Description: 电池监测芯片DS2438及其在电动车能量管理系统中的应用-Battery monitoring chip DS2438 and its application in electric vehicles energy management system Platform: |
Size: 176128 |
Author:xiaomei |
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Description: 基于pic单片机为核心的,锂电池充电管理系统,它将多组电池充电姿状态,进行显示,-Pic-based single-chip microcomputer as the core, lithium battery management system, it will pose multiple sets of battery charging status display, Platform: |
Size: 4096 |
Author:诸力 |
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Description: 电池管理内容,针对电池的SOC精确计算,有很好的思路,特别对刚进入这个门道的人特别有用哦-Battery management content, for accurate calculation of battery SOC, have a good idea, especially for just entering the doorways are particularly useful Oh Platform: |
Size: 203776 |
Author:leidailiang |
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Description: 利用卡尔曼滤波器计算电池组SOC,详细介绍了卡尔曼滤波器以及电池模型-Use of Kalman filter calculation battery SOC, the detailed introduction of the Kalman filter and battery model Platform: |
Size: 1696768 |
Author:laoli |
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Description: 此手册指南拥有完备的电源解决方案以及全系列的高性能产品。手册内容有:典型电源应用,数字电源控制解决方案,AC/DC及DC/DC电源产品,嵌入式电源模块,线性稳压器,电池管理产品等等。-This manual has a complete guide to power solutions, as well as a full range of high-performance products. Manual are as follows: a typical power supply applications, solutions for digital power control, AC/DC and DC/DC power products, embedded power modules, linear voltage regulators, battery management products. Platform: |
Size: 2117632 |
Author:ymxi |
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Description: 基于双CAN总线的电动汽车电池管理系统,BMS-Based on dual CAN bus electric vehicle battery management system Platform: |
Size: 516096 |
Author:maohuafu |
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Description: Linear高性能电池充电器方案,适合对于电池管理的方案选择,特备是凌特的电源管理芯片选择-Linear program of high-performance battery charger, suitable for battery management program of choice, Special Linear s power management chip select Platform: |
Size: 1036288 |
Author:小楼 |
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Description: 一篇介绍动力电池管理系统SOC估算研究及设计的论文,希望有所帮助。-Introduced a battery management system research and design SOC estimation papers, hoping to help. Platform: |
Size: 5496832 |
Author:smilebaker |
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Description: 该模型主要模拟蓄电池及其电池管理系统,即BMS,其中包括充放电电流计算、电池温度等,可用于电动汽车、燃料电池汽车模拟,也可用于电池建模计算(The model mainly simulates the battery and its battery management system, namely BMS, including charge and discharge current calculation, battery temperature, etc., which can be used for electric vehicle and fuel cell vehicle simulation, and can also be used for battery modeling calculation.) Platform: |
Size: 32768 |
Author:素昕frz |
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Description: Battery management is not a new concept—monitoring and control concepts were proposed as
early as the 1960s to improve battery safety. After years of intensive study, it remains a field
needing more research. This is not because we did not learn much during the past 50 years, we
did. But the subject of study is rapidly changing. The materials and structure of the battery
anode, cathode and electrolytes continue to evolve and improve, and the electrochemistry
and aging mechanisms also continue to change. The performance and capacity of batteries
degrade due to the disordering and deforming of electrode structure, decomposition of the
electrolyte, dissolution of metal, dendrite formation, and so on. The relative importance of these
mechanisms is battery-chemistry dependent, and the rate of degradation changes significantly
with many factors, including operating temperature, charge and discharge rate, and depth of
discharge. Finally, these aging mechanisms happen at different timescales, posing challenges
to data collection and analysis. The safety incidents of the Boeing Dreamliner battery systems
in 2012 remind us that much remains to be done before advanced high energy density battery
systems can be used safely and reliably in challenging applications such as aircraft and electric
vehicles Platform: |
Size: 3412996 |
Author:nutankumar |
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Description: This book constitutes the first volume in what is planned to be a
three-volume series describing battery management systems. The
intent of the series is not to be encyclopedic; rather, it is to put forward only the current best practices, with sufficient fundamental
background to understand them thoroughly.1
This first volume focuses on deriving mathematical sets of equations or models that describe how battery cells work, inside and out.
The second volume applies equivalent-circuit style models to solve
problems in battery management and control. The third volume
shows how physics-based models can also be used to solve problems
in battery management and control, leading to better results. Platform: |
Size: 7705208 |
Author:davidgaow |
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