Skip to main content

Power Electronics and Motor Drive Simulation

Project description

SIMBA Python API

The Simba Python Module (aesim.simba) is a Python package that contains hundreds of functions providing direct access to SIMBA such as creating a circuit, modifying parameters, running a simulation, and retrieving results. aesim.simba is independent and does not require to have SIMBA installed to be used.

Installation

The easiest way to install the Python API is using pip:

pip install aesim.simba

Requirements

The current version of aesim.simba is compatible with Windows, macOS and Linux (64-bit).

Activation

The deployment key available on your account profile page must be used to activate aesim.simba. Two methods are available:

Using Environment Variable

The easiest way to activate pysimba is to set the environment variable SIMBA_DEPLOYMENT_KEY value to your deployment key. To add a new environment variable in Windows:

  • Open the Start Search, type in “env”, and choose “Edit the system environment variables”:
  • Click the “Environment Variables…” button.
  • Set the environment variables as needed. The New button adds an additional variable.

Code-based Activation

The License API can be also used to activate aesim.simba.

from aesim.simba import License
License.Activate('*** YOUR DEPLOYMENT KEY ***')

API Documentation

The API documentation is available here.

Performance

Running a simulation using the Python API is significantly faster than using the SIMBA User Interface because there is no overhead.

Quick Example

The following example opens the Flyback Converter Example available in SIMBA, runs it, and plots the output voltage.

#%% Load modules
from aesim.simba import DesignExamples
import matplotlib.pyplot as plt

#%% Load project
flybackConverter = DesignExamples.DCDC_Flyback()

#%% Get the job object and solve the system
job = flybackConverter.TransientAnalysis.NewJob()
status = job.Run()

#%% Get results
t = job.TimePoints
Vout = job.GetSignalByName('R2 - Instantaneous Voltage').DataPoints

#%% Plot Curve
fig, ax = plt.subplots()
ax.set_title(flybackConverter.Name)
ax.set_ylabel('Vout (V)')
ax.set_xlabel('time (s)')
ax.plot(t,Vout)

# %%

More Examples

A collection of simple Python script examples using the SIMBA Python API is available on this GitHub repository

Copyright (c) 2019-2020 AESIM.tech

Project details


Release history Release notifications | RSS feed

Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distributions

No source distribution files available for this release.See tutorial on generating distribution archives.

Built Distributions

aesim.simba-2023.12.13-py3-none-win_amd64.whl (71.6 MB view details)

Uploaded Python 3 Windows x86-64

File details

Details for the file aesim.simba-2023.12.13-py3-none-win_amd64.whl.

File metadata

File hashes

Hashes for aesim.simba-2023.12.13-py3-none-win_amd64.whl
Algorithm Hash digest
SHA256 3230289e73165782e85ca09c2b8c77d2cf1e9fa5c724a0c024a352144a565947
MD5 6dbabe81ceb435e8ea466ce810c1ebc5
BLAKE2b-256 e3ae3ab8d4e6ce46e5bccd660802dfba8e1eff694d23c80393be91fdcafd90fb

See more details on using hashes here.

File details

Details for the file aesim.simba-2023.12.13-py3-none-manylinux1_x86_64.whl.

File metadata

File hashes

Hashes for aesim.simba-2023.12.13-py3-none-manylinux1_x86_64.whl
Algorithm Hash digest
SHA256 e7ffe9939dc19a4f8ced9e8297b43c882dcb42c7d543d175ee6630b12fc31651
MD5 511f27ea4fae8fdac9fe6ddb4aa2cbf4
BLAKE2b-256 7f34cbfc5aca3ea1991afd430fda1562d11a946235a001a1d40216cd1d5f6d8d

See more details on using hashes here.

Supported by

AWS Cloud computing and Security Sponsor Datadog Monitoring Fastly CDN Google Download Analytics Pingdom Monitoring Sentry Error logging StatusPage Status page