98
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Generation of electric potential and noise suppression from an integrated system of acoustic energy conversion

&
Pages 189-198 | Received 23 May 2021, Accepted 28 Apr 2022, Published online: 12 May 2022

References

  • Beeby, S P, M J Tudor, and N M White. 2006. “Energy Harvesting Vibration S for Microsystems Applications.” Measurement Science Technology 17 (12): R175–95. doi:10.1088/0957-0233/17/12/R01.
  • Can, A., L. Leclercq, J. Lelong, and D. Botteldooren. 2010. “Traffic Noise Spectrum Analysis: Dynamic Modeling Vs. Experimental Observations.” Applied Acoustics 71 (8): 764–770. doi:10.1016/j.apacoust.2010.04.002.
  • Cepenas, M., B. Peng, D. Andriukaitis, et al. 2020. “Research of PVDF Energy Harvester Cantilever Parameters for Experimental Model Realization.” Electronics 9 (12): 2030. 10.3390/electronics9122030.
  • Chang, S.-Y., P. Cheng, G. Li, and Y. Yang. 2018. “Transparent Polymer Photovoltaics for Solar Energy Harvesting and Beyond.” Joule 2 (6): 1039–1054. doi:10.1016/j.joule.2018.04.005.
  • Chen, Geng, Lihua Tang, and Brian R Mace. 2020. “Bistability and Triggering in A Thermoacoustic Engine: A Numerical Study.” International Journal of Heat and Mass Transfer 157: 119951. doi:10.1016/j.ijheatmasstransfer.2020.119951.
  • Dayou, J., C. Man-Sang, M. N. Dalimin, and S. Wang. 2009. “Generating Electricity Using Piezoelectric Material.” Borneo Science 24: 47–51.
  • Fathabadi, H. 2019. “Solar Energy Harvesting in Buildings Using a Proposed Novel Electrochemical Device as an Alternative to PV Modules.” Renewable Energy 133: 118–125. doi:10.1016/j.renene.2018.10.010.
  • Ferrari, M., V. Ferrari, M. Guizzetti, D. Marioli, and A. Taroni (2007) “Characterization of Thermoelectric Modules for Powering Autonomous Sensors.” Instrumentation and measurement technology conference (IMTC ‘07), Warsaw, Poland, pp.1–6.
  • Ferrari, M., V. Ferrari, M. Guizzetti, D. Marioli, and A. Taroni. 2008. “Piezoelectric Multifrequency Energy Converter for Power Harvesting in Autonomous Microsystems.” Sensors Actuator Acta Physica 142 (1): 329–335. doi:10.1016/j.sna.2007.07.004.
  • Garg, M., D. Gera, A. Bansal, and A. Kumar, “Generation of Electrical Energy from Sound Energy,” 2015 International Conference on Signal Processing and Communication (ICSC), Noida, India, 2015, pp. 410–412, doi: 10.1109/ICSPCom.2015.7150687.
  • Hansen, J.B, Y. Liu, R. Yang, and Z. L. Wang. 2010. “Hybrid Nanogenerator for Concurrently Harvesting Biomechanical and Biochemical Energy.” ACS Nano 4 (7): 3647. doi:10.1021/nn100845b.
  • Hoffman, D, B Folkmer, and Y Manoli. 2009. “Fabrication, Characterization and Modeling of Electrostatic Micro-generators.” Journal Micromechanics Microengineering 19 (9): 094001. doi:10.1088/0960-1317/19/9/094001.
  • Hong, Y., L. Sui, M. Zhang, and G. Shi. 2018. “Theoretical Analysis and Experimental Study of the Effect of the Neutral Plane of a Composite Piezoelectric Cantilever.” In Energy Conversion and Management. Vol. 171, 1020–1029. Elsevier BV.
  • Izhar, and F.U. Khan. 2018. “Three Degree of Freedom Acoustic Energy Harvester Using Improved Helmholtz Resonator.” International Journal Precision Engineering Manufacture 19 (1): 143–154. doi:10.1007/s12541-018-0017-z.
  • Khan, F.U. Izhar. 2016a. “Hybrid Acoustic Energy Harvesting Using Combined Electromagnetic and Piezoelectric Conversion.” Review of Scientific Instruments 87 (2): 25003. doi:10.1063/1.4941840.
  • Khan, F.U. Izhar. 2016b. “Hybrid Acoustic Energy Harvesting Using Combined Electromagnetic and Piezoelectric Conversion.” Review of Scientific Instruments 87 (2): 25003.
