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Analysis and Design of a Bidirectional High Step-up Active Clamp Flyback Converter for Dielectric Elastomer Actuator

机译:介电弹性体致动器双向高阶升压有源钳位反激转换器的分析与设计

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Dielectric elastomer (DE) is a kind of capacitive material that widely used in soft robots' applications as actuators. To obtain notable deformation, the drive voltage is typically up to several thousand volts and the charging charges must be removed to make it recover. In this paper, a high step-up capacitive load bi-directional flyback converter with active clamp technique is proposed. For the charging process, the effects of increasing high output voltage and parasitic elements in the circuit on the operation of the active clamp circuit are discussed in detail. Wide bandgap devices are used at the secondary side to reduce the parasitic capacitance. The proposed lossless active clamp circuit can absorb the energy in leakage inductance of transformer and achieve zero-voltage-switching (ZVS) over most of the charging process. Besides, the EMI problem caused by leakage inductance of conventional flyback converter is also solved. A prototype with 12V input and 1000V output has been fabricated and compared with a quasi-resonance flyback (QR flyback) at the same working condition. The tested results verify the good performance of the proposed ACF converter.
机译:介电弹性体(DE)是一种电容材料,广泛用于软机器人应用中作为执行器。为了获得显着的变形,驱动电压通常高达数千伏,并且必须去除充电电荷以使其恢复。本文提出了一种采用有源钳位技术的高升压电容负载双向反激转换器。对于充电过程,详细讨论了增加高输出电压和电路中的寄生元件对有源钳位电路工作的影响。在次级侧使用宽带隙器件以减小寄生电容。提出的无损有源钳位电路可以吸收变压器漏感中的能量,并在大多数充电过程中实现零电压开关(ZVS)。此外,还解决了传统反激式转换器的漏感引起的EMI问题。已制造出具有12V输入和1000V输出的原型,并将其与在相同工作条件下的准谐振反激(QR反激)进行了比较。测试结果验证了所提出的ACF转换器的良好性能。

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