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Titlebook: Battery Management Systems; Accurate State-of-Ch Valer Pop,Henk Jan Bergveld,Peter H. L. Notten Book 2008 Springer Science+Business Media B

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https://doi.org/10.1007/978-3-642-99839-3luation system in chapter 7. Accurate results have been obtained with the SoC evaluation system using fresh batteries under an extended range of conditions. However, the SoC=f(EMF), overpotential and SoCl models include a variety of parameters that change during cycling of the battery. For a more ac
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https://doi.org/10.1007/978-1-4020-6945-1Batterie; Battery Aging; Battery Management Systems; Charge control and batteries; Charging and discharg
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1571-5671 ttery SoC indication requires a number of disciplines, this book covers all important disciplines starting from (electro)chemistry to understand battery behaviour, via mathematics to enable modelling of the obs978-90-481-7773-8978-1-4020-6945-1Series ISSN 1571-5671
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Battery aging process,aptive systems for battery EMF and overpotential based on the phenomena discovered during analysis of the measurement results will be presented in section 6.4. These systems will enable accurate SoC calculation while a battery ages. The voltage prediction model developed in section 4.2 will also be
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Measurement results obtained with new SoC algorithms using fresh batteries,algorithm states in a real-time SoC evaluation system are presented in section 7.2. The focus in section 7.3 is on the experimental results obtained with the real-time SoC evaluation system. The identification of sources of error in each state of the real-time SoC evaluation system is discussed in s
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https://doi.org/10.1007/978-1-4757-5412-4and implemented by Bergveld et al. in 2000 [1]–[3]. By implementing the mathematical models described in [1], this algorithm was found to be the most sophisticated and accurate [11], [12]. This chapter will give a complete description of this algorithm, which serves as the starting point of this boo
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