Assessing Battery Performance: Compared to What?
May 10, 2019 | Argonne National LaboratoryEstimated reading time: 3 minutes

Scientists must often ask themselves, compared to what? How do the results we generate in the laboratory compare with those obtained by others? How do our theoretical calculations compare with experimental data?
Answering such questions is especially crucial for researchers and developers of lithium-ion batteries. Invented four decades ago, lithium-ion batteries now power most portable electronics like laptops and power tools. They are also being developed to meet the high energy storage demands for powering electric vehicles and electric grids. New designs with different compositions of electrode and electrolyte — the two key battery components — are constantly coming online.
“Industrial engineers and researchers from governmental and academic labs often devise their own procedures for characterizing lithium-ion batteries based on the battery technology’s intended application. This makes the comparison of any technological innovations extremely complicated.” — Ira Bloom, Argonne battery researcher
Assessing whether an innovation in electrode or electrolyte material is actually an improvement requires comparing it to other test results. However, there is no “one size fits all” standard for battery testing. Methods for testing batteries can vary widely.
Argonne battery researcher Ira Bloom notes, “Industrial engineers and researchers from governmental and academic labs often devise their own procedures for characterizing lithium-ion batteries based on the battery technology’s intended application. This makes the comparison of any technological innovations extremely complicated.”
A team from the U.S. Department of Energy’s (DOE) Argonne National Laboratory, University of Warwick, OVO Energy, Hawaii National Energy Institute, and Jaguar Land Rover has reviewed the literature on the various methods used around the world to characterize the performance of lithium-ion batteries in order to provide insight on best practices.
Typically, battery researchers use three parameters to define electrochemical performance: capacity, open-circuit voltage, and resistance. Capacity is a measure of the total charge stored in a battery. The open-circuit voltage is the voltage available from a battery with no current flow. It represents the battery’s maximum voltage. The resistance is the degree to which the component materials impede the flow of electric current, resulting in a voltage drop.
The problem is that, depending on battery application, researchers may measure these parameters under different test conditions (temperature, rate of discharge, state of charge, etc.), and thereby obtain a different battery operating life. Battery resistance, for example, can be measured with either a direct current or alternating current.
“It’s complicated,” observes Anup Barai, a principal investigator and senior research fellow at the University of Warwick. “The appropriateness of a test depends on what the investigator is studying. Our review provides guidance on the most appropriate test method for a given situation.” To that end, the team has produced an easy-to-use table comparing eight test methods, including the main equipment needed, the information generated, and the advantages and drawbacks for each.
“Our hope,” Bloom adds, “is that our results may one day lead to more reliably comparable methods for testing lithium-ion batteries tailored to different applications.”
The study, entitled “A comparison of methodologies for the non-invasive characterisation of commercial Li-ion cells,” recently appeared in the online version of the journal Progress in Energy and Combustion Science.
In addition to Bloom and Barai, the research team included Kotub Uddin, OVO Energy; Matthieu Dubarry, University of Hawaii at Mānoa; Limhi Somerville, Jaguar Land Rover; and Andrew McGordon and Paul Jennings, University of Warwick.
This research had support from several sponsors, including Innovate UK, the UK Engineering and Physical Sciences Research Council, the state of Hawaii, the Asia Pacific Research Initiative for Sustainable Energy Systems, and the DOE Office of Energy Efficiency and Renewable Energy, Vehicle Technologies Office.
DOE’s Office of Energy Efficiency and Renewable Energy supports early-stage research and development of energy efficiency and renewable energy technologies to strengthen U.S. economic growth, energy security, and environmental quality.
Argonne National Laboratory seeks solutions to pressing national problems in science and technology. The nation’s first national laboratory, Argonne conducts leading-edge basic and applied scientific research in virtually every scientific discipline. Argonne researchers work closely with researchers from hundreds of companies, universities, and federal, state and municipal agencies to help them solve their specific problems, advance America’s scientific leadership and prepare the nation for a better future. With employees from more than 60 nations, Argonne is managed by UChicago Argonne, LLC for the U.S. Department of Energy’s Office of Science.
Suggested Items
TTCI Celebrates Melanie Rutkauskas’ 10-Year Anniversary and Her Leadership of New Training Division
06/12/2025 | TTCIThe Test Connection Inc. (TTCI), a leading provider of electronic test and manufacturing solutions, is proud to celebrate Melanie Rutkauskas on her 10-year anniversary with the company.
Bridging the Knowledge Gap in Test: A Conversation with Bert Horner
06/11/2025 | Barry Matties, I-Connect007Bert Horner is a seasoned industry veteran and co-creator of The Test Connection, Inc. (TTCI), a test and inspection company spanning over 45 years. In this candid conversation, Bert reflects on the challenges our industry faces with the retirement of career professionals and the subsequent loss of critical tribal knowledge. As he unveils The Training Connection’s innovative training initiatives, Bert emphasizes the importance of evolving educational programs that align with industry needs, particularly in design for test (DFT), and sheds light on strategies being implemented to foster the next generation of engineers.
IPC Hall of Fame Spotlight Series: Highlighting Bob Neves
06/11/2025 | Dan Feinberg, I-Connect007Many IPC members who have contributed significantly to IPC and our industry have been awarded the IPC Raymond E. Pritchard Hall of Fame (HOF) Award. This Hall of Fame spotlight features industry veteran Bob Neves, who joined IPC in 1986 and was inducted into the IPC Hall of Fame in 2007.
GEN3 Set to Host HATS²™ Technical Day at A.W. Technical Centre with Bob Neves
06/09/2025 | Gen3GEN3, a global leader in reliability testing and measurement solutions for the electronics industry, is excited to announce a dedicated HATS²™ Technical Day to be held at the A.W. Technical Centre in Farnborough, GEN3’s HQ. The event will showcase the HATS²™ (Highly Accelerated Thermal Shock) system with demos and presentations by Bob Neves, Chairman of RAS Inc. and creator of the HATS²™.
Target Condition: From Dream House to Drill Files
06/05/2025 | Kelly Dack -- Column: Target ConditionIf you caught the movie “Barbie,” you may have laughed at its over-the-top utopia where every day begins with perfect weather, perfect smiles, and a perfectly pink commute. But beyond the plastic glam, the film subtly critiques the illusion of perfection—a message that feels surprisingly relevant to the world of PCB design and manufacturing.