Fast electrochemical impedance spectroscopy : as a statistical condition monitoring tool /: as a statistical condition monitoring tool. (2017)
- Record Type:
- Book
- Title:
- Fast electrochemical impedance spectroscopy : as a statistical condition monitoring tool /: as a statistical condition monitoring tool. (2017)
- Main Title:
- Fast electrochemical impedance spectroscopy : as a statistical condition monitoring tool
- Further Information:
- Note: Pavle Boškoski, Andrej Debenjak, Biljana Mileva Boshkoska.
- Authors:
- Boškoski, Pavle
- Editors:
- Debenjak, Andrej
Boshkoska, Biljana Mileva, 1979- - Contents:
- Preface; Acknowledgements; Contents; Acronyms; 1 Introduction; 1.1 EIS as a Tool for Condition Monitoring; 1.2 Book Structure; References; 2 Fast Electrochemical Impedance Spectroscopy; 2.1 Discrete Random Binary Sequence; 2.2 Frequency Analysis; 2.3 Time-Frequency Analysis; 2.3.1 Short-Time Fourier Transform; 2.3.2 Wavelet Transform; 2.3.3 The Morlet Wavelet; 2.3.4 Cone of Influence; 2.3.5 Computationally Efficient CWT with the Morlet Wavelet; 2.3.6 The Lognormal Wavelet; 2.4 Impedance Through Complex Wavelet Coefficients; 2.5 Parameter Selection; 2.5.1 Selection of the DRBS Bandwidth. 2.5.2 Influence of the Morlet Wavelet Central Frequency2.6 Accuracy of the Amplitude and Phase Estimates from Wavelet Coefficients; 2.7 Summary; References; 3 Statistical Properties; 3.1 The Concept of Complex Circular Random Variable; 3.1.1 Circularity of Spectral Components; 3.1.2 Circularity of DRBS Spectral Components; 3.2 Statistical Properties of Measured Impedance; 3.2.1 Probability Distribution of the Measured Impedance; 3.2.2 Probability Distribution of Impedance Components; 3.2.3 Probability Distribution of the Impedance Amplitude; 3.2.4 Parameter Estimation; 3.3 Summary. 5.4.1 Selection of the Appropriate Frequencies5.4.2 Estimating Copula Parameters; 5.4.3 Copula Output as an Aggregated Condition Indicator; 5.5 Summary; References; 6 Condition Monitoring of PEM Fuel Cells; 6.1 Experimental Setup; 6.2 Experimental Profile; 6.3 Time Evolution of Particular Impedance Components at aPreface; Acknowledgements; Contents; Acronyms; 1 Introduction; 1.1 EIS as a Tool for Condition Monitoring; 1.2 Book Structure; References; 2 Fast Electrochemical Impedance Spectroscopy; 2.1 Discrete Random Binary Sequence; 2.2 Frequency Analysis; 2.3 Time-Frequency Analysis; 2.3.1 Short-Time Fourier Transform; 2.3.2 Wavelet Transform; 2.3.3 The Morlet Wavelet; 2.3.4 Cone of Influence; 2.3.5 Computationally Efficient CWT with the Morlet Wavelet; 2.3.6 The Lognormal Wavelet; 2.4 Impedance Through Complex Wavelet Coefficients; 2.5 Parameter Selection; 2.5.1 Selection of the DRBS Bandwidth. 2.5.2 Influence of the Morlet Wavelet Central Frequency2.6 Accuracy of the Amplitude and Phase Estimates from Wavelet Coefficients; 2.7 Summary; References; 3 Statistical Properties; 3.1 The Concept of Complex Circular Random Variable; 3.1.1 Circularity of Spectral Components; 3.1.2 Circularity of DRBS Spectral Components; 3.2 Statistical Properties of Measured Impedance; 3.2.1 Probability Distribution of the Measured Impedance; 3.2.2 Probability Distribution of Impedance Components; 3.2.3 Probability Distribution of the Impedance Amplitude; 3.2.4 Parameter Estimation; 3.3 Summary. 5.4.1 Selection of the Appropriate Frequencies5.4.2 Estimating Copula Parameters; 5.4.3 Copula Output as an Aggregated Condition Indicator; 5.5 Summary; References; 6 Condition Monitoring of PEM Fuel Cells; 6.1 Experimental Setup; 6.2 Experimental Profile; 6.3 Time Evolution of Particular Impedance Components at a Single Frequency; 6.4 Time Evolution of the Condition Indicator at a Single Frequency; 6.5 Time Evolution of the Aggregated Condition Indicator; 6.6 Summary; 7 Hardware Components for Condition Monitoring of PEM Fuel Cells; 7.1 DC-DC Converter; 7.1.1 Microcontroller Circuitry. 7.1.2 Power Output Stage7.2 Fuel Cell Voltage Monitor; 7.2.1 Resolving the High Common-Mode Voltage Potential Issue; 7.2.2 FCVM Measurement Modes; 7.2.3 DC-DC Converter and FCVM as a Condition Monitoring System; 7.3 Summary; References; 8 Conclusion; Appendix A Listings. … (more)
- Publisher Details:
- Cham, Switzerland : Springer
- Publication Date:
- 2017
- Extent:
- 1 online resource
- Subjects:
- 543/.5
Energy
Impedance spectroscopy
Electrochemical analysis
TECHNOLOGY & ENGINEERING -- Mechanical
Electrochemical analysis
Impedance spectroscopy
Energy
Energy Storage
Electrochemistry
Quality Control, Reliability, Safety and Risk
Signal, Image and Speech Processing
Statistics for Engineering, Physics, Computer Science, Chemistry and Earth Sciences
Renewable and Green Energy
Science -- Chemistry -- Physical & Theoretical
Technology & Engineering -- Quality Control
Technology & Engineering -- Electronics -- General
Mathematics -- Probability & Statistics -- General
Science -- Energy
Electrochemistry & magnetochemistry
Reliability engineering
Imaging systems & technology
Probability & statistics
Alternative & renewable energy sources & technology
Chemistry
System safety
Statistics
Renewable energy sources
Technology & Engineering -- Power Resources -- General
Energy conversion & storage
Electronic books
Electronic book - Languages:
- English
- ISBNs:
- 9783319533902
3319533908 - Related ISBNs:
- 9783319533896
3319533894 - Notes:
- Note: Includes bibliographical references.
Note: Online resource; title from PDF title page (SpringerLink, viewed May 23, 2017). - Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.364710
- Ingest File:
- 01_337.xml