Size effect of piezoelectric energy harvester for road with high efficiency electrical properties

[1]  Chaohui Wang,et al.  Design and performance of piezoelectric energy output promotion system for road , 2022, Renewable Energy.

[2]  Chaohui Wang,et al.  Low-temperature mechanical properties of polyurethane-modified waterborne epoxy resin for pavement coating , 2022, International Journal of Pavement Engineering.

[3]  Alexander Q. Gilbert,et al.  Nuclear power and renewable energy are both associated with national decarbonization , 2022, Nature Energy.

[4]  X. Yao,et al.  Enhanced mechanical properties and excellent electrical properties of PZT piezoelectric ceramics modified by YSZ , 2022, Materials Letters.

[5]  Jye-Chyi Lu,et al.  Pricing, capacity and financing policies for investment of renewable energy generations , 2021 .

[6]  Wang Shuai,et al.  Design and testing of road piezoelectric power generation device based on traffic environment applicability , 2021 .

[7]  Liu Zhiming,et al.  Experimental study on fatigue degradation of piezoelectric energy harvesters under equivalent traffic load conditions , 2021 .

[8]  Zhiwei Gao,et al.  Effect evaluation of road piezoelectric micro-energy collection-storage system based on laboratory and on-site tests , 2021 .

[9]  Qingsong Xu,et al.  Design and Development of a Novel Two-Directional Energy Harvester With Single Piezoelectric Stack , 2021, IEEE Transactions on Industrial Electronics.

[10]  Kenji Watanabe,et al.  Stacking-engineered ferroelectricity in bilayer boron nitride , 2020, Science.

[11]  Wang Shuai,et al.  Design and performance of a cantilever piezoelectric power generation device for real-time road safety warnings , 2020 .

[12]  Huayan Pu,et al.  Harnessing energy from spring suspension systems with a compressive-mode high-power-density piezoelectric transducer , 2020 .

[13]  Chaohui Wang,et al.  Structure simulation optimization and test verification of piezoelectric energy harvester device for road , 2020 .

[14]  Jianqiao Sun,et al.  A high density piezoelectric energy harvesting device from highway traffic – Design analysis and laboratory validation , 2020 .

[15]  Wang Shuai,et al.  Development and performance of a piezoelectric energy conversion structure applied in pavement , 2020 .

[16]  Zhifei Shi,et al.  Piezoelectric energy harvesting from vehicles induced bending deformation in pavements considering the arrangement of harvesters , 2020 .

[17]  Mohamadreza Khalili,et al.  Electro-mechanical characterization of a piezoelectric energy harvester , 2019, Applied Energy.

[18]  Zhiwei Gao,et al.  Applicability evaluation of embedded piezoelectric energy harvester applied in pavement structures , 2019, Applied Energy.

[19]  Liwei Quan,et al.  Piezoelectric Energy Harvesting From Roadways Based on Pavement Compatible Package , 2019, Journal of Applied Mechanics.

[20]  Yonggang Huang,et al.  Three-dimensional piezoelectric polymer microsystems for vibrational energy harvesting, robotic interfaces and biomedical implants , 2019, Nature Electronics.

[21]  Zhiwei Gao,et al.  Preparation and performance research of stacked piezoelectric energy-harvesting units for pavements , 2019, Energy and Buildings.

[22]  Bryan M. Gamboa,et al.  Piezoelectric stacked transducer evaluation and comparison for optimized energy harvesting , 2018, Ferroelectrics.

[23]  G. Ding,et al.  Effect of subgrade on piezoelectric energy harvesting under traffic loads , 2018 .

[24]  Wang Shuai,et al.  Fabrication and performance of a power generation device based on stacked piezoelectric energy-harvesting units for pavements , 2018 .

[25]  Arturo Montoya,et al.  Theoretical and Experimental Evaluation of Two Roadway Piezoelectric-Based Energy Harvesting Prototypes , 2018 .

[26]  Ahmad Safari,et al.  Optimized design of layered bridge transducer for piezoelectric energy harvesting from roadway , 2017 .

[27]  Bin Zhou,et al.  Investigation on the factors influencing the performance of piezoelectric energy harvester , 2017 .

[28]  Arturo Montoya,et al.  Energy Harvesting from Roadways , 2016, ANT/SEIT.