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AeroMegh

PicStork automates aerial image analytics, allowing easy data upload, training, live tracking, and results sharing for drone users.
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AeroMegh

What is AeroMegh?

PicStork is a tool designed to automate the process of aerial image analytics for drone users. It simplifies the workflow from capturing images to processing the data, allowing users to bring their own data, train detectors, and analyze the data independently. The tool facilitates the preparation of image datasets from previous projects or local drives, enabling users to easily upload and annotate images in real-time. Additionally, PicStork offers the functionality to create flight plans using AeroGCS KEA and select analysis tasks to be performed on cloud-based images. Users can track the progress during flight and view images live on the cloud, with results conveniently displayed on the PicStork Dashboard for further interaction. The tool also provides the option to download and share results in various formats via email, making the process of aerial image analytics efficient and effective for drone users.

Who created AeroMegh?

PicStork, a tool that automates aerial image analytics for drone users, was created by a company named AeroMegh. The tool was launched to simplify the process of aerial image analytics, allowing drone users to achieve their aerial intelligence goals efficiently. PicStork handles the entire workflow from capturing images to processing the data and offers features like preparing image datasets for analysis and training machine learning models for object detection. The company's headquarters are located in Nashik, India.

What is AeroMegh used for?

  • Automated aerial image analytics for drone users
  • Handling the entire workflow from image capture to data processing
  • Training detectors and analyzing data independently
  • Preparing image datasets from previous projects or local drives for analysis
  • Uploading and annotating images in real-time
  • Training machine learning models for faster object detection
  • Creating flight plans using AeroGCS KEA
  • Performing analysis tasks on cloud-based images
  • Viewing results on the PicStork Dashboard
  • Downloading and sharing results in various formats via email
  • Automating aerial image analytics for drone users
  • Handling the entire workflow from capturing images to processing the data
  • Allowing users to bring their own data, train detectors, and analyze the data independently
  • Creating customized workflows
  • Creating flight plans using AeroGCS KEA and selecting analysis tasks for cloud-based images
  • Tracking progress and viewing live images during flight
  • Displaying analysis results on the PicStork Dashboard for user interaction and sharing via email
  • Automates the process of aerial image analytics for drone users
  • Handles the entire workflow from capturing images to processing the data
  • Enables users to bring their own data, train detectors, and analyze data independently
  • Prepares image datasets from previous projects or local drives for analysis
  • Allows users to upload and annotate images in real-time
  • Enables users to train their own machine learning models for object detection
  • Creates flight plans using AeroGCS KEA and selects analysis tasks to be done on cloud-based images
  • Tracks the progress during flight and views images live on the cloud
  • Displays analysis results on the user's PicStork Dashboard for viewing and interaction
  • Provides the option to download and share results in various formats via email
  • Preparing image datasets for analysis from previous projects or local drives
  • Creating customized workflows for analysis tasks
  • Creating flight plans and selecting analysis tasks for cloud-based images
  • Viewing and interacting with analysis results on the PicStork Dashboard
  • Simplifying the process of aerial image analytics for efficient achievement of aerial intelligence goals
  • Prepare image datasets for analysis
  • Upload and annotate images in real-time
  • Train machine learning models for object detection
  • Create flight plans using AeroGCS KEA
  • Analyze images and view results on the PicStork Dashboard
  • Download and share analysis results
  • Simplify aerial image analytics process for drone users
  • Achieve aerial intelligence goals efficiently
  • Handling the workflow from image capture to data processing
  • Preparation of image datasets for analysis
  • Training machine learning models for object detection
  • Creating customized workflows for object detection
  • Analyzing images on the cloud
  • Viewing and interacting with analysis results on PicStork Dashboard

Who is AeroMegh for?

  • Drone users

How to use AeroMegh?

To use PicStork for aerial image analytics with drones, follow these steps:

  1. Fly and Capture Data: Utilize AeroGCS KEA to fly drones and capture data efficiently.
  2. Process Data: Upload and process the drone data using DroneNaksha, generating 2D/3D photogrammetry outputs like orthomosaic and elevation models.
  3. Analyze Images: Analyze the processed images with PicStork by creating analytics tasks and developing machine learning models for object detection.
  4. Prepare Datasets: Easily prepare image datasets from previous projects or local drives for analysis.
  5. Train and Analyze: Train detectors and analyze the data independently, with the option to create customized workflows.
  6. Create Flight Plans: Use AeroGCS KEA to design flight plans and select analysis tasks for cloud-based images.
  7. Track Progress: Monitor the flight progress, view live images on the cloud, and access results conveniently on the PicStork Dashboard.
  8. Download and Share Results: Download and share analysis results in various formats via email for further use or collaboration.

PicStork simplifies aerial image analytics by automating the workflow from data capture to analysis, providing a user-friendly interface and tools for creating custom machine learning models and analyzing drone-captured images effectively .

Pros
  • Option to train own machine learning models with optimized algorithms for faster object detection
  • Option to download and share results in various formats via email.
  • Simplifies the process of aerial image analytics for drone users.
  • Helps users achieve aerial intelligence goals efficiently.
  • PicStork simplifies the process of aerial image analytics for drone users
  • Users can bring their own data, train detectors, and analyze the data independently
  • Ability to prepare image datasets from previous projects or local drives for analysis
  • Easy upload and annotation of images in real-time
  • Capability to train machine learning models with optimized algorithms for fast object detection
  • Option to create flight plans using AeroGCS KEA and select analysis tasks for cloud-based images
  • Both trained and pre-trained models available for analysis on the dataset
  • Live tracking of progress and viewing images during flights on the cloud
  • Convenient display of analysis results on the user's PicStork Dashboard
  • Download and share results in various formats via email
  • Convenient display of analysis results on the PicStork Dashboard.
Cons
  • No specific cons or limitations of using PicStork were mentioned in the provided documents.
  • No specific cons or missing features mentioned in the documents provided.

AeroMegh FAQs

What is PicStork?
PicStork is a tool that automates the process of aerial image analytics for drone users, handling the entire workflow from capturing images to processing the data.
What are some key features of PicStork?
One key feature of PicStork is its ability to prepare image datasets from previous projects or local drives for analysis, allowing users to upload and annotate images in real-time and train their own machine learning models.
How does PicStork simplify aerial image analytics?
PicStork simplifies the process by allowing users to train their own machine learning models with optimized algorithms for faster object detection, create flight plans using AeroGCS KEA, select analysis tasks to be performed on cloud-based images, track progress during flight, and view live images on the cloud.

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