arrow
Return

Open Data, Models, and Codes for Vanadium Redox Batch Cell Systems: A Systems Approach Using Zero-Dimensional Models

delete2019-09-27
delete14
delete
OA
AI
S
Seong Beom Lee
K
Kishalay Mitra
H
Harry D. Pratt
T
Travis M. Anderson
V
Venkatasailanathan Ramadesigan
B
Babu Chalamala
V
Venkat R. Subramanian *
DOI:10.1115/1.4044156delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
In this paper, we study, analyze, and validate some important zero-dimensional physics-based models for vanadium redox batch cell (VRBC) systems and formulate an adequate physics-based model that can predict the battery performance accurately. In the model formulation process, a systems approach to multiple parameters estimation has been conducted using VRBC systems at low C-rates (similar to C/30). In this batch cell system, the effect of ions' crossover through the membrane is dominant, and therefore, the capacity loss phenomena can be explicitly observed. Paradoxically, this means that using the batch system might be a better approach for identifying a more suitable model describing the effect of ions transport. Next, we propose an efficient systems approach, which enables to help understand the battery performance quickly by estimating all parameters of the battery system. Finally, open source codes, executable files, and experimental data are provided to enable people's access to robust and accurate models and optimizers. In battery simulations, different models and optimizers describing the same systems produce different values of the estimated parameters. Providing an open access platform can accelerate the process to arrive at robust models and optimizers by continuous modification from the users' side.
Keywords:
laboratory-scale batch cell
a systems approach
optimization
capacity loss
an open source platform
parameter estimation
executable files
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Journal of Electrochemical Energy Conversion and Storage cover
Journal of Electrochemical Energy Conversion and Storage
IF:
1.9
Papers:
367
Citations:
1.0K

Organization

U
University of Washington
Scholars:
8.0W
Papers: 7.0W
Citations: 12.5W
I
indian institute of technology system (iit system)
Scholars:
9.5W
Papers: 9.9W
Citations: 93
I
indian institute of technology (iit) - hyderabad
Scholars:
1.8K
Papers: 1.7K
Citations: 7
researcher View more organizations