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A battery charge controller realized by a flyback converter with digital primary side regulation for mobile phones

机译:由具有数字初级侧调节功能的反激式转换器实现的用于手机的电池充电控制器

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A flyback converter with digital control designed and implemented for a lithium battery charging system is proposed in this study. As opposed to the requirement of both voltage and current feedbacks for a conventional flyback converter, this study proposes a converter structure that needs only one voltage feedback to stabilize converter output for implementing the designed battery charging techniques. This single feedback of voltage is made possible by so-called "primary side regulation (PSR)", which in hardware senses the output voltage using an auxiliary winding in the isolating transformer of the flyback converter that is operated in DC-DC discontinuous current mode. The adoption of PSR also enables the elimination of the opto-coupler that is often used in conventional converters for feedback signals. Another essential part of the converter is the proposition of a new a duty control method which regulate successfully the output current by only one feedback voltage signal. The proposed battery charging design consists of three consecutive modes, trickle current (TC), CC and CV. At TC and CC, a duty control method is adopted, which is able to regulate the output current by sensing only the output voltage. Both simulation and experimental results show a 7% error deviated from targeted output current. As for CV, a proportional-integral controller is designed and implemented to regulate the output voltage. The overall experimental results show a favorable performance of the proposed charging method with proposed PSR-flyback converter.
机译:本研究提出了一种针对锂电池充电系统设计并实现的具有数字控制的反激式转换器。与常规反激式转换器对电压和电流反馈的要求相反,本研究提出了一种转换器结构,该转换器结构仅需要一个电压反馈即可稳定转换器输出,从而实现设计的电池充电技术。电压的这种单反馈通过所谓的“一次侧调节(PSR)”成为可能,在硬件中,该反激使用在DC-DC不连续电流模式下运行的反激式转换器的隔离变压器中的辅助绕组来感测输出电压。 。采用PSR还可以消除光耦合器,该光耦合器通常在常规转换器中用于反馈信号。转换器的另一个重要部分是提出了一种新的占空比控制方法,该方法仅通过一个反馈电压信号就能成功地调节输出电流。拟议的电池充电设计包括三个连续模式,trick流电流(TC),CC和CV。在TC和CC处,采用占空比控制方法,该方法能够通过仅感测输出电压来调节输出电流。仿真和实验结果均显示偏离目标输出电流的误差为7%。对于CV,设计并实现了比例积分控制器来调节输出电压。总体实验结果表明,采用建议的PSR反激转换器的建议充电方法具有良好的性能。

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