
Automate everyday tasks with Python by setting up Python and connecting to SQL. Integrate Python inside SQL Server to build a reusable function library and test models with virtual models.
Install and configure Python for PSS Sincal, set up the path and folders, install PyWin32, and create a virtual environment to connect Python with Spyder and SQL.
Connect to PSS Sincal with Python, establish a single application session, open the network model, and perform a load flow calculation.
Automate load flow and short-circuit analyses with Python by interfacing a Win32 client and a single app, and choose 3ph or 2ph calculations.
Learn how Python integrates inside PSS Sincal by configuring the Python interpreter, organizing scripts in the project explorer, and running scripts with arguments or a console.
Automate power system studies by building a Python function library to run load flow and three-phase short-circuit analyses, connect to the single application, and execute multi-case sequences with minimal code.
Apply evaluation filter to network graphics and generate heat maps to visualize voltage and power flow, then view and clear results using a guided GUI workflow.
Execute a step-by-step python automation to select elements by type, highlight converters with temporary colors, and clear selections to clean the model.
Demonstrates connecting a PSS Sincal model to a database, running batch load flow and short circuit analyses, and extracting node, transformer, and line results via the engine.
Learn to run load flow and short-circuit analyses in PSS Sincal Engine, store results in a virtual model database, and export to SQL and pandas data frames for tabular viewing.
Combine the pss sincal engine with the graphical user interface inside a loop to automate calculations such as power flow and short circuits, store results, and refresh the gui.
Learn to access model elements and change parameters in a PSS Sincal Python workflow. Load the model, update power factor, and view results from a power flow.
Automate PSS Sincal automation with Python by building a virtual model in a virtual database, adding a node, bus, line, and load, and running power flow calculations.
Learn to create and place nodes, lines, and loads in the PSS SINCAL GUI model using Python automation, including graphically persisting the model and handling coordinates.
In the rapidly evolving world of power system analysis, automation is becoming essential for efficiency and accuracy. This course, "Mastering PSS®SINCAL Automation with Python," is designed to help power system engineers, researchers, and automation enthusiasts leverage Python to automate repetitive tasks in PSS®SINCAL.
PSS®SINCAL is a powerful tool used for power flow analysis, short circuit studies, protection coordination, dynamic analysis, and more. However, manual processes can be time-consuming and prone to errors. By integrating Python scripting, you can automate data validation, network element modifications, simulation execution, and result extraction, significantly improving your workflow.
What You Will Learn:
Understand PSS®SINCAL’s Architecture – Learn how its APIs and database interfaces work.
Automate Power System Modeling – Insert, update, and modify network elements programmatically.
Perform Automated Calculations – Use Python to execute power flow, short circuit, and dynamic simulations.
Implement Parameter Variation Studies – Run sensitivity analyses without manual intervention.
Interface with External Systems – Automate data exchange and result processing.
Optimize Workflow Efficiency – Reduce errors, save time, and improve productivity.
This course is perfect for power system engineers, consultants, grid operators, and researchers who want to enhance their capabilities with automation. Whether you’re new to Python or experienced with PSS®SINCAL, this course will guide you through step-by-step implementations with real-world examples.
By the end of this course, you’ll have the skills to automate complex simulations, integrate Python with PSS®SINCAL, and streamline your power system analysis like a pro!