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| Content Provider | Springer Nature Link |
|---|---|
| Author | Zhang, Bin Ducharne, Benjamin Guyomar, Daniel |
| Copyright Year | 2013 |
| Abstract | This paper presents an inverse piezoelectric ceramic polarization model, $$T(P)$$ , working in wide bandwidth under various mechanical excitations. The model was derived from the polarization model under electric field, $$P(E)$$ , by use of the correlation ( $$E =\alpha \cdot T\cdot P$$ ) between the external mechanical excitation and piezoelectric ceramic electric field. Using the model, $$T(P)$$ , a given polarization could be obtained by calculating the mechanical stress waveform applied to the ceramic. The piezoelectric ceramic P188 was investigated in the experiment; measurement bench and procedures have been developed to evaluate the accuracy of the model. By means of modeling dynamic counterpart (a fractional derivative part), large range of frequency ( $$10^{-3} \text{ Hz } < f < 10 \text{ Hz }$$ ) imposed polarization have been examined and experimental results turned out to be good both with sinusoidal and triangular waveforms. The same fractional derivative operator is universal both in mechanical and electrical excitations. |
| Starting Page | 103 |
| Ending Page | 110 |
| Page Count | 8 |
| File Format | |
| ISSN | 03068919 |
| Journal | Optical and Quantum Electronics |
| Volume Number | 46 |
| Issue Number | 1 |
| e-ISSN | 1572817X |
| Language | English |
| Publisher | Springer US |
| Publisher Date | 2013-06-15 |
| Publisher Place | Boston |
| Access Restriction | One Nation One Subscription (ONOS) |
| Subject Keyword | Piezoelectric ceramic Polarization Inverse model Fractional derivative Optics, Optoelectronics, Plasmonics and Optical Devices Electrical Engineering Characterization and Evaluation of Materials Computer Communication Networks |
| Content Type | Text |
| Resource Type | Article |
| Subject | Atomic and Molecular Physics, and Optics Electronic, Optical and Magnetic Materials Electrical and Electronic Engineering |
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