Difference between revisions of "Shared:2023W4G1CV"
From cs
Line 40: | Line 40: | ||
<div> | <div> | ||
<br> | <br> | ||
+ | [[File:CODE GIF compressed.gif]] | ||
<br> | <br> | ||
The Jupyter notebook below contains a Computer Vision script designed to assist a robotic hand in identifying components, locating the appropriate grabbing spots, and separating them from the background. This code uses a combination of Python libraries, including OpenCV and Shapely, to achieve its objectives. The code is designed to be versatile and can be used with any image, making it a valuable tool for anyone working with robotic components. | The Jupyter notebook below contains a Computer Vision script designed to assist a robotic hand in identifying components, locating the appropriate grabbing spots, and separating them from the background. This code uses a combination of Python libraries, including OpenCV and Shapely, to achieve its objectives. The code is designed to be versatile and can be used with any image, making it a valuable tool for anyone working with robotic components. |
Revision as of 10:21, 21 April 2023
_
MARS HABITAT
Prototype water research station for the human endeavour of discovering water on Mars.
Group 1 Arno Decorte - Tom Punte - Augusta Fiseryte
CV
[[File:CODE GIF compressed.gif]]
The Jupyter notebook below contains a Computer Vision script designed to assist a robotic hand in identifying components, locating the appropriate grabbing spots, and separating them from the background. This code uses a combination of Python libraries, including OpenCV and Shapely, to achieve its objectives. The code is designed to be versatile and can be used with any image, making it a valuable tool for anyone working with robotic components.
Whether you're a researcher or a hobbyist, this script is an excellent resource for automating the process of component identification and removal. Give it a try with your own fragments and see what you can accomplish!