Low-voltage broadband piezoelectric vibration energy harvesting enabled by a highly-coupled harvester and tunable PSSHI circuit

被引:4
|
作者
Zhao, Sheng [1 ]
Radhakrishna, Ujwal [2 ]
Lang, Jeffrey H. [3 ]
Buss, Dennis [2 ]
机构
[1] Tianjin Univ, Sch Microelect, Tianjin 300072, Peoples R China
[2] Texas Instruments Inc, 12500 TI Blvd, Dallas, TX 75243 USA
[3] MIT, EECS Dept, 77 Massachusetts Ave, Cambridge, MA 02139 USA
关键词
piezoelectric vibration energy harvesting; phase shift; electromechanical coupling; synchronized switching harvesting on an inductor; active rectifier; INTERFACE CIRCUIT; RECTIFIER; DESIGN; POWER;
D O I
10.1088/1361-665X/ac3402
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
This paper presents a system-level design approach for widening the bandwidth and lowering the operating voltage of a piezoelectric vibration energy harvesting system (PVEHS). The proposed strategy involves co-optimization of the two constituent parts: (1) a highly-coupled piezoelectric vibration energy harvesting device (PVEHD) and (2) a phase-shift tunable parallel-SSHI (PS-PSSHI) interface power-electronic circuit. First, we analyze the interaction between them to achieve an overall reduction of system voltage and to widen bandwidth. Next, a co-designed system is experimentally demonstrated to validate the analysis. The implemented PVEHS consists of (i) a customized PVEHD designed for high electromechanical coupling and well-separated short-circuit (f (SC)) and open-circuit (f (OC)) resonances, and (ii) a tunable PS-PSSHI circuit which has an active rectification with low voltage drop to increase system efficiency. The system achieves an output power of 148 mu W with a bandwidth of 81 Hz, an increase of 337% compared to conventional full-bridge rectifier. In addition, the system rectification voltage is lowered by 30% which makes it viable to power low-voltage Internet-of-Things sensor nodes.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] Performance of beam-type piezoelectric vibration energy harvester based on ZnO film fabrication and improved energy harvesting circuit
    高珊
    张重扬
    敖宏瑞
    姜洪源
    Chinese Physics B, 2020, 29 (08) : 590 - 598
  • [32] A NOVEL DESIGN OF BROADBAND PIEZOELECTRIC VIBRATION ENERGY HARVESTER WITH CROSS-COUPLED L-SHAPED STRUCTURE
    Sun, Shilong
    Zheng, Yulong
    Zhang, Xiao
    PROCEEDINGS OF ASME 2021 CONFERENCE ON SMART MATERIALS, ADAPTIVE STRUCTURES AND INTELLIGENT SYSTEMS (SMASIS2021), 2021,
  • [33] A novel low-frequency broadband piezoelectric energy harvester combined with a negative stiffness vibration isolator
    Cao, Dongxing
    Guo, Xiangying
    Hu, Wenhua
    JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 2019, 30 (07) : 1105 - 1114
  • [34] Hybrid magnetic coupling and impact enhanced low, adjustable and broadband piezoelectric vibration energy harvesting
    Liu, Shuai
    Wang, Lu
    Wang, Qian
    Fang, Xudong
    Li, Zhikang
    Zhao, Libo
    Yang, Ping
    Lin, Qijing
    Ryutaro, Maeda
    Jiang, Zhuangde
    SENSORS AND ACTUATORS A-PHYSICAL, 2023, 358
  • [35] Resonant Rectifier ICs for Piezoelectric Energy Harvesting Using Low-Voltage Drop Diode Equivalents
    Din, Amad Ud
    Chandrathna, Seneke Chamith
    Lee, Jong-Wook
    SENSORS, 2017, 17 (04)
  • [36] A Rectifier-Less AC-DC Interface Circuit for Ambient Energy Harvesting From Low-Voltage Piezoelectric Transducer Array
    Shareef, Arish
    Goh, Wang Ling
    Narasimalu, Srikanth
    Gao, Yuan
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2019, 34 (02) : 1446 - 1457
  • [37] Modeling and analysis of magnetically coupled piezoelectric dual beam with an annular potential energy function for broadband vibration energy harvesting
    Nan Shao
    Zhuo Chen
    Xian Wang
    Chengxin Zhang
    Jiawen Xu
    Xiaosu Xu
    Ruqiang Yan
    Nonlinear Dynamics, 2023, 111 : 11911 - 11937
  • [38] Modeling and analysis of magnetically coupled piezoelectric dual beam with an annular potential energy function for broadband vibration energy harvesting
    Shao, Nan
    Chen, Zhuo
    Wang, Xian
    Zhang, Chengxin
    Xu, Jiawen
    Xu, Xiaosu
    Yan, Ruqiang
    NONLINEAR DYNAMICS, 2023, 111 (13) : 11911 - 11937
  • [39] A 300mV Low-voltage start-up circuit for energy harvesting systems
    Mendez-Delgado, Edgardo
    Serrano, Guillermo J.
    2011 IEEE INTERNATIONAL SYMPOSIUM ON CIRCUITS AND SYSTEMS (ISCAS), 2011, : 829 - 832
  • [40] Analysis of self-oscillating switched-mode circuit for low-voltage energy harvesting
    Chini, A.
    ELECTRONICS LETTERS, 2013, 49 (15) : 955 - 956