Scinovex
article Open AccessTop 1% cited

Pandapower—An Open-Source Python Tool for Convenient Modeling, Analysis, and Optimization of Electric Power Systems

IEEE Transactions on Power Systems · 2018 · Vol. 33(6) · pp. 6510–6521
Leon ThurnerAlexander ScheidlerFlorian SchäferJan‐Hendrik MenkeJulian DollichonFriederike MeierSteffen MeineckeMartin Braun

Abstract

Pandapower is a Python-based BSD-licensed power system analysis tool aimed at automation of static and quasi-static analysis and optimization of balanced power systems. It provides power flow, optimal power flow, state estimation, topological graph searches, and short-circuit calculations according to IEC 60909. pandapower includes a Newton-Raphson power flow solver formerly based on pypower, which has been accelerated with just-in-time compilation. Additional enhancements to the solver include the capability to model constant current loads, grids with multiple reference nodes, and a connectivity check. The pandapower network model is based on electric elements, such as lines, two- and three-winding transformers, or ideal switches. All elements can be defined with nameplate parameters and are internally processed with equivalent circuit models, which have been validated against industry standard software tools. The tabular data structure used to define networks is based on the Python library pandas, which allows comfortable handling of input and output parameters. The implementation in Python makes pandapower easy to use and allows comfortable extension with third-party libraries. pandapower has been successfully applied in several grid studies as well as for educational purposes. A comprehensive publicly available case study demonstrates a possible application of pandapower in an automated time-series calculation.

Optimal Power Flow DistributionPower System Optimization and StabilityMicrogrid Control and OptimizationPython (programming language)SolverComputer scienceElectric power systemTransformerSoftwareGridComputer engineeringPower flowComputational science

Funding

  • Bundesministerium für Wirtschaft und Energie
  • Projektträger Jülich
Citations
1,030
FWCI
33.66
field-weighted impact
References
35
Percentile
100%
vs. same field & year
Citations per year
References
An Open Source Power System Analysis Toolbox
IEEE Transactions on Power Systems · 2005 · 879 citations
A direct approach for distribution system load flow solutions
IEEE Transactions on Power Delivery · 2003 · 1,015 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.