该文提出一种基于高自由度电压增益单元(high degrees of freedom voltage multiplier cell,HD-VMC)的大容量高增益DC/DC变换器,具有输入输出增益高、开关器件电压电流应力低且可调、输入相数可自由扩展且自动均流的优点。上述特性使...该文提出一种基于高自由度电压增益单元(high degrees of freedom voltage multiplier cell,HD-VMC)的大容量高增益DC/DC变换器,具有输入输出增益高、开关器件电压电流应力低且可调、输入相数可自由扩展且自动均流的优点。上述特性使得所提变换器较适用于大容量高增益直流变换场合,如海上风电直流输电系统中。文中首先对变换器的拓扑构建思路进行阐述,然后以4相输入12个HD-VMCs的变换器为例分析该变换器的工作原理及性能特点,最后通过2.5MW的仿真模型和800W的实验样机验证理论分析的正确性。展开更多
This paper presented an automatic gain control (AGC) circuit suitable for FM/cw ladar. The proposed architecture was based on two-stage variable gain amplifier (VGA) chain with a novel DC offset canceller circuit,...This paper presented an automatic gain control (AGC) circuit suitable for FM/cw ladar. The proposed architecture was based on two-stage variable gain amplifier (VGA) chain with a novel DC offset canceller circuit, which contained an improved Gilbert cell and a Gm-C feedback loop. To keep the VGA with a linearity in dB characteristic, an improved exponential gain control circuit was introduced. The AGC was implemented in 0.18 gm standard CMOS process. Simulation and measurement results verified that its gain ranged from -20 dB to 30 dB, and band- width ranged from 100 kHz to 10 MHz. Its power consumption was 19.8 mW under a voltage supply of 3.3 V.展开更多
文摘该文提出一种基于高自由度电压增益单元(high degrees of freedom voltage multiplier cell,HD-VMC)的大容量高增益DC/DC变换器,具有输入输出增益高、开关器件电压电流应力低且可调、输入相数可自由扩展且自动均流的优点。上述特性使得所提变换器较适用于大容量高增益直流变换场合,如海上风电直流输电系统中。文中首先对变换器的拓扑构建思路进行阐述,然后以4相输入12个HD-VMCs的变换器为例分析该变换器的工作原理及性能特点,最后通过2.5MW的仿真模型和800W的实验样机验证理论分析的正确性。
基金Supported by the National Science and Technology Major Project of the Ministry of Science and Technology of China(No.2012ZX03004008)
文摘This paper presented an automatic gain control (AGC) circuit suitable for FM/cw ladar. The proposed architecture was based on two-stage variable gain amplifier (VGA) chain with a novel DC offset canceller circuit, which contained an improved Gilbert cell and a Gm-C feedback loop. To keep the VGA with a linearity in dB characteristic, an improved exponential gain control circuit was introduced. The AGC was implemented in 0.18 gm standard CMOS process. Simulation and measurement results verified that its gain ranged from -20 dB to 30 dB, and band- width ranged from 100 kHz to 10 MHz. Its power consumption was 19.8 mW under a voltage supply of 3.3 V.