element14 Community
element14 Community
    Register Log In
  • Site
  • Search
  • Log In Register
  • Community Hub
    Community Hub
    • What's New on element14
    • Feedback and Support
    • Benefits of Membership
    • Personal Blogs
    • Members Area
    • Achievement Levels
  • Learn
    Learn
    • Ask an Expert
    • eBooks
    • element14 presents
    • Learning Center
    • Tech Spotlight
    • STEM Academy
    • Webinars, Training and Events
    • Learning Groups
  • Technologies
    Technologies
    • 3D Printing
    • FPGA
    • Industrial Automation
    • Internet of Things
    • Power & Energy
    • Sensors
    • Technology Groups
  • Challenges & Projects
    Challenges & Projects
    • Design Challenges
    • element14 presents Projects
    • Project14
    • Arduino Projects
    • Raspberry Pi Projects
    • Project Groups
  • Products
    Products
    • Arduino
    • Avnet & Tria Boards Community
    • Dev Tools
    • Manufacturers
    • Multicomp Pro
    • Product Groups
    • Raspberry Pi
    • RoadTests & Reviews
  • About Us
    About the element14 Community
  • Store
    Store
    • Visit Your Store
    • Choose another store...
      • Europe
      •  Austria (German)
      •  Belgium (Dutch, French)
      •  Bulgaria (Bulgarian)
      •  Czech Republic (Czech)
      •  Denmark (Danish)
      •  Estonia (Estonian)
      •  Finland (Finnish)
      •  France (French)
      •  Germany (German)
      •  Hungary (Hungarian)
      •  Ireland
      •  Israel
      •  Italy (Italian)
      •  Latvia (Latvian)
      •  
      •  Lithuania (Lithuanian)
      •  Netherlands (Dutch)
      •  Norway (Norwegian)
      •  Poland (Polish)
      •  Portugal (Portuguese)
      •  Romania (Romanian)
      •  Russia (Russian)
      •  Slovakia (Slovak)
      •  Slovenia (Slovenian)
      •  Spain (Spanish)
      •  Sweden (Swedish)
      •  Switzerland(German, French)
      •  Turkey (Turkish)
      •  United Kingdom
      • Asia Pacific
      •  Australia
      •  China
      •  Hong Kong
      •  India
      •  Japan
      •  Korea (Korean)
      •  Malaysia
      •  New Zealand
      •  Philippines
      •  Singapore
      •  Taiwan
      •  Thailand (Thai)
      •  Vietnam
      • Americas
      •  Brazil (Portuguese)
      •  Canada
      •  Mexico (Spanish)
      •  United States
      Can't find the country/region you're looking for? Visit our export site or find a local distributor.
  • Translate
  • Profile
  • Settings
Raspberry Pi
  • Products
  • More
Raspberry Pi
Blog Building a Thermal Imaging System with the Raspberry Pi 3, Sense HAT and Panasonic Grid-EYE
  • Blog
  • Forum
  • Documents
  • Quiz
  • Events
  • Polls
  • Files
  • Members
  • Mentions
  • Sub-Groups
  • Tags
  • More
  • Cancel
  • New
Join Raspberry Pi to participate - click to join for free!
Featured Articles
Announcing Pi
Technical Specifications
Raspberry Pi FAQs
Win a Pi
GPIO Pinout
Raspberry Pi Wishlist
Comparison Chart
Quiz
  • Share
  • More
  • Cancel
Group Actions
  • Group RSS
  • More
  • Cancel
Engagement
  • Author Author: shabaz
  • Date Created: 9 Nov 2016 12:09 PM Date Created
  • Views 12808 views
  • Likes 19 likes
  • Comments 63 comments
Related
Recommended
  • thermopile sensor
  • pi 3
  • rpiintermediate
  • panasonic grid eye
  • amg8832ek
  • amg8834ek
  • rpibeginner
  • amg8834
  • thermopile
  • amg8832
  • infrared_sensor
  • panasonic grid-eye
  • grid eye
  • thermopile array
  • grid-eye sensor
  • rasberry pi 3
  • javascript
  • panasonic_industrial_europe
  • infrared array
  • node.js
  • pi3-ibm-iot-learnkit
  • grid-eye

Building a Thermal Imaging System with the Raspberry Pi 3, Sense HAT and Panasonic Grid-EYE

shabaz
shabaz
9 Nov 2016

Introduction

Sometimes it is great to be able to see if things are hot or cold with a thermometer or other device. Multiply it by 64 and it is possible to get a graphical image of hot spots or detect humans for instance.

A thermopile array can be used to measure temperature from a distance and a special part from Panasonic called Grid-EYE happens to have 64 of them : )

Since the Sense HAT has 64 LEDs, I wanted to try them together : )

image

 

This is what is implemented:

image

 

For more experiments with the Grid-EYE and a review, see here: Panasonic Grid-EYE RoadTest - Review

 

What can you do with it?

