Numerical simulation of the experiment on pulsed excitation of stack type piezoelectric generator
https://doi.org/10.12737/18132
Abstract
About the Authors
Arkady N. SolovyevRussian Federation
Van Duong Le
Russian Federation
Vladimir A. Akopyan
Russian Federation
Evgeny V. Rozhkov
Russian Federation
Valery A. Chebanenko
Russian Federation
References
1. Erturk, A., Inman, D.J. Piezoelectric energy harvesting. N. Y.: John Willey and Sons, Ltd., 2011, 402 p.
2. Anton, S. R. Multifunctional Piezoelectric Energy Harvesting Concepts. PhD diss. to Virginia Polytechnic Institute and State University. Blacksburg: Virginia, 201, 215 p.
3. Golovin, V.A., et al. Sravnitel'nye kharakteristiki p'yezokeramicheskikh mekhanoelektricheskikh preobrazovateley dlya generatsii elektrichestva. [Comparative characteristics of piezoceramic mechanoelectric transducers for generation of electricity.] Vestnik Tverskogo gosudarstvennogo universiteta. Seriya “Fizika”, 2010, no. 11, pp. 33–46 (in Russian).
4. DuToit, N.E., Wardle, B.L., Kim S.G. Design considerations for MEMS-scale piezoelectric mechanical vibration energy harvesters. Integrated Ferroelectrics, 2005, vol. 71, no. 1, pp. 121–160.
5. DuToit, N. E., Wardle, B.L. Experimental verification of models for microfabricated piezoelectric vibration energy harvesters. AIAA journal, 2007, vol. 45, no. 5, pp. 1126–1137.
6. Adhikari, S., Friswell, M.I., Inman, D.J. Piezoelectric energy harvesting from broadband random vibrations. Smart Materials and Structures, 2009, vol. 18, no. 11, pp. 115005.
7. Roundy, S., Wright, P. K. A piezoelectric vibration based generator for wireless electronics. Smart Materials and Structures, 2004, vol. 13, no. 5, pp. 1131.
8. Duong, Le V. Konechno-elementnyy analiz primenimosti prikladnykh teoriy rascheta p'yezoelektricheskogo ustroystva nakopleniya energii stekovoy konfiguratsii. [Finite element analysis of the applicability of the applied theories of calculation of piezoelectric device of energy storage of stack configuration.] Engineering Journal of Don, 2014, no. 2, pp. 1–13 (in Russian).
9. Akopyan, V.A., et al. Analiz stabil'nosti elektrofizicheskikh kharakteristik p'yezokeramik razlichnykh sostavov, ispol'zuemykh dlya p'yezoelektricheskikh generatorov kantilevernogo tipa povyshennoy moshchnosti. [Analysis of the Electro- Physical Characteristics Piezoceramics Different Composition Used for High Power Piezoelectric Generators.] Journal of Nano and Microsystem Technique, 2012, no. 1, pp. 37–41 (in Russian).
10. Kazakov, V.K., et al. Mnogosloynye p'yezoelektricheskie aktuatory i osobennosti ikh primeneniya. [Multilayer piezoelectric actuators and features of their application.] Components and Technologies, 2007, no. 6, pp. 62–65 (in Russian).
11. Gritsenko, А., Nikiforov, V., Shchegoleva, T. Sostoyanie i perspektivy razvitiya p'yezoelektricheskikh generatorov. [State and prospects of piezoelectric generators.] Components and Technologies, 2012, no. 9, pp. 63–68 (in Russian).
12. Morozov, А.G. Elektrotekhnika, elektronika i impul'snaya tekhnika. [Electrotechnics, Electronics and pulse Engineering.] Moscow: Vysshaya shkola, 1987, 448 p. (in Russian).
13. Akopyan, V.A., et al. Vliyanie vida mekhanicheskogo nagruzheniya na energoeffektivnost' p'yezoelektricheskikh generatorov. [Influence of the type of mechanical loading on the energy efficiency of the piezoelectric generators.] Journal of Nano and Microsystem Technique, 2015, no. 2, pp.С. 33–44 (in Russian).
14. Zhao, S., Erturk, A. Deterministic and band-limited stochastic energy harvesting from uniaxial excitation of a multilayer piezoelectric stack. Sensors and Actuators A: Physical, 2014, vol. 214, pp. 58–65.
Review
For citations:
Solovyev A.N., Le V.D., Akopyan V.A., Rozhkov E.V., Chebanenko V.A. Numerical simulation of the experiment on pulsed excitation of stack type piezoelectric generator. Vestnik of Don State Technical University. 2016;16(1):19-26. (In Russ.) https://doi.org/10.12737/18132