Javascript must be enabled to continue!
Characteristics of Battery Management Systems of Electric Vehicles with Consideration of the Active and Passive Cell Balancing Process
View through CrossRef
Energy shortage and environmental pollution issues can be reduced considerably with the development and usage of electric vehicles (EVs). However, electric vehicle performance and battery lifespan depend on a suitable battery arrangement to meet the various battery performance demands. The safety, reliability, and efficiency of EVs largely depends on the constant monitoring of the batteries and management of battery packs. This work comprehensively reviews different aspects of battery management systems (BMS), i.e., architecture, functions, requirements, topologies, fundamentals of battery modeling, different battery models, issues/challenges, recommendations, and active and passive cell balancing approaches, etc., as compared to the existing works which normally discuss one or two aspects only. The work describes BMS functions, battery models and their comparisons in detail for an efficient operation of the battery pack. Similarly, the work presents a comprehensive overview of issues and challenges faced by BMS and also provides recommendations to address these challenges. Cell balancing is very important for the battery performance and in this work various cell balancing methodologies and their comparisons are also presented in detail. Modeling of a cell balancer is presented and a comparative study is also carried out for active and passive cell balance technique in MATLAB/Simulink with an eight cell battery packcell balancing approach. The result shows that the active cell balancing technique is more advantageous than passive balancing for electrical vehicles using lithium-ion batteries.
Title: Characteristics of Battery Management Systems of Electric Vehicles with Consideration of the Active and Passive Cell Balancing Process
Description:
Energy shortage and environmental pollution issues can be reduced considerably with the development and usage of electric vehicles (EVs).
However, electric vehicle performance and battery lifespan depend on a suitable battery arrangement to meet the various battery performance demands.
The safety, reliability, and efficiency of EVs largely depends on the constant monitoring of the batteries and management of battery packs.
This work comprehensively reviews different aspects of battery management systems (BMS), i.
e.
, architecture, functions, requirements, topologies, fundamentals of battery modeling, different battery models, issues/challenges, recommendations, and active and passive cell balancing approaches, etc.
, as compared to the existing works which normally discuss one or two aspects only.
The work describes BMS functions, battery models and their comparisons in detail for an efficient operation of the battery pack.
Similarly, the work presents a comprehensive overview of issues and challenges faced by BMS and also provides recommendations to address these challenges.
Cell balancing is very important for the battery performance and in this work various cell balancing methodologies and their comparisons are also presented in detail.
Modeling of a cell balancer is presented and a comparative study is also carried out for active and passive cell balance technique in MATLAB/Simulink with an eight cell battery packcell balancing approach.
The result shows that the active cell balancing technique is more advantageous than passive balancing for electrical vehicles using lithium-ion batteries.
Related Results
Modeling active cell balancing of lithium-ion bat-teries in MATLAB/Simulink
Modeling active cell balancing of lithium-ion bat-teries in MATLAB/Simulink
Problem. The article is devoted to the study of active balancing of lithium-ion battery cells. Active balancing of lithium-ion battery cells is crucial for ensuring high efficiency...
Comparative Analysis of Active and Passive Cell Balancing Strategies in Battery Management Systems
Comparative Analysis of Active and Passive Cell Balancing Strategies in Battery Management Systems
Battery management systems (BMS) play a crucial role in ensuring the performance, reliability, and longevity of modern battery systems by employing cell balancing techniques. This ...
Electric versus conventional vehicles for logistics: A total cost of ownership
Electric versus conventional vehicles for logistics: A total cost of ownership
Today, different measures are investigated to solve the challenge of a sustainable urban freight transport. Among them, electric vehicles are often viewed as an interesting solutio...
Pursuit of “Absolute Battery Safety, Fear-Free Energy and Mobility” - A Technology Roadmap Toward a Fail-Never Battery Future
Pursuit of “Absolute Battery Safety, Fear-Free Energy and Mobility” - A Technology Roadmap Toward a Fail-Never Battery Future
The Pursuit of “Absolute Battery Safety, Fear-Free Energy, and Mobility”—A ”Technology Roadmap Toward a Fail-Never Battery Future
As the electrification of transportation and energ...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
Drive systems optimization in electric, hybrid and fuel cell vehicles
Drive systems optimization in electric, hybrid and fuel cell vehicles
(English) We are currently immersed in the fourth industrial revolution that involves, among others, technology to prevent climate change,
transformation of the transport sector, ...
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Objective: To determine the frequency of common chromosomal aberrations in local population idiopathic determine the frequency of common chromosomal aberrations in local population...
Design and Development of Low-cost Active Battery Balancing Technique for Electric Motorcycles
Design and Development of Low-cost Active Battery Balancing Technique for Electric Motorcycles
With growing emphasis on environmental sustainability, electric mobility (E-Mobility) systems are gaining traction worldwide. These systems depend heavily on battery storage to del...