The Grid-EYE is designed for detecting humans or objects that come into its field of view. It could be used for automatically turning on the heating when a human is detected, or automatically opening doors for instance. It differs greatly from the usual passive infrared (PIR) sensors used in alarm systems; they require movement whereas thermopile sensors will continuously detect objects while they remain in the field of view. By processing the images over time it is possible to see which direction humans or objects are moving. This could be useful for more intelligent automated doors or barriers, or for innovative electronic advertising that is triggered by human presence and actions.

 

In the brief time that I explored, it was possible to see people from a distance of five metres, and a 10 ohm resistor connected to an AA battery from about an inch away. By experimenting with the software it is possible to choose the spectrum of color that is desired for the particular temperature range of interest.

image

 

Grid-EYE usefulness for people detection (occupancy sensor) was explored in the Grid-EYE Review blog post.

 

Build Steps

The project is straightforward and simple, so in the interests of efficiency this report won’t have a lot of text!

To build this project, a Pi 3 and a Sense HAT is needed, and the Grid-Eye evaluation kit. I already had the Pi 3 and Sense HAT (and the associated memory card and power supply) as part of the Pi 3 IBM IoT Learner KitPi 3 IBM IoT Learner Kit reviewed here. The Grid-EYE evaluation board is available separately. The one I had (model AMG8832) is not available any more but there is a better performance AMG8834 Grid-EYE Evaluation ModuleAMG8834 Grid-EYE Evaluation Module that can detect humans up to 7 metres away.

 

The evaluation board contains the Grid-EYE, a pre-programmed microcontroller and Bluetooth Smart capability. Basically nothing needs to be done with the eval board except plug it into a power supply! The supply can be a 5V mobile phone charger or a PC USB port. The photo here shows the Grid-EYE evaluation board. It is about the footprint of a playing card. The Grid-EYE module itself is very small, about 12mm on its longest dimension.

image

 

Since the Pi 3 also has Bluetooth Smart capability, the Grid-EYE board connects to the Pi using this. This is great because it means that the imaging can be performed remotely.

The Pi 3 is responsible for translating the 8x8 array of values into colours and sending them to the Sense HAT’s display. The Pi 3 also runs a little web server so any web browser (e.g. PC or mobile phone) can be used to connect to the Pi and view the images live.

Check out the short video (1.5 mins) for some example capture.

You don't have permission to edit metadata of this video.
Edit media
x
image
Upload Preview
image

 

 

Here are the instructions to build it. First, as root user (or prepend sudo to these commands):

 

apt-get install libbluetooth-dev
update-nodejs-and-nodered

 

Then, as normal user (e.g. pi or your username):

 

git clone https://github.com/shabaz123/grid-eye
cd grid-eye
npm install noble
npm install sense-hat-led
npm install rotate-matrix
npm install ioctl
npm install socket.io
npm install imagejs

 

Change the index.js file at grid-eye/node_modules/sense-hat-led using the index.js_mine file (which has been through the babel transpiler) using this command:

 

 

cp index.js_mine node_modules/sense-hat-led/index.js

 

 

The grid-eye/index.js file will need a modification, search for the line with the text progpath and set it to point to the grid-eye folder. The slash at the end is important. For example for me it says:

 

var progpath='/home/shabaz/grid-eye/';

 

That’s it! To run it, as root user (or prepend with sudo) type:

 

node index.js

 

Use a browser to navigate to http://xx.xx.xx.xx:8081/index.html

The code works but is just prototype quality and there is lots of room for improvement. It seems to work reasonably well but would benefit from some configuration options (things like temperature range are hard-coded).

Attachments:
index_pc.zip
  • Sign in to reply

Top Comments

  • ajens23
    ajens23 over 9 years ago +5
    Now that is pretty cool! (errr....hot,,,, or something like that) I'm going to have to try that.
  • DAB
    DAB over 9 years ago +5
    Excellent post. I knew that the Grideye sensor had great capability, so it was great to see that it could be as useful as I thought. Now all I need to do is find some time to play with one. DAB
  • beacon_dave
    beacon_dave over 9 years ago +5
    I have been pondering over how well these Grid-EYE sensors might work for room occupancy monitoring purposes. For example if they were mounted on a ceiling over a seating bank, then could they identify…
  • jlucas
    jlucas over 9 years ago

    FYI: The first blog of the Panasonic Grid-EYE Lab Test has been posted by jm.andrade of the University of Derby. Interesting stuff and well worth a read...

     

    Thermal Infrared Monitoring for Smart Farming: Agriculture Embracing the IoT

    • Cancel
    • Vote Up +3 Vote Down
    • Sign in to reply
    • More
    • Cancel
  • shabaz
    shabaz over 9 years ago in reply to aidualc

    Hi Claudia,

     

    It isn't possible to just convert to hours/minutes/seconds like this. I don't want to write the code since I too am not an expert in this language, but I think the information is not related to Grid-EYE but can be found on Node.js websites or google.

