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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >Maximum Effectiveness of Electrostatic Energy Harvesters When Coupled to Interface Circuits
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Maximum Effectiveness of Electrostatic Energy Harvesters When Coupled to Interface Circuits

机译:静电能量收集器耦合到接口电路时的最大效率

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摘要

Many motion driven energy harvesting devices using the electrostatic force have been demonstrated, with many of them using a moving plate, variable capacitor structure. The output power of all reported electrostatic energy harvester systems that interface to an energy storage element is at least one and sometimes more than two orders of magnitude below the theoretical maximum limit for the given device dimensions and driving motion. This paper shows that the theoretical limits on the harvester performance when only the coupling effectiveness is considered are misleading and that when the transducer and its power processor interface are combined, further important limitations apply which significantly reduce the theoretical maximum power. The combined analysis rests on a parameterization of the inherent and parasitic properties of key components, notably the power semiconductor devices. Although scaling laws in general favour electrostatic force solutions over electromagnetic force solutions at micro scale, the specific compromises encountered with the interface circuits for electrostatic generators means that their range of applications needs to be re-examined.
机译:已经证明了许多使用静电力的运动驱动能量收集装置,其中许多使用移动板式可变电容器结构。对于给定的设备尺寸和驱动运动,所有报告的与能量存储元件接口的静电能量收集器系统的输出功率都比理论上的最大极限低至少一个数量级,有时还比其大两个数量级。本文表明,仅考虑耦合效率时,对收割机性能的理论极限是令人误解的,并且当换能器及其功率处理器接口组合在一起时,还会出现进一步的重要限制,从而显着降低理论上的最大功率。组合分析取决于关键组件(尤其是功率半导体器件)的固有和寄生特性的参数化。尽管缩放定律通常在微观尺度上倾向于静电力解而不是电磁力解,但是静电发生器的接口电路遇到的特殊折衷意味着需要重新检查其应用范围。

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