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Developing programmable multi-chemistry battery chargers for common power electronic topologies using a hybrid PWM controller

机译:使用混合PWM控制器开发用于常见功率电子拓扑的可编程多化学电池充电器

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The evolution of new battery technologies and unique system requirements has created a demand for intelligent power electronic battery-charger solutions. This paper will present a method showing how to develop a programmable solution that supports multiple topologies and hardware designs that can be used to safely and reliability charge existing and future battery chemistries, in addition to super-capacitor energy storage needs. Common and popular battery-charger topologies, such as Buck, Flyback, SEPIC and Cuk', will be used as examples. Using this method, accurate constant voltage and charge current can be achieved with all topologies via a common firmware platform and a highly integrated hybrid PWM controller.
机译:随着新电池技术的发展和独特的系统要求,对智能电力电子电池充电器解决方案产生了需求。本文将介绍一种方法,该方法展示了如何开发一种可编程解决方案,该解决方案支持多种拓扑和硬件设计,除了超级电容器储能需求之外,还可用于对现有和未来电池化学物质进行安全可靠的充电。以常见和流行的电池充电器拓扑为例,例如Buck,Flyback,SEPIC和Cuk'。使用这种方法,可以通过一个通用的固件平台和一个高度集成的混合PWM控制器,在所有拓扑结构中实现精确的恒定电压和充电电流。

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