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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >Capacitive Energy Conversion With Circuits Implementing a Rectangular Charge-Voltage Cycle—Part 1: Analysis of the Electrical Domain
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Capacitive Energy Conversion With Circuits Implementing a Rectangular Charge-Voltage Cycle—Part 1: Analysis of the Electrical Domain

机译:电路实现矩形电荷-电压循环的电容式能量转换—第1部分:电气域分析

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Capacitive kinetic energy harvesters (KEH) employ conditioning circuits which achieve a dynamic biasing of the transducer's variable capacitor. This paper, composed of two articles Part 1 and Part 2, proposes a unified theory describing electrical and electromechanical properties of an important and wide class of conditioning circuits: those implementing a rectangular charge-voltage cycle. The article Part 1 introduces a basic configuration of conditioning circuit implementing an ideal rectangular QV cycle, and discusses its known practical implementations: the Roundy charge pump with different flyback mechanisms, and configurations based on the Bennet's doubler. In Part 1, the analysis is done in the electrical domain, without accounting for electromechanical coupling, while in Part 2, the full electromechanical system is analyzed. An optimization approach common to all configurations is proposed. A comparison is made between different topologies and operation modes, based on the maximal energy converted in one cycle under similar electrical and mechanical conditions. The last section discusses practical implementation of circuits with smart and adaptive behavior, and presents experimental results obtained with state-of-the art MEMS capacitive KEH devices.
机译:电容动能收集器(KEH)采用调节电路,可实现传感器可变电容器的动态偏置。本文由第1部分和第2部分两篇文章组成,提出了一个统一的理论,描述了重要且种类繁多的调节电路的电气和机电特性:实现矩形充电电压循环的那些。第1部分的文章介绍了实现理想矩形QV周期的调节电路的基本配置,并讨论了其已知的实际实现:具有不同反激机制的Roundy电荷泵,以及基于Bennet倍增器的配置。在第1部分中,在电气领域中进行了分析,而没有考虑机电耦合,而在第2部分中,则分析了完整的机电系统。提出了所有配置通用的优化方法。基于在相似的电气和机械条件下一个周期内转换的最大能量,对不同的拓扑和操作模式进行了比较。最后一部分讨论了具有智能和自适应行为的电路的实际实现,并介绍了使用最新的MEMS电容式KEH器件获得的实验结果。

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