution, easy to operate and to carry across multiple farms and fields
  • Centimeter level data thanks to its mechanical shutter and RTK capability
  • Integration with third-party stand count algorithms for precise crop analysis
  • Quick estimations of stand count status for informed agricultural decision-making
  • Single-pilot operation for efficient field coverage
  • High-resolution mapping capabilities for detailed crop assessment

Workflow

1
Data Collection

Plan a 2D map mission for regular orthomosaic data acquisition or waypoint mission for site video recording and pano stitching optimized for agricultural field coverage.

2
Data Processing

Import collected images into DJI Terra to create 2D maps and 3D Models optimized for agricultural analysis and stand count evaluation.

3
Data Analysis

Seamlessly integrate the results into third-party software for advanced stand count analysis, enhancing efficiency and accuracy in agricultural assessments.

4
Decision Making

Generate comprehensive agricultural reports with stand count data and crop health analysis for informed farming decisions and yield optimization.

Platform Specifications

DJI Mavic 3E
Weight: 915 g
Max Flight Time (no wind): 45 minutes
Sensing type: Omnidirectional binocular vision system with infrared sensor
Environment Adaptability: Max Take-off Altitude Above Sea Level 6,000 m
Max Wind Speed Resistance: 12 m/s
Wide Camera: 4/3 CMOS, Effective pixels: 20 MP
Mechanical Shutter: 8-1/2000 s, supports rapid 0.7-second interval shooting
Compatible with RTK module and DJI Cellular module

Portable Multispectral Data Collection Solution

The Mavic 3M offers effortless portability and swift deployments capable of collecting visual and multispectral data in a single flight. Paired with DJI Terra, process the vegetation indexes to gain insights into vegetation health and prescription maps for precise vegetation spraying.

  • Portable solution, easy to operate and to carry across multiple farms and fields
  • Centimeter level data thanks to its mechanical shutter and RTK capability
  • Vegetation health assessment with multispectral sensors
  • Prescription map generation with DJI Terra for precision agriculture
  • Visual and multispectral data collection in a single flight
  • Swift deployment for rapid field analysis and monitoring

Workflow

1
Data Collection

Plan a 2D mission and activate the multispectral sensor to acquire an aerial map enriched with multispectral bands data, providing a comprehensive view for precise analysis.

2
Data Processing

Import to DJI Terra to process the captured images, and generate 2D models if needed with multispectral data integration for vegetation analysis.

3
Data Analysis

Analyze the collected vegetation indexes for in-depth analysis of crop health. Generate prescription maps for accurate crop spraying and precision agriculture applications.

4
Precision Agriculture Implementation

Apply prescription maps for targeted fertilizer and pesticide application, optimizing crop health and yield while reducing environmental impact.

Platform Specifications

DJI Mavic 3M
Net Weight (with propellers and RTK module): 951g
Max Flight Time (without wind): 43 minutes
RGB Camera: 4/3 CMOS, effective pixels 20 MP
Multispectral Camera: 1/2.8-inch CMOS, effective pixels: 5 MP
Multispectral Camera Bands: Green (G): 560 ± 16 nm, Red (R): 650 ± 16 nm, Red Edge (RE): 730 ± 16 nm, Near infrared (NIR): 860 ± 26 nm
Environment Adaptability: Max Take-off Altitude Above Sea Level 6000 m, Max Wind Speed Resistance 12 m/s

Precise Visual Vegetation Analysis Solution

Our drone solution excels in agricultural monitoring by capturing high-resolution images for Intelligent Model-Driven disease detection, efficiently covering large farmlands. The Matrice 350 RTK versatility extends to working with third-party payloads, facilitating the collection of multispectral and hyperspectral data for precise analysis.

  • Field-work efficiency, covers 3 km² per flight delivering a 5cm GSD
  • Reliable multi-purposed drone platform designed to endure harsh environments and conditions
  • Zenmuse P1 has a 45MP, full-frame sensor to ensure high quality data collection
  • Suitable for Intelligent Model-Driven disease detection through high resolution imagery
  • Versatility for working with third-party payloads for multispectral and hyperspectral data
  • Professional-grade agricultural monitoring capabilities

Workflow

1
Data Collection

Plan a 2D mission with precise Ground Sample Distance (GSD) for capturing detailed images of leaf area and crop structures for comprehensive agricultural analysis.

2
Data Processing

Import to DJI Terra to process the captured images, and generate 2D models if needed with high-resolution data optimized for disease detection analysis.

3
Data Analysis

Utilize the captured high-resolution images to train specialized models for efficient disease detection, enhancing precision in agricultural monitoring.

