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Modeling self-priming circuits for dielectric elastomer generators towards optimum voltage boost

机译:为介电弹性体发电机的自吸电路建模,以实现最佳升压

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摘要

One of the main challenges for the practical implementation of dielectric elastomer generators (DEGs) is supplying high voltages. To address this issue, systems using self-priming circuits (SPCs) — which exploit the DEG voltage swing to increase its supplied voltage — have been used with success. A self-priming circuit consists of a charge pump implemented in parallel with the DEG circuit. At each energy harvesting cycle, the DEG receives a low voltage input and, through an almost constant charge cycle, generates a high voltage output. SPCs receive the high voltage output at the end of the energy harvesting cycle and supply it back as input for the following cycle, using the DEG as a voltage multiplier element. Although rules for designing self-priming circuits for dielectric elastomer generators exist, they have been obtained from intuitive observation of simulation results and lack a solid theoretical foundation. Here we report the development of a mathematical model to predict voltage boost using self-priming circuits. The voltage on the DEG attached to the SPC is described as a function of its initial conditions, circuit parameters/layout, and the DEG capacitance. Our mathematical model has been validated on an existing DEG implementation from the literature, and successfully predicts the voltage boost for each cycle. Furthermore, it allows us to understand the conditions for the boost to exist, and obtain the design rules that maximize the voltage boost.
机译:实际应用介电弹性体发生器(DEG)的主要挑战之一是提供高电压。为了解决这个问题,已经成功使用了使用自吸电路(SPC)的系统-利用DEG电压摆幅来增加其供电电压。自吸电路由与DEG电路并联实现的电荷泵组成。在每个能量收集周期,DEG都会接收一个低压输入,并在几乎恒定的充电周期内产生一个高压输出。 SPC在能量收集周期结束时接收高压输出,并使用DEG作为电压倍增元件,将其作为下一个周期的输入提供回。尽管存在设计介电弹性体发电机自吸电路的规则,但这些规则是从直观观察仿真结果获得的,并且缺乏扎实的理论基础。在这里,我们报告了使用自吸电路预测电压升压的数学模型的发展情况。描述了连接到SPC的DEG上的电压是其初始条件,电路参数/布局和DEG电容的函数。我们的数学模型已经根据文献中的现有DEG实现进行了验证,并成功预测了每个周期的升压。此外,它使我们能够了解升压存在的条件,并获得使升压最大化的设计规则。

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