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A High-Voltage Dual-Input Buck Converter Achieving 52.9% Maximum End-to-End Efficiency for Triboelectric Energy-Harvesting Applications

机译:高压双输入降压转换器实现52.9%的摩擦能源收集应用的最高端到端效率52.9%

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This article presents a high-voltage (HV) dual-input (DI) buck converter for triboelectric (TE) energy-harvesting applications with a maximum power point tracking (MPPT) for TE nanogenerators (TENGs). An important characteristic of TENGs is their ac output voltage with different positive and negative peak voltages; thus, the proposed system separately harvests each half-wave (HW) with a dual-output rectifier for better extraction efficiency. Furthermore, given the similarity between the electrical models of piezoelectric transducers and TENGs, a root-mean-square MPP analysis is proposed with a fractional open-circuit voltage (FOCV) method according to each HW from the TENGs. The HV DI buck converter regulates two HVs from the TENGs for MPPT with a single inductor. The proposed HV protector prevents the breakdown of the power transistor due to HV stress. To regulate the two input voltages of the buck converter at each MPP, a synchronous pulse-skipping modulation technique is implemented in the system. The entire system is fabricated in a 180-nm BCDMOS process with an active area of 2.482 mm(2). The maximum input voltage of the HV DI buck converter is 70 V, and the maximum end-to-end efficiency of 52.90% is achieved with human skin-based and polytetrafluoroethylene-based TENGs.
机译:本文介绍了一种高压(HV)双输入(DI)降压转换器,用于摩擦(TE)能量收集应用,具有用于TE纳米液(Tengs)的最大功率点跟踪(MPPT)。 Tengs的一个重要特征是其交流输出电压,具有不同的正负峰值电压;因此,所提出的系统用双输出整流器分别收集每个半波(HW),以便提高提取效率。此外,鉴于压电换能器和TENG的电模型之间的相似性,提出了根据来自TENGS的每个HW的分数开路电压(FOCV)方法提出了根平均方形MPP分析。 HV DI降压转换器通过单个电感调节来自Tengs的两个高速HVS。所提出的HV保护器防止由于HV应力引起的功率晶体管的故障。为了在每个MPP处调节降压转换器的两个输入电压,在系统中实现了同步脉冲跳过调制技术。整个系统在180nm BCDMOS工艺中制造,有源面积为2.482mm(2)。 HV DI降压转换器的最大输入电压为70V,用人皮肤和基于聚四氟乙烯的Tengs实现52.90%的最大端到端效率。

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