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Low voltage driven dielectric electro active polymer actuator with integrated piezoelectric transformer based driver

机译:具有集成压电变压器驱动器的低压驱动介电电活性聚合物致动器

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Today's Dielectric Electro Active Polymer (DEAP) actuators utilize high voltage (HV) in the range of kilo volts to fully stress the actuator. The requirement of HV is a drawback for the general use in the industry due to safety concerns and HV regulations. In order to avoid the HV interface to DEAP actuators, a low voltage solution is developed by integrating the driver electronic into a 110 mm tall cylindrical coreless Push InLastor actuator. To decrease the size of the driver, a piezoelectric transformer (PT) based solution is utilized. The PT is essentially an improved Rosen type PT with interleaved sections. Furthermore, the PT is optimized for an input voltage of 24 V with a gain high enough to achieve a DEAP voltage of 2.5 kV. The PT is simulated and verified through measurements on a working prototype. With the adapted hysteretic based control system; output voltage wave forms of both impulse response and sinusoidal shapes up to 2.5 kV are demonstrated. The control system, together with a carefully designed HV output stage, contributes to low power consumption at a static DEAP force. The HV stage consists of a HV measurement circuit and a triple diode voltage doubler optimized for low leakage current drawn from the DEAP. As a result, a 95 mm x 13 mm x 7 mm driver is integrated in a 110 mm x 32 mm actuator, forming a low voltage interfaced DEAP actuator.
机译:当今的介电电活性聚合物(DEAP)执行器利用千伏范围内的高压(HV)来完全施加压力。出于对安全性和HV法规的考虑,对HV的要求是该行业普遍使用的缺点。为了避免与DEAP执行器的HV接口,通过将驱动器电子装置集成到110毫米高的圆柱形无芯Push InLastor执行器中,开发了一种低压解决方案。为了减小驱动器的尺寸,利用了基于压电变压器(PT)的解决方案。 PT本质上是具有交错部分的改进型Rosen型PT。此外,PT已针对24 V的输入电压进行了优化,其增益足以实现2.5 kV的DEAP电压。通过在工作原型上进行测量来模拟和验证PT。带有自适应的基于滞回的控制系统;演示了高达2.5 kV的脉冲响应和正弦波形的输出电压波形。控制系统与精心设计的HV输出级一起,有助于在静态DEAP力下降低功耗。 HV级由一个HV测量电路和一个三极管倍压器组成,该倍压器针对从DEAP汲取的低泄漏电流进行了优化。结果,一个95 mm x 13 mm x 7 mm的驱动器集成在110 mm x 32 mm的执行器中,形成了低压接口的DEAP执行器。

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