  • Koukharenko, E., S. P. Beeby, M. J. Tudor, N. M. White, T. O’Donnell, C. Saha, S. Kulkarni, and S. Roy. 2006. “Microelectromechanical Systems Vibration Powered Electromagnetic Generator for Wireless Sensor Applications.” Microsystem Technologies 12 (10–11): 1071–1077. doi:10.1007/s00542-006-0137-8.
  • Ma, F., M. Huang, and J.H. Wu. 2017. “Ultrathin Lightweight Plate-type Acoustic Metamaterials with Positive Lumped Coupling Resonant.” Journal of Applied Physics 121 (1): 015102. doi:10.1063/1.4972839.
  • Mao, Q., S. Li, and W. Liu. 2018. “Development of a Sweeping Helmholtz Resonator for Noise Control.” Applied Acoustical 141: 348–354. doi:10.1016/j.apacoust.2018.07.031.
  • Miljković, Dubravko. 2007. “Comparative Investigation of Aircraft Interior Noise Properties.” 3rd Congress of the Alps Adria Acoustics.
  • Myers, R., M. Vickers, H. Kim, and S. Priya. 2007. “Small Scale Windmill.” Applied Physics Letters 90 (5): 054106. doi:10.1063/1.2435346.
  • Naruse, Y., N. Matsubara, K. Mabuchi, M. Izumi, and S. Suzuki. 2009. “Electrostatic Micro Power Generation from Low-frequency Vibration Such as Human Motion.” Journal of Micromechanics and Microengineering 19 (9): 094002. doi:10.1088/0960-1317/19/9/094002.
  • Nayan, H. 2015. “Power Generation Using Piezoelectric Material.” Journal of Material Sciences & Engineering 4 (3).
  • Parrondo, Jorge, Javier Pérez, Raúl Barrio, and Jose González. 2011. “A Simple Acoustic Model to Characterize the Internal Low Frequency Sound Field in Centrifugal Pumps.” Applied Acoustics - 72 (1): 59–64. doi:10.1016/j.apacoust.2010.08.005.
  • Patil, A.T., and M.B. Mandale. 2021. “Recent Acoustic Energy Harvesting Methods and Mechanisms: A Review.” Noise & Vibration Worldwide 52 (11): 397–410. doi:10.1177/09574565211030702.
  • Priya, S., C-T. Chen, D. Fye, and J. Zahnd. 2005. “Piezoelectric Windmill: A Novel Solution to Remote Sensing.” Japan Journal Applied Physical 44 (3): 104–L107. doi:10.1143/JJAP.44.L104.
  • Rezaei, M., R. Talebitooti, and M.I. Friswell. 2019a. “Efficient Acoustic Energy Harvesting by Deploying Magnetic Restoring Force.” Smart Materials and Structures 28 (10): 105037. doi:10.1088/1361-665X/ab3a6a.
  • Rezaei, M, R Talebitooti, and MI. Friswell. 2019b. “Efficient Acoustic Energy Harvesting by Deploying Magnetic Restoring Force.” Smart Mater Structures 28 (10): 105037.
  • Roundy, S., and P. K. Wright. 2004. “A Piezoelectric Vibration-based Generator for Wireless Electronics.” Smart Materials and Structures 13 (5): 1131–1142. doi:10.1088/0964-1726/13/5/018.
  • Sodano, H. A., G. Park, and D. J. Inman. 2004. “Estimation of Electric Charge Output for Piezoelectric Energy Harvesting.” Strain 40 (2): 49–58. doi:10.1111/j.1475-1305.2004.00120.x.
  • Strasser, M., R. Aigner, M. Franosch, and G. Wachutka. 2002. “Miniaturized Thermoelectric Generators Based on poly-Si and poly-SiGe Surface Micromachining.” Sensors Actuator Acta Physica 97-98: 535–542. doi:10.1016/S0924-4247(01)00815-9.
  • Torah, R.N, M.J Tudor, K Patel, IN. Garcia, and S.P. Beeby. 2007. “Autonomous Low Power Microsystem Powered by Vibration Energy Harvesting.” In: IEEE Sensors 2007, Atlanta, GA, USA, pp. 264–267.
  • Yang, S. M., and T. Lee. 2009. “Development of a Thermoelectric Energy Harvester with Thermal Isolation Cavity by Standard CMOS Process.” Sensors Actuator Acta Physica 153 (2): 244–250. doi:10.1016/j.sna.2009.05.018.
  • Yuan, M., F. Yang, J. Luo, and Z. Cao. 2018. “Planar Acoustic Notch Filter for Low Frequency Sound Wave Suppression.” Results in Physics 11: 259–266. doi:10.1016/j.rinp.2018.09.011.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.