    For a raw counter value I think it should be something like:

    var unixtime;
    unixtime=Date.now()/1000;
    datafile.write(unixtime+","+dataline+"\n");

     

    This will print the unix timestamp counter value in the log file but it will be up to you to find a way to convert this to a real timestamp.

    Or, you could directly convert to a real timestamp by using a function like the getDateTime() function someone created here: http://stackoverflow.com/questions/7357734/how-do-i-get-the-time-of-day-in-javascript-node-js

    datetime - How do I get the time of day in javascript/Node.js? - Stack Overflow

    I have not tried this, but in theory should work fine.

    • Cancel
    • Vote Up +3 Vote Down
    • Sign in to reply
    • More
    • Cancel
  • aidualc
    aidualc over 9 years ago in reply to shabaz

    Hi Shabaz,

     

    Thanks a lot for helping! image

    Is better that you attached to the post, and not to comment.

     

    I was thinking to add timestamp after each frame, but either I get an error if I do not use the "$" for calling the variable that holds the value of date command,

    ReferenceError: $now is not defined
        at Characteristic.<anonymous> (/home/pi/grid-eye/index_pc.js:214:31)

     

    either it writes in datafile.txt, the name of the command, without interpreting it image

    27.75,27.5,27,27.5,30.5,28.25,27.5,26.75,27.5,27,27,28,29.5,27,27.5,26,27,27,27,28.5,28,27.25,26.75,26.5,26.5,26.75,26.75,27.25,27.75,27,26.75,27.75,26.25,27,27.25,27.5,26.75,26.75,26.75,25.5,27.5,27.5,27.25,27,27.75,28,27,26.75,28.25,27.75,26.75,27.25,27.5,28.5,26.75,27,28.75,28.75,27.25,27.5,27,28.25,28.5,26.75
    date +%y%m%d%H%M%S
    27.75,27.25,27,28,30.75,28.25,27,26.5,27,27,27.25,28.25,29.75,27.5,26.75,25.75,27.25,26.75,27.5,28.25,28.25,27.25,26.5,25.75,26.25,27,26.5,27.25,27.25,27.25,26.75,27.5,25.75,26.25,26.75,27.75,27,27.5,27.25,26.25,27.75,26.75,27,27,27,28,27.25,26.75,29.25,27.5,27.5,27.5,27.75,29,27.25,26,28.75,28,27.25,27.5,28,28.5,29.25,27.5
    date +%y%m%d%H%M%S

     

     

    For this I wrote the following (the "if" starts on line no. 202 in the index_pc.js):

    image

    • Cancel
    • Vote Up +2 Vote Down
    • Sign in to reply
    • More
    • Cancel
  • shabaz
    shabaz over 9 years ago in reply to aidualc

    Hi Claudia,

     

    The program doesn't log to disk, but this is not difficult to add. I've attached a file to the blog post (I cannot attach it to the comments section), called index_pc.zip. Inside there, is code called index_pc.js that is modified to log to the screen, and also to a file called 'datafile.txt'.

    It will log in CSV format, 64 entries per line, each entry is the temperature for a pixel.

     

    However, the file there index_pc.js is not the same code as on github, index_pc.js is intended for running on a PC (i.e. no Sense HAT). You could run it on the Raspberry Pi there is no issue, but the output will only be to the screen and web browser (and data file), not to the Sense HAT.

    It would be easy to do a 'diff' between the original index.js and the index_pc.js to merge in the code changes to the Sense HAT version.

     

    I would suggest to run index_pc.js (on either the Pi or a PC) to confirm the data file, and then if you feel like it, to merge in the code changes to index.js.

     

    When you have some interesting data files. do please share them because they could be interesting for those who want to write some processing algorithms and need some datasets.

    • Cancel
    • Vote Up +3 Vote Down
    • Sign in to reply
    • More
    • Cancel
  • aidualc
    aidualc over 9 years ago in reply to shabaz

    Hi Shabaz,

     

    Thanks for explanation; the web browser is cool - to see a graphical image, and

    the sense hat reponds very accurate to events, in real time; on top of this, I would like to

    process the image, or easier, to interpret the values received from the grid-eye, to value

    the input.

     

    Is there any log, or staging area for the stream data?

    • Cancel
    • Vote Up 0 Vote Down
    • Sign in to reply
    • More
    • Cancel
<>
element14 Community

element14 is the first online community specifically for engineers. Connect with your peers and get expert answers to your questions.

  • Members
  • Learn
  • Technologies
  • Challenges & Projects
  • Products
  • Store
  • About Us
  • Feedback & Support
  • FAQs
  • Terms of Use
  • Privacy Policy
  • Legal and Copyright Notices
  • Sitemap
  • Cookies

An Avnet Company © 2026 Premier Farnell Limited. All Rights Reserved.

Premier Farnell Ltd, registered in England and Wales (no 00876412), registered office: Farnell House, Forge Lane, Leeds LS12 2NE.

Follow element14

  • X
  • Facebook
  • linkedin
  • YouTube