GMU:Tutorials/Performance Platform/Custom People Tracking: Difference between revisions

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'''Capture: jit.rgb2luma'''
'''Capture: jit.rgb2luma'''
In the capture part, "jit.rgb2luma" is responsible for the pixel capture to read the pixel input. And this object is transforming the detected colorful image into rgb value in alpha mode which changes from 0 to 255.
In the capture part, "jit.rgb2luma" is responsible for the pixel capture to read the pixel input. And this object is transforming the detected colorful image into rgb value in alpha mode which changes from 0 to 255.



Revision as of 18:24, 31 July 2016

Introduction

It’s a tutorial about using external webcam to get the data of people’s x and y position in DBL platform. I am using MaxMsp and external library cv.jit to grab the blobs due to the pixel differences captured by webcam, and to get the x, y value of the blobs which is considered to be the position data of people.

Part 1 Install cv.jit library

cv.jit is a collection of max/msp/jitter tools for computer vision applications. The goals of this project are to provide externals and abstractions to assist users in tasks such as image segmentation, shape and gesture recognition, motion tracking, etc. as well as to provide educational tools that outline the basics of computer vision techniques.

Firstly, you need to download the cv.jit. The latest version of cv.jit is 1.8 and can be used with 64-bit versions of Max.

Here is the link: http://jmpelletier.com/cv-jit-is-now-compatible-with-64-bit-max/

Find instructions to check it here: http://jmpelletier.com/cvjit/

After you downloading and unpacking the zip file, you should copy all the files in extras folder and help folder to the corresponding files in C74 folder. Tips: How to find C74 folder For example, in Mac, you go to Applications-Max, right click it and click Show Package Contents, and then open Resources folder, you will find C74 folder. Finally, restart your Max.

Part 2 Set up

Notice: If you use the ladder, please make sure to put several layers of cardboard below it, to prevent damage to the dance carpet. Please make sure that everything is securely fixed.

Shuyan setting-1.jpg

1.Set up the camera on the ceiling. You probably need an extension cable to connect the camera with you laptop. In this tutorial, the camera is not a full view camera and the height of space is limited, so the view seems too narrow. This tutorial shows how to get the x, y coordinates of one person on the stage as an example.

2. The reason why the camera is installed on the top is that the color of platform is white and pure, which can be a perfect background serve for the pixel difference capture. Therefore, any different pixels entering in the background consider to be detected. And more importantly, comparing to get the view from front or back side, get the view from top will make sure the visitors in the platform will have least interference between each other.

Shuyan setting-2.jpg

3. Make sure to close the curtains (and windows) in the DBL because the stable light environment is important for tracking.

Part 3 Code testing

Use the jit.grab object to digitize video from any video digitizer and decompress the signal into a Jitter matrix. On OSX, QuickTime is used; on Windows, DirectX is used.

Grablibrary1.png


Step 1

Double click the "p vdev/input" to make a selection of webcam list, and get the external webcam in " USB2.0 PC CAMERA"as the webcam input. The number after "input" in the right side represents which webcam you are choosing. 0 means the default webcam in your laptop, 1, 2, 3...or n means which external webcam you are going to use.

Step 2

Then click the "open" button to open the red trigger button, which starts to activate the webcam you are using.

Grablibrary2.png
Grablibrary03.png


Shuyan testing1.png


Detection

Capture: jit.rgb2luma

In the capture part, "jit.rgb2luma" is responsible for the pixel capture to read the pixel input. And this object is transforming the detected colorful image into rgb value in alpha mode which changes from 0 to 255.

Stesting process.jpg

Testing result position result.png