Increasing Efficiency & Thermal Stability
(効率・熱安定性の改善)

「安全性のための化学物質」セッションの一部

2023年11月7日 ALL TIMES EST

より多くのリチウムイオン電池が市場に参入するにつれて、安全性が重要な課題となっています。特に、熱暴走の発生につながる発熱反応の制御が、非常に重要となっています。安全な電池を作り出すのには、SEI/CEIや充電率・放電率、サイクル寿命に対する十分な理解が不可欠です。今年の電池安全性サミットの一部である「効率・熱安定性の改善」部会では、電池安全性を研究する主要な科学者が集結し、材料形成や電池の安全性、検査、サイクル分析などの最新動向について議論します。

11月7日(火)

Registration and Morning Coffee7:30 am

SAFE & EFFICIENT CHARGING
安全で効率的な充電

8:50 amOrganizer's Remarks

Victoria Mosolgo, Conference Producer, Cambridge EnerTech

8:55 am

Chairperson's Remarks

Naoki Matsumura, Principal Engineer, Intel Corp.

9:00 am

Enhancement of Battery Sustainability by Charging Algorithms - Part 1

Naoki Matsumura, Principal Engineer, Intel Corp.

Li-ion batteries are used in many industries, such as consumer electronics, electric vehicles, and internet-of-things. With the substantially increasing demand, sustainable battery technologies are desired. This talk explains several battery algorithms: adaptive charging, situational charging, context-based battery charging, etc. All algorithms extend battery longevity and require less battery replacement, thus contributing to sustainability enhancement.

9:30 am

Enhancement of Battery Sustainability by Charging Algorithms - Part 2

Jagadish Singh, Analog Engineer, Intel Corp.

Li-ion batteries are used in many industries, such as consumer electronics, electric vehicles, and internet-of-things. With the substantially increasing demand, sustainable battery technologies are desired. This talk explains several battery algorithms: adaptive charging, situational charging, context-based battery charging, etc. All algorithms extend battery longevity and require less battery replacement, thus contributing to sustainability enhancement.

10:00 am

Enabling Safety-Enhanced Fast Charging of Electric Vehicles via Soft Actor Critic-Lagrange DRL Algorithm in a Cyber-Physical System

Dong Zhang, PhD, Director, Energy Systems Controls Laboratory, University of Oklahoma

Networking Coffee Break in the Exhibit Hall with Poster Viewing10:30 am

CELL MONITORING
セルのモニタリング

11:00 am

Development, Demonstration, and Performance of Li-ion/EDLC in-Electrode Hybrids for High Power Application in Pouch Cell Prototype Devices

Alexander Roberts, PhD, Associate Professor, Institute for Clean Growth and Future Mobility, Coventry University

With increasing demands in application, balance between power and energy requirements at cell level is increasingly difficult to satisfy, particularly in respect of higher power. This work demonstrates hybridization of battery and EDLC in-electrode with active materials from both present in both electrodes, as opposed to one electrode from each as seen in lithium-ion capacitors, enabling the tuning of power and energy to application and also increasing in lifetime.

11:30 am

Examination and Modeling of Thermal Runaway on Li-ion Battery Impact of Chemistry, SOC, and Aging

Sara Abada, PhD, Research Engineer, Modeling of Electrochemical Storage Systems, IFP Energies Nouvelles

Thermal Runaway (TR) of LiBs is the key to safety. It involves multi-scale phenomena ranging from internal physic-chemical mechanisms to battery components including safety features (CID, pressure disk, vent) and further to thermal propagation. At IFPEN, a Multiphysics Multiscale model is developed to be able to simulate the cell behavior under different initiation events (overheating, overcharging, short circuiting). The impacts of chemistry, SOC, and aging are studied.

Sponsored Presentation (Opportunity Available)12:00 pm

Enjoy Lunch on Your Own1:00 pm

THERMAL STABILITY
熱安全性

1:55 pm

Chairperson's Remarks

Christina Lampe-Onnerud, Founder and CEO, Cadenza Innovation

2:00 pm

Enhancing Battery Safety with Higher Operating Temperatures

Brian McCarthy, PhD, CTO, EC Power

Lithium-ion batteries have long been confined within narrow temperature thresholds, limiting their effectiveness and safety. This talk will explore a potential future where lithium-ion cells are intentionally engineered for higher operating temperatures and so revolutionize battery safety. By delving into cutting-edge advancements like solid-state batteries, which inherently thrive at elevated temperatures, we contemplate the possibility of harnessing higher operating temperatures as a design advantage rather than a limitation. We will also discuss the role that next-generation thermal management systems could play to facilitate this future.

2:30 pm

Passive Cooling Impact on Increasing Efficiency & Thermal Stabilities of Batteries

Mohammad Moghimi Ardekani, Associate Professor of Clean Energy Technologies, Department of Engineering, Staffordshire University

Latent heat thermal energy storage (LHTES) systems using phase change materials (PCMs) have appeared as promising solutions for energy storage when harnessing renewable energy sources in a wide range of engineering applications. The present study focuses on the design of horizontal shell-and-tube PCM-based LHTES systems capable of simultaneous charging and discharging in solar domestic hot water (SDHW) applications.

Networking Refreshment Break in the Exhibit Hall with Poster Viewing3:00 pm

SAFETY ANALYSIS
安全性分析

3:30 pm

Evaluation of Electronic Conductivity of Lithium-ion Battery Negative Electrode Slurry via AC Impedance Analysis

Naomichi Miyairi, Product Engineer, Tech Marketing, Hioki USA

We report a novel impedance analysis method for quantifying the conductivity of electrons flowing through conductive materials in a lithium-ion battery electrode slurry. This method consists of a novel algorithm that identifies three key indicators for the negative electrode slurry and describes the electrical properties of the electrode slurry. We demonstrated excellent correlation between our algorithm and experimental data derived from Nyquist (Cole-Cole) curves.

4:00 pm

Enovix BrakeFlow Technology: A Breakthrough in Next-Gen Battery Safety

Ashok Lahiri, CTO, Technical Advisor & Co-Founder, ENOVIX Corp.

The Enovix stacked-cell architecture, which uses a silicon anode, upends the conventional paradigm and enables both an increase in energy density and a high level of abuse tolerance to reduce the risks of an internal short due to its BrakeFlow technology. With BrakeFlow incorporated, instead of a sudden catastrophic release of energy, the battery is designed to discharge safely and slowly.

4:30 pm

Deploying Energy Storage Systems Safely in Urban Environments

Christina Lampe-Onnerud, Founder and CEO, Cadenza Innovation

Safety has historically been deprioritized, often in favor of cost, resulting in energy storage systems that cannot respond in time to prevent catastrophic explosions and fires. However, safe lithium chemistry-agnostic battery deployment and operation is achievable and essential (particularly in urban areas where electricity demands are the greatest and safety is paramount) to propel the clean energy storage solutions that will enable the successful transformation from fossil fuel dependence.

Close of Conference5:00 pm


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