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2018
A lithium-ion battery for mobile applications needs efficient thermal management to guarantee the required service life of more than 10 years as well as full performance and availability under all operating and environmental conditions. Thermal management comprises cooling as well as heating.
Achim Wiebelt, Michael Guenther Zeyen
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A lithium-ion battery for mobile applications needs efficient thermal management to guarantee the required service life of more than 10 years as well as full performance and availability under all operating and environmental conditions. Thermal management comprises cooling as well as heating.
Achim Wiebelt, Michael Guenther Zeyen
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Total Battery Management System for Aviation Batteries
SAE Technical Paper Series, 2006<div class="htmlview paragraph">This paper describes GEM Power's Total Battery Management System (TBMS), a new approach to the management of all battery types including aviation batteries, by means of treatment and analysis of a matrix of battery parameters (MoP).
B. J. Tsenter, J. E. James
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2018
The battery management system's most important task is to protect the drive battery's individual cells and to increase service life as well as cycle numbers. This is especially important for lithium-ion technology because the batteries must be protected from overcharging and excess temperature (Fig. 14.1) to prevent cell destruction.
Roland Dorn +2 more
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The battery management system's most important task is to protect the drive battery's individual cells and to increase service life as well as cycle numbers. This is especially important for lithium-ion technology because the batteries must be protected from overcharging and excess temperature (Fig. 14.1) to prevent cell destruction.
Roland Dorn +2 more
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Battery Thermal Management System
2020 6th International Conference on Advanced Computing and Communication Systems (ICACCS), 2020The condition of the temperature within the atmosphere changes each day. The temperature of the electrical vehicles changes with relation to the environment. Battery plays a heavy and extremely important role in day-to-day life. It's been employed altogether electrical fields, powerhouses, renewable sources and also in modern electric vehicles. Battery
S. Venkatakrishnan +5 more
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Battery Management systems (BMS) for increasing battery life time
TELESCON 2000. Third International Telecommunications Energy Special Conference (IEEE Cat. No.00EX424), 2000Reliability and costs of an energy storage system are two very important parameters for uninterruptible power supplies (UPS) and other battery applications. The increasing of battery life and the prediction of battery failure are therefore two important features of a battery management system (BMS). A couple of other helpful features can be implemented
J. Garche, A. Jossen
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Rechargeable Batteries and Their Management
IEEE Instrumentation & Measurement Magazine, 1998With the consumer electronics, electric vehicles (EVs) and portable product markets growing, design of battery packs can challenge the designer because they are no longer a simple configuration of cells. They could contain many safety features, intelligence, energy aware models and selective batteries feeding the host product, serial data communication,
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Sophisticated battery management addresses emerging battery technologies
Proceedings of Southcon '95, 2002As the need to provide portable electronic equipment increases, the management of existing and emerging battery chemistries is receiving increased attention across a wide range of industries. With the surge in demand for portable computers and cellular phones, consumers are becoming more sophisticated about the various aspects of battery-powered ...
D. Freeman, D. Heacock
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Decentralized Battery Management System
Proceedings of the 2014 15th International Scientific Conference on Electric Power Engineering (EPE), 2014This paper describes the design idea of a decentralized Battery Management System with the communication between cells over power line. First part of the paper shortly summaries the Battery Management System (BMS), differences between centralized and decentralized systems and explains the main target of this project.
Karel Cermak, Matous Bartl
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Battery thermal management system
2004 10th International Workshop on Computational Electronics (IEEE Cat. No.04EX915), 2005Most VRLA batteries used in telecommunications applications are designed to operate in an indoor environment of 25/spl deg/ C. When placed in an outdoor environment, the batteries must be heated to prevent loss of capacity and must be ventilated to avoid build-up of hydrogen gas that occurs during charging that isn't properly controlled.
M.R. Cosley, M.P. Garcia
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Rechargeable batteries and battery management systems design
IECON 2010 - 36th Annual Conference on IEEE Industrial Electronics Society, 2010Estimated worldwide sales for rechargeable batteries, was around US$36 billion in 2008 and this is expected to grow towards US$51 billion by 2013. As per market reports, US demand for primary and secondary batteries will increase by 2.5% annually to 16.8 billion in 2012, while primary batteries will account for 5.8 billion with a growth rate of 3%. The
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