The future of tire energy: a novel one-end cap structure for sustainable energy harvesting

被引:5
作者
Al-Najati, Ibrahim Ali [1 ]
Jasim, Abbas F. [2 ]
Chan, Keng Wai [1 ]
Pung, Swee-Yong [3 ]
机构
[1] Univ Sains Malaysia, Sch Mech Engn, Engn Campus, Nibong Tebal 14300, Penang, Malaysia
[2] Mustansiriyah Univ, Dept Highway & Transportat Engn, Baghdad, Iraq
[3] Univ Sains Malaysia, Sch Mat & Mineral Resources Engn, Engn Campus, Nibong Tebal 14300, Penang, Malaysia
关键词
TSPEH; Piezoelectric energy harvesting; Tire strain; Sustainable energy; Smart tire; TPMS; DESIGN; SYSTEM;
D O I
10.1007/s40243-023-00254-3
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Piezoelectric energy harvesting is gaining popularity as an eco-friendly solution to harvest energy from tire deformation for tire condition monitoring systems in vehicles. Traditional piezoelectric harvesters, such as cymbal and bridge structures, cannot be used inside tires due to their design limitations. The wider adoption of renewable energy sources into the energy system is increasing rapidly, reflecting a global attraction toward the utilization of sustainable power sources (Aljendy et al. in Int J Power Energy Convers 12(4): 314-337, 2021; Yesner et al. in Evaluation of a novel piezoelectric bridge transducer. In: 2017 Joint IEEE International Symposium on the Applications of Ferroelectric (ISAF)/International Workshop on Acoustic Transduction Materials and Devices (IWATMD)/Piezoresponse Force Microscopy (PFM). IEEE, 2017). The growing interest in capturing energy from tire deformation for Tire Pressure Monitoring Systems (TPMS) aligns with this trend, providing a promising and self-sustaining alternative to traditional battery-powered systems. This study presents a novel one-end cap tire strain piezoelectric energy harvester (TSPEH) that can be used efficiently and reliably inside a tire. The interaction between the tire and energy harvester was analyzed using a decoupled modeling approach, which showed that stress concentration occurred along the edge of the end cap. The TSPEH generated a maximum voltage of 768 V under 2 MPa of load, resulting in an energy output of 32.645 J/rev under 1 MPa. The computational findings of this study were consistent with previous experimental investigations, confirming the reliability of the numerical simulations. The results suggest that the one-end cap structure can be an effective energy harvester inside vehicle tires, providing a valuable solution for utilizing one-end cap structures in high-deformation environments such as vehicle tires.
引用
收藏
页码:181 / 208
页数:28
相关论文
共 59 条
[1]  
Al-Najati I., 2022, IJPEDS, V13, P444, DOI [10.11591/ijpeds.v13.i1, DOI 10.11591/IJPEDS.V13.I1.PP444-459]
[2]  
Alibaba, 2021, PZT PRODUCT DETAIL A
[3]  
ALINIAGERDROUDB.H, 2019, IEEE POWER ENERG CON, P1
[4]   A novel optimisation method for optimal integration of the hybrid distributed generation with FACTS device: A practical case study [J].
Aljendy R. ;
Nasyrov R. ;
Ebraheem T. ;
Abdelaziz A.Y. ;
Diab A.A.Z. .
International Journal of Power and Energy Conversion, 2021, 12 (04) :314-337
[5]  
Allamy W.K.J., 2021, AIP C P, V2338
[6]  
[Anonymous], 2003, Energy scavenging for wireless sensor nodes with a focus on vibration to electricity conversion
[7]   Risk management of supply chain disruptions: An epidemic modeling approach [J].
Berger, Niklas ;
Schulze-Schwering, Stefan ;
Long, Elisa ;
Spinler, Stefan .
EUROPEAN JOURNAL OF OPERATIONAL RESEARCH, 2023, 304 (03) :1036-1051
[8]  
Bochuang Ceramic I.N.C., 2021, TYPICAL VALUES STAND
[9]   Energy Harvesting Technologies for Tire Pressure Monitoring Systems [J].
Bowen, C. R. ;
Arafa, M. H. .
ADVANCED ENERGY MATERIALS, 2015, 5 (07)
[10]   Energy output of piezoelectric transducers and pavements under simulated traffic load [J].
Cao, Yangsen ;
Sha, Aimin ;
Liu, Zhuangzhuang ;
Li, Jiarong ;
Jiang, Wei .
JOURNAL OF CLEANER PRODUCTION, 2021, 279