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Proceedings ArticleDOI

A low-cost time shared cell balancing technique for future lithium-ion battery storage system featuring regenerative energy distribution

TLDR
In this paper, a new cell voltage equalizer topology for future plug-in hybrid electric vehicles (PHEV) or renewable energy storage has been proposed, which has fewer components compared to the conventional topologies found in the literatures, and therefore, it could reduce cost and fabrication complexity.
Abstract
A new cell voltage equalizer topology for future plug-in hybrid electric vehicles (PHEV) or renewable energy storage has been proposed in this paper. This topology has fewer components compared to the conventional topologies found in the literatures, and therefore, it could reduce cost and fabrication complexity. This new circuit is based on a time shared fly-back converter, and any number of series connected cells could be used in a string without any apparent issues. Each cell in a string shares this converter during its allocated time slot provided by the microcontroller. In addition, dynamic allocations of the time slots are possible to achieve faster cell balancing, and the circuit dynamically distributes depleted charge among cells in a regenerative fashion — ensuring a very high efficiency. The prototype of a four-cell lithium-ion battery balancer circuit was designed and implemented. Simulation and experimental results are presented to verify the operation of the new topology.

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Citations
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Proceedings ArticleDOI

Passive and active battery balancing comparison based on MATLAB simulation

TL;DR: In this article, a review and comparison between the different cell balancing topologies for battery string based on MATLAB/Simulink® simulation is presented, according to circuit design, balancing simulation, practical implementations, application, balancing speed, complexity, cost, size, balancing system efficiency, voltage/current stress, etc.
Journal ArticleDOI

“Time Shared Flyback Converter” Based Regenerative Cell Balancing Technique for Series Connected Li-Ion Battery Strings

TL;DR: In this paper, a cell voltage equalizer circuit for future plug-in hybrid electric vehicles (PHEV) or renewable energy storage is proposed, which is based on a time shared flyback converter, and any number of series connected cells in a string could be used without any apparent issues ensuring good modular architecture.
Journal ArticleDOI

A Cell-to-Cell Battery Equalizer With Zero-Current Switching and Zero-Voltage Gap Based on Quasi-Resonant LC Converter and Boost Converter

TL;DR: In this article, a direct cell-to-cell battery equalizer based on quasi-resonant LC converter (QRLCC) and boost dc-dc converter (BDDC) is proposed.
Journal ArticleDOI

A Novel High-Efficiency Compact-Size Low-Cost Balancing Method for Series-Connected Battery Applications

TL;DR: In this paper, a transformer is used to couple the energy from charger or discharger to batteries for energy balancing for series-connected batteries, which has the advantages of high efficiency, compact size, suitable for any type of switching converter, load-related balancing energy, and extremely simple structure without any active switch for voltage balance function.
Journal ArticleDOI

Active Cell Equalization Topologies Analysis for Battery Packs: A Systematic Review

TL;DR: A review of the state-of-the-art active battery cell equalization methods is conducted, where it is classified as adjacent- based, nonadjacent-based, direct cell-cell, and mixed topologies to provide a comprehensive way to analyze and compare the existing active cell balancing methods’ performance.
References
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Journal ArticleDOI

Intelligent control battery equalization for series connected lithium-ion battery strings

TL;DR: The proposed battery equalization scheme is a bidirectional dc-dc converter with energy transferring capacitor that can be designed as a ripple-free converter for improving the input current distortion of the battery charge supply power system.
Journal ArticleDOI

Double-Tiered Switched-Capacitor Battery Charge Equalization Technique

TL;DR: Double-tiered capacitive charge shuttling technique is introduced and applied to a battery system in order to balance the battery-cell voltages and MATLAB simulation shows a substantial improvement in charge transport using the new topology.
Journal ArticleDOI

Battery choice and management for new-generation electric vehicles

TL;DR: This paper deals with the design of a battery pack based on Li-ion technology for a prototype electric scooter with high performance and autonomy that features a high capability of energy storing in braking conditions, charge equalization, overvoltage and undervoltage protection and, obviously, SoC information in order to optimize autonomy instead of performance.
Proceedings ArticleDOI

A Review of Cell Equalization Methods for Lithium Ion and Lithium Polymer Battery Systems

TL;DR: In this paper, the authors present the theory of charge balancing techniques and the advantages and disadvantages of the presented methods and discuss several cell-balancing methodologies, including active cell balancing and dissipative cell balancing.
Journal ArticleDOI

Quasi-Resonant Zero-Current-Switching Bidirectional Converter for Battery Equalization Applications

TL;DR: In this paper, a quasi-resonant ZCS (QRZCS) based battery equalization scheme was proposed for dc-to-dc dc converter with an individual cell equalizer.
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