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Modeling and control of a low power electronics circuit for energy harvesting applications

机译:用于能量收集应用的低功率电子电路的建模和控制

摘要

In this thesis, we propose a new low power electronics converter for energy harvesting applications. The proposed converter exhibits a resistive input behavior which can be adjusted by using a controller. Furthermore, a self-powered MOSFET gate drive circuit is designed and tested that obtains its power from the input power source. These characteristics offer a huge advantage in dealing with harvestable sources of energy. The theoretical analysis of the circuit is done by deriving the mathematical formulas describing the behavior of the circuit, the extracted power, the harvested power in the battery, and the efficiency of the circuit. All the derived formulas and the theoretical analysis of the circuit are verified by simulation results using Matlab/Simulink environment and Ltspice. A vibrational piezoelectric transducer was used along with a PI controller to verify the theoretical and simulation results. The self-powered and low power consumption characteristics of the circuit are demonstrated in another experiment.
机译:在本文中,我们提出了一种用于能量收集应用的新型低功耗电子转换器。提出的转换器具有电阻输入特性,可以通过使用控制器来调节。此外,设计并测试了自供电的MOSFET栅极驱动电路,该电路从输入电源获取功率。这些特性在处理可收获能源方面具有巨大优势。通过推导描述电路行为,提取功率,电池中收集的功率以及电路效率的数学公式,可以对电路进行理论分析。使用Matlab / Simulink环境和Ltspice通过仿真结果验证了所有推导的公式和电路的理论分析。振动压电传感器与PI控制器一起使用以验证理论和仿真结果。在另一个实验中证明了该电路的自供电和低功耗特性。

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  • 作者

    Faghihi S.Shahrzad;

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  • 年度 2011
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