Ebook: On the Mathematical Modeling of Memristor, Memcapacitor, and Meminductor
- Genre: Mathematics // Applied Mathematicsematics
- Tags: Circuits and Systems, Nonlinear Dynamics, Information and Communication Circuits
- Series: Studies in Systems Decision and Control 26
- Year: 2015
- Publisher: Springer International Publishing
- Edition: 2015
- Language: English
- pdf
Reviews the literature on mem-elements, models, Emulators and their recent applications
Presents the concepts of memristive-based oscillators and multilevel digital circuits
Provides the analyses of the memcapacitor and meminductor elements with applications
This book introduces the basic fundamentals, models, emulators and analyses of mem-elements in the circuit theory with applications. The book starts reviewing the literature on mem-elements, models and their recent applications. It presents mathematical models, numerical results, circuit simulations, and experimental results for double-loop hysteresis behavior of mem-elements. The authors introduce a generalized memristor model in the fractional-order domain under different input and different designs for emulator-based mem-elements, with circuit and experimental results. The basic concept of memristive-based relaxation-oscillators in the circuit theory is also covered. The reader will moreover find in this book information on memristor-based multi-level digital circuits, memristor-based multi-level multiplier and memcapacitor-based oscillators and synaptic circuits
Related Subjects: Circuits and Systems, Nonlinear Dynamics, Information and Communication, Circuits
Presents the concepts of memristive-based oscillators and multilevel digital circuits
Provides the analyses of the memcapacitor and meminductor elements with applications
This book introduces the basic fundamentals, models, emulators and analyses of mem-elements in the circuit theory with applications. The book starts reviewing the literature on mem-elements, models and their recent applications. It presents mathematical models, numerical results, circuit simulations, and experimental results for double-loop hysteresis behavior of mem-elements. The authors introduce a generalized memristor model in the fractional-order domain under different input and different designs for emulator-based mem-elements, with circuit and experimental results. The basic concept of memristive-based relaxation-oscillators in the circuit theory is also covered. The reader will moreover find in this book information on memristor-based multi-level digital circuits, memristor-based multi-level multiplier and memcapacitor-based oscillators and synaptic circuits
Related Subjects: Circuits and Systems, Nonlinear Dynamics, Information and Communication, Circuits
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