Single-Board-Heater-System/C2/Using-SBHS-Virtual-Labs-on-Windows/English
Title of script: Using SBHS virtual laboratory
Author: Rupak Rokade
Keywords: SBHS, Virtual labs, tutorial
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Show Slide | Welcome to the spoken tutorial on Using Single Board heater System Virtual labs on Windows OS |
Show Slide | In this spoken tutorial we will learn about:
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Show Slide
Pre-requisite |
As a pre-requisite, watch the following tutorials
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Show Slide
Pre-requisite |
Ensure that Scilab is installed on your computer.
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Show slide | All SBHS experiment Scilab codes are written using Scilab 5.3.3 and is the recommended version.
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Show slide |
I have already installed Scilab 5.3.3.
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Demo as per narration | Open a web browser.
In the address bar, type os-hardware.in This is the website for opensource hardware. |
click on SBHS image | Click on the project SBHS. |
Click on Downloads | On the left hand side, click on Downloads |
Demo as per narration | Click on the download link for SBHS Scilab codes for windows
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Go to the Desktop and point to the file. | Save it on the Desktop.
Here it is. |
Right-click on it >> show Extract here. | The file downloaded will be in zip format.
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<<PAUSE>> | |
Now let us see the SBHS Virtual labs website. | |
Switch to browser | Switch to the web browser again. |
Click on Virtual Labs | On the left hand side, click on the link Virtual Labs. |
This is the interface from where one can gain access, to do remote experiments on SBHS. | |
Point to Login/Register | A first time user needs to register once, by clicking on Login/Register option. |
Show the registration form | After this, a form has to be filled and submitted.
It may take a few minutes. |
Enter username
Enter Password |
I will now login with an already registered account.
I will enter my username and password. |
Point to “Book Slot”, “View/Delete Slot” | After a successful login, a user has access to Book Slot, View/Delete Slot etc.
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Click on Book Slot option | After clicking on the Book Slot option, the client will have two choices. |
Point to Current Slot and Future Slot | One can either book Current Slot or a Future Slot |
Point to Book Now and then to Book future slot | Book Now option will appear only if the Current Slot is vacant.
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Click on Book Current Slot | I will click on Book Now option. |
You will receive an acknowledgement, with your booking details appearing on the top side.
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Switch to the Desktop >> open the downloaded folder | Open the folder you downloaded and saved on the Desktop. |
Point to the folders: StepTest and common_files | You can see that there is a StepTest folder and common_files folder.
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Switch to Slides | Do not change the contents of config file if
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Switch to Slides | Change the contents of config file if
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Switch to config file | Put the value of use proxy as Yes with capital Y.
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Open StepTest folder | Open the StepTest folder. |
Open run.vbs | Locate and double click on the file run |
Point to the various parameters | It will open the python based SBHS client application.
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It will show various parameters of the experiment like
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It also shows that the client version I am using is the latest.
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Point to Login >>
type username type password click on login |
It will also give you an option to login.
This username and password is the same you used to book a slot. Click on login. |
Ensure that you login on the booked date and time, with correct login details.
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Switch to StepTest folder | Switch to the StepTest folder which has the experiment files. |
Double-click on “stepc.sce” | Double-click on the stepc file.
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It should also open the file in Scilab editor. | |
Switch to Scilab console >> Type getd ../common_files | Switch to the Scilab console.
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Switch to Scilab editor >> Click on Execute >> click on File with echo | Switch to the scilab editor.
On the Menu bar, click on Execute option and then click on File with echo. |
If the network is working properly, it will open an Xcos diagram. | |
If it doesn't, it will show error on the Scilab console. | |
step test Xocs diagram opens up >> Point to Heat and Fan | Using the step test Xocs diagram, we can set the experiment parameters such as Heat and Fan. |
Demo | I will set the heat to vary from 30% to 45% after 300 seconds.
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Save and execute | Now let us save and execute the xcos diagram.
To execute, click on the start button on the menu bar. |
If there is no error, it will open a plot window. | |
Point to the 3 graphs | It will consist of three graphs, Heat, Fan and Temperature from top to bottom. |
Switch to SBHS client | Switch to the SBHS client. |
Point as per narration | It shows the values of current iteration, heat, fan, temperature and time left for experimentation. |
Point to the log file name | It shows the log filename it has created for this experiment. |
Switch to the web browser
click on show video |
Switch to the browser. |
Click on show video option.
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Pause the recording | This is a real experiment and will take some time to complete.
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Resume the recording >> Point to the graph shown | After sufficient time of experiment, the graph obtained is as shown. |
Click on Stop button on xcos window | I will stop the simulation by clicking on the stop button on Xcos window. |
Close SBHS client | Close the SBHS client window after the experiment is over. |
switch to the experiment folder >> open logs folder >> point to your username folder | Now, switch to the experiment folder and open the logs folder.
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Open username folder >> locate log file
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Open this folder and locate your log file.
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Show slide | Let us summarise.
In this tutorial we learnt
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Show slide | The video at the following link summarises the Spoken Tutorial project.
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Show slide | The Spoken Tutorial Project Team
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Show slide | Spoken Tutorial Project is NMEICT, MHRD, Government of India.
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