ANSYS Maxwell Batch Tutorials
For running an ANSYS Maxwell Job, we need to create an .aedtz archive file from the ANSYS Electronics desktop. You can create this file on your local ANSYS Electronics desktop. Rescale also offers the Remote Desktop option, where you can launch an ANSYS Maxwell desktop to use the software, which is explained in the next section below.
If you have an archived simulation file in your local environment ready for batch submission, feel free to skip the next few sections. You can go ahead and begin the batch submission section. Or if you want to just create the packed from the ANSYS Maxwell GUI, you can skip to this section before going on to batch submission. Otherwise, please continue:
Launching a Remote Desktop on Rescale
Start by selecting the Desktops option in the Rescale platform Web UI.
Select New Custom Desktop button in the upper left hand corner. This should take you to the Desktop Configuration page. Give the Desktop a name. Here we've named this desktop "ANSYS Maxwell Desktop".
Under 1. Choose Configuration, select the basic Windows configuration.
Expand the drop-down menu for 2. Add Software .Search for or select from the menu: ANSYS Maxwell Desktop.
A Select License - ANSYS Maxwell Desktop pop-up menu should now appear. Enter your appropriate ANSYS license information and click ok to continue.
You can now also select which version of Maxwell you want to use. We will choose 19.0 for this tutorial.
Expand the drop-down menu for 3. Add Jobs. Again, you can search for or select from the menu the job you cloned: ANSYS Maxwell Tutorial. Click Add under actions.
After making the selections, your screen should look like the following:
You can then begin to launch the desktop by clicking on the Launch button in the lower right hand corner of the page. This should bring up a confirmation dialog.
If the settings appear to be correct, click Launch in this menu to start the desktop server. This process should take approximately 5-10 minutes to spin up a new Windows server instance. Please refresh the page every few minutes to update the status of the server. In the 4. Logs menu, the Desktop will be ready to launch once the "Server Started" message is displayed.
Click on the Connect button to bring up the connection options. You can choose to connect using your own Windows RDP client or the In-Browser Desktop that we will use in this tutorial. Please refer to our guide for more information about Windows RDP and/or configuring a Rescale Desktop.
Creating an input file from the ANSYS Electronics desktop
Please follow these steps if you want to open the tutorial files on a Rescale Desktop:
Once connected to the Windows desktop, launch ANSYS Electronics Desktop by double clicking the ANSYS Electronics Desktop 19.0 shortcut found on the desktop.
If you attached the cloned job, in the File selection menu, navigate to the Desktop and select the attached_jobs shortcut. This should bring you to the folder that the attached clone job files were extracted to. Select the "input" folder. Finally select the simulation file to open.
If you want to use you own ANSYS Maxwell file, you can upload the file to Rescale file storage and then download it on the Maxwell desktop you launched. Please refer to the File Transfer section for Uploading to Rescale Cloud Files and Downloading from Rescale Cloud Files.
After you have made the necessary changes to your Maxwell file, click on File > Archive to create an archived input file.
Uploading the Simulation File to the Rescale Cloud
- If you created the archived file from a Rescale Desktop, you can now upload the file to Rescale by clicking on the "Cloud Files" icon on the desktop. Select the option to "Upload from this computer". Navigate to the path of the file and select the newly archived .
- If you created the archived simulation file from your local desktop environment, you can upload the file similarly from the Web UI Files option.
Terminate the Desktop
Since we have prepared our simulation and uploaded the file back to the Rescale Cloud, we are done using our ANSYS Electronics GUI for the time being. We can now shutdown this Desktop instance. You can choose to keep the instance running to perform post-processing after the simulation is completed.
In the Rescale Web UI, select Desktops.
Check the Select box under your Desktop instance. This instance should be easily identified if you provided it a name earlier.
Click the red Terminate button near the top of the page to shutdown this instance.
For a guide on using the Rescale desktop please refer to our guide here
Ansys (Ansoft) Maxwell RMXPRT Motor Simulation Getting Started Tutorial - Programmer Sought
BLDC Motor Control Solutions
Ansys (Ansoft) Maxwell RMxprt Motor Simulation Getting Started Tutorial
tags: ANSYS Finite element simulation
Recent topics require ANSYS to perform some simulations on three-phase AC induction motors.
There are many online data on ANSYS analysis, but it feels the most troublesome and di cult for
beginners. I searched the Internet before and I didn't feel that I was a very foolish introductory tutorial.
Later I found a good tutorial on the Internet.Motor modeling，Motor analysis), here is a textual analysis
The version of ANSYS used in the tutorial is 18.2. Because of the need for electromagnetic
simulation, an additional version of Ansys Electronics Suite is required. In order to use the Maxwell and
RMxprt modules in the tutorial. Let's take a detailed explanation of the whole step. The whole analysis
process mainly includes two parts: (1) quickly establish a simulation model of three-phase AC motor in
RMxprt (2) analyze the model
(1) Establish a motor model
Step1: Open the ANSYS workbench and drag an RMxprt analysis module from the left side of the
software to the right active window, then double-click Setup to enter the ANSYS electrical analysis
Step2: In the project management pane on the left side of the software, right click on RMXprtDesign1
and select the induction motor in the pop-up dialog box.
Step3: Then add the solution step button on the stand-alone page, and set the relevant rated
parameters of the motor as shown below.
Step4: Double-click the Machine branch in the left item bar. For example, set back some basic
information about the motor.
Step5: Double-click the Stator branch in the left taskbar, and if you set the stator parameters as shown,
then double-click the Slot item in the Stator directory, uncheck Autodesign in the pop-up menu bar,
then double-click the SLot branch again, as shown Set the stator related parameters.
Step6: Double-click Winding under the Stator branch in the left item bar to set the parameters of the
motor stator winding as shown below.
Step7: Next, double-click Rotor to set the rotor parameters, double-click Rotor Slot to design the rotor
slot, double-click Winding to design the rotor winding.
Step8: Double-click Shaft in the left task bar to set the parameters of the motor shaft.
Step9: After completing the above motor parameter settings, you can select the Validate button on the
page to check the parameters. If there is no problem, you can save it. Then click Analyze All and
Solution Data in the options bar to view some basic parameters of the click constructed. After viewing,
you can close this page and return to the main ANSYS workbench page.
(2) Model nite element analysis
Step1: Double-click the Solution button in the RMxprt module in the workbench to enter the click
electromagnetic eld analysis interface.
Step2: Right-click the Setup1 option in the Analysis column on the left side of the project bar and select
“create Maxwell Design”. In the pop-up dialog box, select “Maxwell 2D Design” and click the OK button.
Step3: Select all parts of the mouse frame, select “Set Eddy E ect” in “Assign Excitation” in the menu bar,
and select the “Eddy E ect” option for all the bars.
Step4: Click on Solution Setup on the toolbar and then set up the simulation as shown below. And click
"Add to list", then click "validate" again.
Step5: As shown in the gure, in the “Field Overlay” column on the left taskbar, add the corresponding
analysis domain by the following operations.
Step6: Add the corresponding result analysis object in the left toolbar as shown in the gure.
Step7: After clicking “analyze All”, the system will start calculation. Colleagues can click the
corresponding analysis object in the task bar to view the results of real-time operation.
At this point, this simple example will stop here. Later, according to the progress of the study, the pits of
nite element analysis will be opened one after another. If you have any questions, please leave a
message to communicate.
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