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- First of all we start with the generation of a very simple communication signal which is usually known as “Sinusoidal” or an “Analog” signal.
- Open your LabVIEW software.
- Go to the “Block Diagram” window and press “Right Click” on it
- Go to the Functions-> Programming-> Waveform-> Analog Waveform-> Generation-> Simulate signal.
- The figures below illustrate all of the above steps
- Put you cursor on “Waveform”.
- You can see the following window on your screen.
Apr 02, 2017 Communication Signals Generation in NI LabVIEW 2015 Here, I am going to start and elaborate you that how to generate simple Communication Signals in LabVIEW and how to play with them in this software. First of all we start with the generation of a very simple communication signal which is usually known as “Sinusoidal” or an “Analog” signal. CalcExpress is a toolkit that brings scripting capability to LabVIEW. CalcExpress can be embedded into a LabVIEW application to provide its flexible behavior as well as it can be interactively used. Thanks to CalcExpress features, it can be used for computations, signal processing, prototyping, control of applications, and lots other purposes.
- Now put your cursor on the encircled block.
- You can see the window below on your screen.
- Now, select this “Simulate signal” and place it on the “Block Diagram” window.
- You can see this in a figure below.
- As you place this block on the “Block Diagram” window, you can see a new window on your screen
- Here is the screen shot of that window.
- From this window we can set the properties of this window e.g. signal type, frequency, amplitude, duty cycle, offset etc.
- Now, you do not need to change any of its properties.
- Just press “OK” button.
- Now, the signal is generated.
Step 2
- We have now generated an analog signal by using 'Simulate' signal block and by setting the signal type to 'Sine'.
- The above figure shows this step.
- Now, we need to visualize the generated analog signal.
- We can visualize the generated signal with the help of the 'Graph'.
- Go to the 'Front Panel' and press 'Right Click'.
- Go to Controls-> Modern-> Graph-> Waveform Graph.
- The figure below shows the illustration of all of the above steps.
- Select this block and place it on the 'Front Panel'.
- You can see this figure on your window after selecting this block.
Step 3
- Now go to the 'Block Diagram' window.
- You can see it is looking like the window below.
- Now put your cursor on the bottom edge of the 'Simulate Signal' block.
- Press and stretch it towards downward the direction.
- You can see that the block becomes like the figure below.
- You can see, 'Signal' is also appeared at the bottom of the 'Simulate Signal' block.
- Now, connect the output terminal (Signal) of the 'Simulate Signal' block with the input terminal of the 'Waveform Graph'.
- The figure below displays the above steps.
Step 4
- Now, go to the 'Front Panel' window.
- Press the run button as the the figure below displays it .
- After running the program you can see the generated signal on the 'Graph' placed on the 'Front Panel'.
- Here is the screenshot of the figure showing the generated analog signal.
Step 5
- You can also change properties of the 'Graph' to make its look better.
- Press 'Right Click' on the graph and go to the 'Properties'.
- The figure below illustrates the above steps.
- You can see the following window on you screen.
- The different properties of the 'Graph' e.g. length, width etc. are also changeable via this window.
- You can also the color of the plotted graph.
- Go to the 'Plots' option of the above figure.
- The figure below shows some steps.
- You can change the color of the 'Graph' by following these steps.
- After performing these steps 'Run' the program.
- You can see the color of the graph is now changed.
- You can also change the label of 'x' and 'y' axis.
- Go to the properties of the 'Graph' and then go to 'Scale'.
- Set the properties according to the figure below.
- The figure below shows different label of 'y' axis.
- Now, go again to the properties and go to the 'Appearance'.
- The figure below shows some encircled options.
Signal Express Labview 2018
- Now, go to the 'Front Panel'.
- You can see the 'Graph' is looking exactly like the figure below.
Step 6
- You can also plot two different signals on the same 'Graph'.
- Go to the 'Block Diagram' window and select another 'Simulate Signal' block and place it on the window.
- Change the signal type to 'Triangle'
- The figure below explains the above all steps.
- Now, go to Functions-> Express-> Signal Manipulation-> Merge Signals.
- Select and place this block on the 'Block Diagram' window.
- Select and place this block on the 'Block Diagram' window.
- Make a connection between 'Merge Signals' and 'Simulate Signals'.
- The figure below shows the above steps.
Step 7
- Now, go to the 'Front Panel' and run the program.
- You can see both of the signals are generated on the same 'Graph'.
- The figure below shows the illustration of above steps.
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-Website AuthorSyed Zain Nasir
@syedzainnasirI am Syed Zain Nasir, the founder of The Engineering Projects (TEP).I am a programmer since 2009 before that I just search things, make small projects and now I am sharing my knowledge through this platform.I also work as a freelancer and did many projects related to programming and electrical circuitry. My Google Profile+
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Dialog Box Options
Parameter | Description |
---|---|
Scaling or Mapping Type | Contains the following options:
|
Block Diagram Inputs
Parameter | Description |
---|---|
Signals | Contains the input signal or signals. |
error in | Describes error conditions that occur before this node runs. |
Block Diagram Outputs
Parameter | Description |
---|---|
Scaled Signals | Returns the scaled signals. |
error out | Contains error information. This output provides standard error out functionality. |
This Express VI operates similarly to the following VIs and functions:
Waveform Scale and Offset
Example
Remarkable Labview Signal Express For Mac Os
Refer to the Express VI - Scaling and Mapping VI in the labviewexamplesExpress VIs directory for an example of using the Scaling and Mapping Express VI.