标题: 应用在全载范围高效率直流对直流升压转换器的电流模式合成控制技术
Current-Mode Synthetic Control (CSC) Technique for High Efficiency DC-DC Boost Converters Over a Wide Load Range
作者: 陈逸群
Chen, Yi-Chun
陈科宏
Chen, Ke-Horng
电控工程研究所
关键字: 迟滞电流调变控制;暂态响应;波宽调变;modulated hysteretic current control;transient response;pulse frequency modulation
公开日期: 2010
摘要: 可携式电子产品如手机、膝上型电脑和不同的多媒体设备使用电池作为主要能源。为了要延长电池寿命,携带式的装置在待机时会进入睡眠模式,因此需要快速唤醒时间。所以快速的暂态响应和全载范围维持高效率是常被要求的规格。
近年来,合成波调变机制常被用来增加系统的噪音余度,使系统近乎一个无杂讯的涟波且系统的负载稳压也可以藉由误差放大器加入而提升。但是他导致系统包含了两个极点而需要较复杂的补偿方式。所以,本论文提出一个包含电流资讯的技术来简化补偿方式。
本论文提出一个运用在升压转换器的电流模式合成控制技术(current-mode synthetic control technique)可以加速升压转换器的暂态响应速度并在全载范围维持高的转换效率。这个技术类似于电流模式控制可以达到高的负载稳压而且简化电路不需要额外斜率补偿机制。除此之外,由于类似迟滞电流模式控制,系统暂态响应可以提升。轻载时,由于与负载相关的频率可达到高转换效率。实验结果显示,载变化在0A到400mA时,输出电压的涟波可以维持在小于50mV且在负载在10mA时效率可以达到90%以上。
Portable electronics products such as cellular phones, laptops and diverse multimedia equipments use battery as the main power source. To extend battery life, portable devices stay in sleep mode with a very low static current but require a fast wake-up to reach the normal mode with a much higher operational current. Therefore, the suitable converter for the portable devices needs fast transient response from the standby mode to the normal mode, meanwhile, high efficiency is guaranteed over a wide range.
Recently, the synthetic-ripple modulator (SRM) is proposed to improve the noise immunity through the synthetic current ripple, which is a nearly noise-free ripple signal. The accuracy also can be enhanced by the error amplifier. But it causes the system contains two poles and needs a complex compensation network. Therefore, this paper presents a current-mode synthetic control (CSC) technique to include the current information to simplify the compensation network.
The proposed current-mode synthetic control (CSC) technique in the design of boost converters can improve the transient response time and maintain high conversion efficiency over a wide load range. The CSC technique has high accuracy similar to the current-mode control and doesn’t need the slope compensation for simplicity. Besides, the transient response is also improved due to the current-mode hysteresis control. The load-dependent switching frequency at light loads results in high power conversion efficiency. Experimental results show that the output voltage ripple can be kept smaller than 50mV over a wide load current range from 0mA to 400mA with power conversion efficiency higher than 90% at load current of 10mA.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079712580
http://hdl.handle.net/11536/44473
显示于类别:Thesis


文件中的档案:

  1. 258001.pdf

If it is a zip file, please download the file and unzip it, then open index.html in a browser to view the full text content.