首页> 外文期刊>Power Electronics, IEEE Transactions on >Signal-Powered Low-Drop-Diode Equivalent Circuit for Full-Wave Bridge Rectifier
【24h】

Signal-Powered Low-Drop-Diode Equivalent Circuit for Full-Wave Bridge Rectifier

机译:用于全波桥式整流器的信号供电的低压降二极管等效电路

获取原文
获取原文并翻译 | 示例
           

摘要

Piezoelectric-device-based vibration energy harvesting requires a rectifier for conversion of input ac to usable dc form. Power loss due to diode drop in rectifier is a significant fraction of the already low levels of harvested power. The proposed circuit is a low-drop-diode equivalent, which mimics a diode using linear region-operated MOSFET. The proposed diode equivalent is powered directly from input signal and requires no additional power supply for its control. Power used by the control circuit is kept at a bare minimum to have an overall output power improvement. Diode equivalent was used to replace the four diodes in a full-wave bridge rectifier, which is the basic full-wave rectifier and is a part of the more advanced rectifiers like switch-only and bias-flip rectifiers. Simulation in 130-nm technology and experiment with discrete components show that a bridge rectifier with the proposed diode provides a 30–169% increase in output power extracted from piezoelectric device, as compared to a bridge rectifier with diode-connected MOSFETs. The bridge rectifier with the proposed diode can extract 90% of the maximum available power from an ideal piezoelectric device-bridge rectifier circuit. Setting aside the constraint of power loss, simulations indicate that diode drop as low as 10 mV at 38 $mu$ A can be achieved.
机译:基于压电设备的振动能量收集需要整流器,以将输入交流电转换为可用的直流电形式。由于整流器中的二极管压降而导致的功率损耗仅占已采集功率的低水平的很大一部分。所提出的电路是一个低压降二极管等效电路,它使用线性区域操作MOSFET来模拟二极管。拟议的二极管等效物直接由输入信号供电,并且不需要额外的电源来进行控制。控制电路使用的功率保持在最低限度,以提高整体输出功率。等效二极管被用来代替全波桥式整流器中的四个二极管,全波桥式整流器是基本的全波整流器,是更高级的整流器(如仅开关整流器和偏置翻转整流器)的一部分。在130纳米技术中的仿真和分立元件的实验表明,与采用二极管连接的MOSFET的桥式整流器相比,采用所建议的二极管的桥式整流器可使从压电器件提取的输出功率提高30–169%。带有建议二极管的桥式整流器可以从理想的压电器件-桥式整流器电路中提取最大可用功率的90%。撇开功率损耗的约束,仿真表明,在38μμA时,二极管压降可低至10mV。

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