首页> 外文期刊>IEEE Transactions on Power Electronics >An Inductor Current Estimator for Digitally Controlled Synchronous Buck Converter
【24h】

An Inductor Current Estimator for Digitally Controlled Synchronous Buck Converter

机译:用于数字控制同步降压转换器的电感电流估计

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Inductor current is an important feedback parameter in synchronous buck converters (SBCs). It is used for overcurrent protection, current sharing among interleaved modules, and current-mode feedback regulation, among others. While implementing a digital controller, inductor current is sensed and fed into the controller through a high sampling frequency analog to digital converter (ADC). As the switching frequency of the converter becomes higher, the need for an even higher sampling frequency ADC also goes up, which is a distinct disadvantage in terms of the overall cost. This paper discusses a simple current estimation technique that avoids use of any expensive current sensor and high sampling frequency ADCs. The paper shows that in a buck converter, inductor current can be estimated by tracking the width of the switch node voltage. Implementation and limitations of the proposed current estimation scheme are discussed in detail. The proposed method is validated using a 3.3 V-15 A SBC prototype and results show the estimation technique is accurate within 5% with a converter switching frequency of 800 kHz. In order to prove the effectiveness of the technique in feedback regulation, the current estimation technique is used to implement average current mode and hysteretic current mode control on a SBC. To prove the effectiveness of the proposed current estimation scheme, it is used in closed-loop control of the SBC to verify the dynamic responses, such as start-up transient, step change in load, and reference.
机译:电感器电流是同步降压转换器(SBC)中的重要反馈参数。它用于过电流保护,交错模块之间的电流共享,以及当前模式反馈调节等。在实现数字控制器的同时,通过高采样频率模数(ADC)感测电感电流并进入控制器中。随着转换器的开关频率变高,对甚至更高的采样频率ADC的需要也上升,这在整体成本方面是一个不同的缺点。本文讨论了一种简单的电流估计技术,避免使用任何昂贵的电流传感器和高采样频率ADC。纸张表明,在降压转换器中,可以通过跟踪开关节点电压的宽度来估计电感电流。详细讨论了所提出的当前估计方案的实施和限制。使用3.3 V-15验证所提出的方法A SBC原型和结果显示,估计技术在5%内精确,转换器开关频率为800 kHz。为了证明技术在反馈调节中的技术的有效性,电流估计技术用于在SBC上实现平均电流模式和滞后电流模式控制。为了证明所提出的电流估计方案的有效性,它用于SBC的闭环控制,以验证动态响应,例如启动瞬态,加载的步骤变化,以及参考。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号