Engineering

Engineering

ISSN Print: 1947-3931
ISSN Online: 1947-394X
www.scirp.org/journal/eng
E-mail: eng@scirp.org
"Design, Modeling and Analysis of Implementing a Multilayer Piezoelectric Vibration Energy Harvesting Mechanism in the Vehicle Suspension"
written by Wiwiek Hendrowati, Harus Laksana Guntur, I. Nyoman Sutantra,
published by Engineering, Vol.4 No.11, 2012
has been cited by the following article(s):
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[1] Comparative Analysis of Energy Harvesting Methods in Transportation
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[2] A self-powered bridge health monitoring system driven by elastic origami triboelectric nanogenerator
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[3] A review on piezoelectric energy harvesting
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[4] Pemodelan Sistem Suspensi Pasif dan Semi Aktif Regeneratif dengan Model Half Car dan Eksitasi Harmonik
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[5] An Innovative Energy Harvesting Shock Absorber System for Motorbikes
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[6] A Review of Vibration-Based Piezoelectric Energy Harvester
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[7] ANALYSIS OF PIEZOELECTRIC VIBRATION ENERGY HARVESTING FROM A QUARTER VEHICLE SUSPENSION UNDER DIFFERENT INTERFACE …
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[8] Piezoelectric method‐based harvested energy evaluation from car suspension system: Simulation and experimental study
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[9] Energy harvesting from car suspension system: Mathematical approach for half car model
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[10] Thermoelectric, piezoelectric and photovoltaic harvesting technologies for pavement engineering
Renewable and Sustainable Energy Reviews, 2021
[11] Road pavement energy harvesting: experimental validation of an electromechanical system
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[12] Engineering Tests to Evaluate the Feasibility of an Emerging Solar Pavement Technology for Public Roads and Highways.
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[13] PAVENERGY RESEARCH PROJECT–RESULTS ALREADY ACHIEVED AND NEW DEVELOPMENTS PLANNED FOR THE YEARS TO COME
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[14] The applications of energy regeneration and conversion technologies based on hydraulic transmission systems: A review
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[15] Energy-saving strategies on power hydraulic system: An overview
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[16] Piezoelectric Energy Harvesting from Suspension Structures with Piezoelectric Layers
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[17] Piezoelectric Energy Harvesting Suspension System for a Half Car Model: Analytical and Experimental Study
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[18] A State-Of-The-Art Review of Car Suspension-Based Piezoelectric Energy Harvesting Systems
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[19] Engineering Tests to Evaluate the Feasibility of an Emerging Solar Pavement Technology for Public Roads and Highways
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[20] A comprehensive review on the state-of-the-art of piezoelectric energy harvesting
2020
[21] Pavenergy research project-results already achieved and new development planned for the years to come
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[22] A REVIEW ON RECOVERING THE ENERGY DISSIPATED DUE TO PARASITIC LOSSES DURING THE VEHICLE OPERATION USING PIEZOELECTRIC …
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[23] PAVENERGY-RESEARCH PROJECT TO DEVELOP NEW PAVEMENT ENERGY HARVESTING SOLUTIONS
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[24] Design of a New Piezoelectric Energy Harvesting Handrail With Vibration and Force Excitations
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[25] Experimental Validation of an Electromechanical Device to Convert Vehicles Mechanical Energy into Electrical Energy
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[26] Design and experimental study of the energy-regenerative circuit of a hybrid vehicle suspension
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[27] The design of automotive electronic control suspension system based on digital simulation
Journal of Intelligent & Fuzzy Systems, 2019
[28] Quarter vs. Half Car Model Energy Harvesting Systems
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[29] Energy harvesting and vibration reduction analysis on cantilever piezoelectric double vibration absorber (CPDVA) mechanism
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[30] Magnetic Circuit of Integrated Recovery Energy Magnetorheological Damper
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[31] Investigation on various beam geometries for piezoelectric energy harvester with two serially mounted piezoelectric materials
2019
[32] ANALYSIS OF POSITION EFFECTS OF CPVA MECHANISM IN REDUCING VIBRATION OF MULTI DOF DAMPED SYSTEM AND GENERATING ELECTRICAL ENERGY
ARPN Journal of Engineering and Applied Sciences, 2018
[33] Piezoelectric energy harvesting from roadway
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[34] A distributed parameter model for the piezoelectric stack harvester subjected to general periodic and random excitations
Engineering Structures, 2018
[35] Road Pavement Energy–Harvesting Device to Convert Vehicles' Mechanical Energy into Electrical Energy
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[36] Optimizing the value of reduction and generating energy on mechanism of cantilever piezoelectric vibration absorber (CPVA)
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[37] Estudio teórico-experimental de sistemas de recuperación de energía en la suspensión de un vehículo automóvil.
Thesis, 2018
[38] A review study on energy harvesting systems for vehicles
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[39] Integration of a mechanical energy storage system in a road pavement energy harvesting hydraulic device with mechanical actuation
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[40] Damping properties and energy evaluation of a regenerative shock absorber
International Journal on Interactive Design and Manufacturing (IJIDeM), 2017
[41] A new electromechanical device to convert vehicles mechanical energy into electrical energy
Conference Paper, 2017
[42] Energy Harvesting Systems for Vehicles: Suspension and Braking
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[43] Road pavement energy harvesting: An evaluation methodology for new and existing vehicle-derived mechanical energy collectors
AIP Conference Proceedings, 2017
[44] Software to Support the Development of Road Pavement Energy Harvesting Devices
Recent Advances in Information Systems and Technologies, 2017
[45] Software tool for simulation of vehicle-road interaction
Engineering Computations, 2017
[46] PIEZOELECTRIC SCROLL FLOOR COUPLED TO AN OPTIMAL LINEAR CONTROL
IV Congresso de Ciência e Tecnologia da UTFPR-DV, 2017
[47] 基于 MotionView 的前悬架试验与优化分析
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[48] Software for Simulation of Vehicle-Road Interaction
New Advances in Information Systems and Technologies, 2016
[49] Energy harvesting on road pavements: state of the art
Proceedings of the Institution of Civil Engineers-Energy, 2016
[50] Energy Harvesting on Road Pavements
2015
[51] Modeling on piezoelectric energy harvesting from pavements under traffic loads
2015
[52] Research on recycling vibration energy of shock absorber
International Journal of Vehicle Design, 2015
[53] Theoretical analysis of piezoelectric energy harvesting from traffic induced deformation of pavements
Smart Materials and Structures, 2013
[54] Development and Simulation of 39 DOF Vehicle Model
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