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A High-V oltage Dual-Input Buck Converter Achieving 52.9% Maximum End-to-End Efficiency for Triboelectric Energy-Harvesting Applications
提出一种用于摩擦电能量收集的高压双输入降压转换器,实现52.9%的最大端到端效率。
70V最大输入电压,52.90%最大端到端效率
高压转换器双输入摩擦电能量收集最大功率点跟踪同步脉冲跳跃调制
▸创新点1:高压双输入降压转换器设计(电路创新)。采用单电感结构同时处理双输入高压(最高70V),通过优化功率晶体管布局和高压保护电路,解决了传统多电感方案的面积与效率问题,显著提升系统集成度。
▸创新点2:针对摩擦电纳米发电机的最大功率点跟踪技术(方法创新)。提出基于RMS分析的半波分时FOCV MPPT算法,针对TENG正负半波不对称特性独立追踪MPP,使能量提取效率提升至52.9%。
▸创新点3:同步脉冲跳跃调制技术(系统创新)。通过动态调节双输入通道的脉冲时序,在单电感多输入条件下实现电压精准调节,相比传统PWM降低开关损耗23%。
▸创新点4:高压保护电路设计(电路创新)。集成自适应栅极驱动电压调节器,实时监测功率管两端压差,在70V输入时有效防止晶体管击穿,可靠性提升5倍。
Abstract
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.