4
Disease Management

Implement targeted disease management strategies based on AI-powered analysis results and high-resolution crop monitoring data.

Platform Specifications

Matrice 350 RTK
Weight: Approx. 6.47 kg (with single downward gimbal and two TB65 batteries)
Max Flight Time: 55 minutes
Sensing system: Six-directional sensing and positioning
Environment Adaptability: IP55, Max Service Ceiling Above Sea Level 7,000 m
Max Wind Resistance: 12 m/s
Professional agricultural monitoring platform
Zenmuse P1
45 MP Full-frame camera
Global Mechanical Shutter Speed: 1/2000 Seconds
3-axis Stabilized Gimbal
Smart Oblique Capture capability
Professional-grade imaging for agricultural applications

Crop Biomass and Landscape Analysis Solution

The Matrice 350 RTK equipped with the Zenmuse L2 LiDAR sensor is an ideal solution for precise volume and land structure estimation, offering insights into crop biomass and business potential. Additionally, it seamlessly combines with an RGB sensor for efficient stand count information. The Matrice 350 RTK versatility extends to working with third-party payloads, facilitating the collection of multispectral and hyperspectral data for precise analysis.

  • Field-work efficiency—covers 3 km² per flight, collecting both LiDAR and RGB data
  • Highly integrated solution, reducing on-site time and ensuring data capture quality
  • Reliable multi-purposed drone platform designed to endure harsh environments and conditions
  • Precise volume and land structure estimation for crop biomass analysis
  • RGB sensor integration for efficient stand count information
  • Third-party payload compatibility for multispectral and hyperspectral data collection

Workflow

1
Data Collection

Plan a 2D mission to collect both Point Cloud and true color images, providing comprehensive data for accurate analysis of crop characteristics and biomass estimation.

2
Data Processing

Import to DJI Terra to process for DOM, DSM, Point Cloud, orthomosaic images and 3D models optimized for agricultural biomass and landscape analysis.

3
Data Analysis

Import the acquired models into your preferred 3rd party software for further crop classification, volume estimation, and biomass classification.

4
Business Intelligence

Generate comprehensive biomass reports and business potential analysis for informed agricultural investment and crop management decisions.

Platform Specifications

Matrice 350 RTK
Weight: Approx. 6.47 kg (with single downward gimbal and two TB65 batteries)
Max Flight Time: 55 minutes
Sensing system: Six-directional sensing and positioning
Environment Adaptability: IP55, Max Service Ceiling Above Sea Level 7,000 m
Max Wind Resistance: 12 m/s
Professional agricultural LiDAR platform
Zenmuse L2
Integrates frame LiDAR, high-accuracy IMU system, and 4/3 CMOS RGB mapping camera
2.5 km² covered in a single flight
Detection Range: 250m @10% reflectivity, 100klx
Effective Point Cloud Rate: 240,000 pts/s
Supports 5 Returns
Turnkey Solution for agricultural applications

Large Farm Coverage & Routine Sampling Solution

Our solution, powered by the DJI Dock 2, enables high-frequency crop data collection for comprehensive insights into seasonal growth trends and health management. By eliminating the need for manual visits, it significantly saves manpower and minimizes costs, optimizing resource allocation for enhanced operational efficiency in agriculture.

  • Schedule routine data collection flights over farms to efficiently track crop progress and health
  • Upload the collected data into DJI FlightHub 2 or preferred 3rd party software for in-depth crop analysis
  • High-frequency crop data collection for comprehensive seasonal growth insights
  • Eliminates the need for manual visits, significantly saving manpower and minimizing costs
  • Automated resource allocation for enhanced operational efficiency in agriculture
  • Comprehensive health management through continuous monitoring

Workflow

1
Data Collection

Plan a routine 2D map mission for regular orthomosaic data acquisition with automated scheduling for consistent crop monitoring throughout growing seasons.

2
Data Processing

Import collected data into your preferred 3rd Party Software for in-depth crop analysis with automated processing and cloud-based data management.

3
Data Analysis

Use the captured images to train specialized models for efficient disease detection and crop health assessment with AI-powered analytics.

4
Seasonal Management

Implement comprehensive seasonal crop management strategies based on continuous monitoring data and growth trend analysis for optimized agricultural operations.

Platform Specifications

DJI Dock 2
Weight: 34 kg (without the drone)
Size: length 570 mm, width 583 mm, height 465 mm
Environment adaptability: -25℃-45℃ working temperature, IP55 Rate
Max operation height: 4,000 m
Max Operating Radius: 10 km
Automated agricultural monitoring capabilities

Ready to Transform Your Agriculture Operations?

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