Composite Liquid Cooling for EV Battery Pack Thermal Management
The rapid growth of the electric vehicle market has brought the safety and reliability of lithium-ion batteries into sharp focus.
The rapid growth of the electric vehicle market has brought the safety and reliability of lithium-ion batteries into sharp focus.
1. Introduction As an emerging clean energy source, high-capacity power batteries are being widely used in electric vehicles, communication systems,
In the transport sector, the transition toward electric mobility has been driven by environmental regulations and by the necessity of
This paper presents a comprehensive study on the design of a battery management system (BMS) for a pure electric bus
With the rapid expansion of the electric vehicle market and the continuous advancement of intelligent transportation systems, the safety of
As an engineering researcher who has devoted years to the study of electric vehicle (EV) power systems, I have come
The transition to electric mobility is inseparable from the development of reliable high-energy lithium-ion batteries. I have focused this work
In this dissertation, I focus on the real-time and accurate state-of-charge estimation of an EV battery pack. The battery pack
As a researcher in the field of electric vehicle power systems, I have always been fascinated by the fundamental role
As the global transportation sector shifts toward electrification, the reliability and safety of lithium-ion power batteries have become critical for
1. Introduction and Research Motivation The global strategic push toward carbon neutrality has accelerated the electrification of the transportation sector.
1. Introduction and Research Significance With the intensification of global climate change, reducing greenhouse gas emissions has become a common
As the global automotive industry transitions toward sustainable energy solutions, the development of high-performance electric vehicles has become a central
In my research, I focus on the thermal management of an EV battery pack operating under extreme environmental conditions. The
Lithium-ion batteries have become the dominant energy-storage solution for electric vehicles (EVs) because of their high energy density, long cycle
As a researcher in the field of electric vehicle technology, I have devoted significant effort to the study of battery
In this paper, I present a comprehensive study on the design, calibration, and error optimization of a Hall element elliptical
As electric vehicles and portable power applications grow rapidly, I found the need to develop a robust energy management system
The rapid transition toward clean energy and electric mobility has placed power battery systems at the core of electric vehicle
In this thesis, I systematically investigated the manufacturing process of high-power lithium-ion batteries based on spinel LiMn₂O₄ cathodes and graphite
With the rapid growth of vehicle ownership and the strengthening of environmental regulations worldwide, hybrid electric vehicles have drawn increasing
In this article, I present my research work on the design and numerical evaluation of a phase change material (PCM)
As a graduate researcher specializing in vehicle engineering, I have dedicated my thesis work to developing a comprehensive impact explosion
Introduction and Research Motivation As the global community intensifies efforts to combat climate change and accelerate the energy transition, the
In recent years, the rapid development of electric vehicles has placed higher demands on the safety and durability of traction
In this paper, I present a complete study and hardware implementation of a charging and protection circuit dedicated to a
In my study, I focus on the thermal management of an EV battery pack that uses high-energy-density lithium-ion cells. The
Abstract Power lithium-ion battery represents a new type of high-energy battery successfully developed in the 20th century. Compared with Ni-MH,
The strategic goals of achieving “carbon peak” by 2030 and “carbon neutrality” by 2060 have catalyzed the rapid development of
With the rapid advancement of electric vehicles (EVs), the demand for fast charging technologies, particularly at 4C rates, has intensified,