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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控制器开发用于共同电源电子拓扑的可编程多化学电池充电器

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摘要

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:新电池技术的演变和独特的系统要求已经为智能电力电子电池充电器解决方案创造了一种需求。本文将展示一种方法,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,除了超级电容器的能量存储需求外,还可以使用可用于安全和可靠性的电池化学物质。常见和流行的电池充电器拓扑,如降压,反激,塞皮和CUK'将用作示例。使用该方法,可以通过公共固件平台和高度集成的混合PWM控制器,通过所有拓扑实现精确的恒压和充电电流。

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