A Python package for working with electrochemical impedance data
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Updated
Sep 12, 2024 - Python
A Python package for working with electrochemical impedance data
OPEM (Open Source PEM Fuel Cell Simulation Tool)
Proton Exchange Membrane (PEM) Fuel Cell Dataset
GUI for OPEM library
Single DBFC Dataset
A collection of papers and code on fuel cell techniques and its application in distributed energy systems and mobility.
Library for using Thales Remote Script 2 over TCP/IP with Python to control Zahner ZENNIUM potentiostats.
This project is in development. It is my attempt to MathWorks' Excellence in Innovation Project 204. This work will be part of my MSc in Automation and Systems Engineering at the Federal University of Santa Catarina.
AlphaPEM is an open-source software package for simulating proton exchange membrane fuel cell (PEMFC) systems using physics-based models for embedded applications.
Python package for the analysis of electrochemical impedance spectra.
Library to control Zahner power potentiostats (PP2x2, EL1002, XPOT2) of the latest generation with Python.
CLI interface to the California Hydrogen Fuel Cell Station Operational Status System (SOSS)
Model of porous electrode in fuel cell catalyst layer. Affiliated with Berkeley Lab's Energy Technologies Area.
A NLEIS toolbox for impedance.py that provides RC level nonlinear equivalent circuit modeling (nECM) and analysis
On Demand Fuel Cells (ODFC) is a plugin to support fuel cells that only generate power when it is needed, thereby saving precious fuel. Simulates fuel cells in Kerbal Space Program (KSP), and do a better job of it than stock's use of a resource converter. The main difference is it only generates electricity when it's really needed (batteries alm…
Redox Flow Battery modeling.
Examples to control Zahner power potentiostats (PP2x2, EL1002, XPOT2) of the latest generation with Python.
Here is the work from the Summer 2022 FAU REU for Renewable Energy utilizing Benthic Microbial Fuel Cells. This years work was done by Brandon Kelly under the supervision of Dr. Jordon Beckler.
A 1D model of a Nafion thin film with absorption/desorption kinetics, water diffusion, and swelling.
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