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A mathematical model for an integrated self priming dielectric elastomer generator

机译:集成自动喷射介电弹性体发生器的数学模型

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Dielectric Elastomer Generators (DEG) can capture energy from natural movement sources such as wind, the tides and human locomotion. The harvested energy can be used for low power devices such as wireless sensor nodes and wearable electronics. A challenge for low power DEG is overcoming the losses associated with charge management. A circuit which can do this exists: the Self Priming Circuit (SPC) which consists of diodes and capacitors. The SPC is connected in parallel to the DEG where it transfers charge onto/off the DEG based on changes in the DEG capacitance. Modelling and experimental validation of the SPC have been performed in the past, allowing design and implementation of effective SPCs which match a particular DEG. While the SPC is effective, it is still an external circuit which adds additional mass and cost to the DEG. By splitting the DEG into separate capacitors and using them to build an SPC, the Integrated SPC (I-SPC) can be realized. This reduces the components required to build a SPC/DEG and improves the performance. This paper presents a mathematical model with experimental data of a first order I-SPC. Additionally, comparisons between the SPC and I-SPC are drawn.
机译:介电弹性体发生器(DEG)可以从诸如风,潮汐和人类运动的自然运动来源捕获能量。收获的能量可用于低功率器件,例如无线传感器节点和可穿戴电子设备。低功耗DEG的挑战克服了与充电管理相关的损失。可以实现这一点的电路:由二极管和电容器组成的自引导电路(SPC)。 SPC并联连接到DEG,其中基于DEG电容的变化将电荷传递到/ OFF。 SPC的建模和实验验证已在过去进行,允许设计和实现与特定DEG匹配的有效SPC。虽然SPC是有效的,但它仍然是一个外部电路,其增加了额外的质量和成本。通过将DEG分成单独的电容器并使用它们构建SPC,可以实现集成的SPC(I-SPC)。这减少了构建SPC / DEG所需的组件,并提高性能。本文介绍了具有一阶I-SPC的实验数据的数学模型。此外,绘制了SPC和I-SPC之间的比较。

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