首页> 外文OA文献 >Integrated Switching DC-DC Converters with Hybrid Control Schemes
【2h】

Integrated Switching DC-DC Converters with Hybrid Control Schemes

机译:具有混合控制方案的集成开关DC-DC转换器

摘要

In the modern world of technology, highly sophisticated electronic systems pave the way for future's information technology breakthroughs. However, rapid growth on complexity and functions in such systems has also been a harbinger for the power increase. Power management techniques have thus been introduced to mitigate this urgent power crisis. Switching power converters are considered to be the best candidate due to their high efficiency and voltage conversion flexibility. Moreover, switching power converter systems are highly nonlinear, discontinuous in time, and variable. This makes it viable over a wide operating range, under various load and line disturbances. However, only one control scheme cannot optimize the whole system in different scenarios. Hybrid control schemes are thus employed in the power converters to operate jointly and seamlessly for performance optimization during start-up, steady state and dynamic voltage/load transient state.In this dissertation, three switching power converter topologies, along with different hybrid control schemes are studied. First, an integrated switching buck converter with a dual-mode control scheme is proposed. A pulse-train (PT) control, employing a combination of four pulse control patterns, is proposed to achieve optimal regulation performance. Meanwhile, a high-frequency pulse-width modulation (PWM) control is adopted to ensure low output ripples and avoid digital limit cycling. Second, an integrated buck-boost converter with a tri-mode digital control is presented. It employs adaptive step-up/down voltage conversion to enable a wide range of output voltage. This is beneficial to ever-increasing dynamic voltage scaling (DVS) enabled, modern power-efficient VLSI systems. DVS adaptively adjusts the supply voltage and operation frequency according to instantaneous power and performance demand, such that a system is constantly operated at the lowest possible power level without compromising its performance. Third, a digital integrated single-inductor multiple-output (SIMO) converter, tailored for DVS-enabled multicore systems is addressed. With a multi-mode control algorithm, DVS tracking speed and line/load regulation are significantly improved, while the converter still retains low cross regulation.All three integrated CMOS DC-DC converters have been designed and fabricated successfully, demonstrating the techniques proposed in this research. The measurements results illustrate superior line and load regulation performances and dynamic response in all these designs.
机译:在现代技术世界中,高度复杂的电子系统为未来的信息技术突破铺平了道路。但是,在这样的系统中,复杂性和功能的快速增长也预示着功率的增加。因此,已经引入了电源管理技术来缓解这种紧急电源危机。开关电源转换器具有高效率和电压转换灵活性,因此被认为是最佳选择。而且,开关功率转换器系统是高度非线性的,时间上不连续的并且是可变的。这使其在各种负载和线路干扰下的宽工作范围内都可行。但是,只有一种控制方案无法在不同情况下优化整个系统。因此,在功率变换器中采用了混合控制方案,以便在启动,稳态和动态电压/负载瞬态期间共同无缝地进行性能优化。本文研究了三种开关功率变换器拓扑结构以及不同的混合控制方案。研究。首先,提出了一种具有双模式控制方案的集成开关降压转换器。为了实现最佳的调节性能,提出了采用四个脉冲控制模式的组合的脉冲串(PT)控制。同时,采用高频脉宽调制(PWM)控制以确保低输出纹波并避免数字极限循环。其次,提出了具有三模式数字控制的集成降压-升压转换器。它采用自适应升压/降压转换,以实现宽范围的输出电压。这对于不断增加启用动态电压缩放(DVS)的现代节能VLSI系统是有好处的。 DVS根据瞬时功率和性能需求自适应地调整电源电压和工作频率,从而使系统始终以最低可能的功率水平运行,而不会影响其性能。第三,解决了为集成了DVS的多核系统量身定制的数字集成单电感多输出(SIMO)转换器。借助多模式控制算法,DVS跟踪速度和线路/负载调节率显着提高,而转换器仍保持较低的交叉调节率。所有三个集成的CMOS DC-DC转换器均已成功设计和制造,证明了本文提出的技术研究。测量结果说明了所有这些设计均具有出色的线路和负载调节性能以及动态响应。

著录项

  • 作者

    Luo Feng;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 EN
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

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