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Titlebook: Battery Management Systems; Design by Modelling Henk Jan Bergveld,Wanda S. Kruijt,Peter H. L. Nott Book 2002 Springer Science+Business Medi

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楼主: fitful
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Battery Management Systems,tors that determine the complexity of a BMS and shows a general block diagram. The function of each part in a BMS is discussed in more detail in section 2.2 and examples of adding BMS intelligence are given. The BMS aspects of two types of portable devices are discussed in section 2.3. This serves t
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Basic information on batteries,he characteristics of the most important types of batteries that can be obtained on the market today are summarized in section 3.2. Finally, the basic operational mechanism of batteries is described in section 3.3. The information in this section will be used in chapter 4.
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Optimum supply strategies for Power Amplifiers in cellular phones,ered and long use times on a single battery charge are required. The Power Amplifier (PA) draws most of the current from the battery in talk mode. Therefore, a reduction in this current will lead to a significant increase in talk time. This chapter covers powering the PA with the optimum supply volt
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Hiérarchie de modèles en optique quantiqueequent recharging than strictly necessary, which in turn leads to an earlier wear-out of the battery. The effect of inaccuracy of SoC indication can be even worse when the SoC value is also used to control charging. The battery is either not fully charged or it is overcharged. In the former case, th
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1571-5671 s knowledge can be used to improve the design of a BMS, even before a prototype of the portable device has been built. The battery is the central part of a BMS and good simulation models that can be used to imp978-90-481-6108-9978-94-017-0843-2Series ISSN 1571-5671
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