000764330 000__ 04878cam\a2200529Mi\4500 000764330 001__ 764330 000764330 005__ 20230306142411.0 000764330 006__ m\\\\\o\\d\\\\\\\\ 000764330 007__ cr\un\nnnunnun 000764330 008__ 161119s2016\\\\sz\\\\\\o\\\\\000\0\eng\d 000764330 019__ $$a962750869$$a963595127$$a966256453$$a966398369 000764330 020__ $$a9783319203553$$q(electronic book) 000764330 020__ $$a331920355X$$q(electronic book) 000764330 020__ $$z9783319203546 000764330 020__ $$z3319203541 000764330 035__ $$aSP(OCoLC)ocn963587122 000764330 035__ $$aSP(OCoLC)963587122$$z(OCoLC)962750869$$z(OCoLC)963595127$$z(OCoLC)966256453$$z(OCoLC)966398369 000764330 037__ $$a969952$$bMIL 000764330 040__ $$aEBLCP$$beng$$epn$$cEBLCP$$dN$T$$dIDEBK$$dGW5XE$$dOCLCQ$$dOCLCF$$dYDX 000764330 049__ $$aISEA 000764330 050_4 $$aTK2897 000764330 050_4 $$aQC71.82-73.8 000764330 08204 $$a621.042 000764330 24500 $$aNonlinearity in energy harvesting systems :$$bmicro- and nanoscale applications /$$cElena Blokhina, Abdelali El Aroudi, Eduard Alarcon, Dimitri Galayko, editors. 000764330 260__ $$aCham :$$bSpringer,$$c©2016. 000764330 300__ $$a1 online resource (361 pages) 000764330 336__ $$atext$$btxt$$2rdacontent 000764330 337__ $$acomputer$$bc$$2rdamedia 000764330 338__ $$aonline resource$$bcr$$2rdacarrier 000764330 500__ $$a6.4.1 Nonlinear Mathematical Model. 000764330 5050_ $$aPreface; Contents; 1 Introduction to Vibration Energy Harvesting; 1.1 Historical Background; 1.2 Ambient Energy Sources for Harvesting; 1.3 Vibration Energy Harvesters; 1.4 Components of Vibration Energy Harvesters; 1.5 Nonlinearity in Vibration Energy Harvesters; 1.5.1 Role of Nonlinearities; 1.5.2 Examples of Useful Nonlinearities; 1.6 Scope and Structure of the Book; References; 2 MEMS Technologies for Energy Harvesting; 2.1 Introduction; 2.2 MEMS Fabrication Processes; 2.2.1 IC Versus MEMS Fabrication; 2.2.2 Addition Processes for MEMS; 2.2.3 Etching Processes for MEMS. 000764330 5058_ $$a2.2.4 MEMS Fabrication Strategies2.3 Nonlinear Mechanisms Used in Energy Harvesting with MEMS; 2.3.1 Bistable Potentials ; 2.3.2 Nonlinear Springs; 2.3.3 Nonlinear Energy Transfer by Impact; 2.4 Transduction Principles; 2.4.1 Electrostatic Transduction; 2.4.2 Electromagnetic Transduction; 2.5 MEMS Devices Based on the Piezoelectric Transduction Mechanism; 2.5.1 Piezoelectricity; 2.5.2 Properties of Piezoelectric Materials; 2.5.3 Piezoelectric Materials; 2.5.4 Piezoelectric Energy Harversters; References; 3 Oscillators for Energy Harvesting; 3.1 Linear Oscillator; 3.1.1 Free Linear Oscillator. 000764330 5058_ $$a3.1.2 Forced Oscillator and Linear Resonance3.1.3 Equilibrium Points and Stability. An Oscillator as a Dynamical System; 3.2 Nonlinear Oscillators; 3.2.1 Free Nonlinear Oscillator ; 3.2.2 Forced Nonlinear Oscillator; 3.3 Resonators and Kinetic Energy Harvesting; 3.3.1 Architecture of a Kinetic Energy Harvester (KEH); 3.3.2 Design and Optimization of KEH; 3.3.3 Study of a General Case; 3.3.4 Case of a Narrow Band Resonator; 3.3.5 Conclusion; References; 4 Transducers for Energy Harvesting; 4.1 Capacitive Transducers; 4.1.1 Presentation of a Capacitive Transducer. 000764330 5058_ $$a4.1.2 Electrical Operation of a Variable Capacitor4.1.3 Forces in a Capacitive Transducer; 4.1.4 Energy Conversion with a Capacitive Transducer; 4.1.5 Optimization of the Operation of a Capacitive Transducer ; 4.1.6 Electromechanical Coupling; 4.2 Piezoelectric Transducers; 4.2.1 Piezoelectric Mechanism; 4.2.2 Energy Harvesting Using Piezoelectric Transducers; References; 5 Nonlinear Structural Mechanics of Micro-and Nanosystems; 5.1 Literature Review; 5.2 Background; 5.2.1 Beams; 5.2.2 Electric Actuation ; 5.2.3 Perturbation Series and the Method of Multiple Scales; 5.2.4 Carbon Nanotubes. 000764330 5058_ $$a5.3 Structural Behavior of Straight Carbon Nanotube Resonators5.3.1 Problem Formulation; 5.4 Dynamics of Slacked Carbon Nanotube Resonators; 5.4.1 Problem Formulation; 5.4.2 The Reduced-Order Model; 5.4.3 The Dynamic Response for Small DC and AC Loads; 5.4.4 The String Model; References; 6 Nonlinear Dynamics of Ambient Noise-Driven Graphene Nanostructured Devices for Energy Harvesting; 6.1 Introduction; 6.2 Graphene-Based Nanomaterials for Energy Harvesting; 6.3 Chapter Outline; 6.4 Mathematical Model of the Graphene Vibrating Membrane for Energy Harvesting Applications. 000764330 506__ $$aAccess limited to authorized users. 000764330 588__ $$aDescription based on print version record. 000764330 650_0 $$aEnergy harvesting. 000764330 7001_ $$aBlokhina, Elena. 000764330 7001_ $$aEl Aroudi, Abdelali. 000764330 7001_ $$aAlarcón, Eduard. 000764330 7001_ $$aGalayko, Dimitri,$$d1976- 000764330 77608 $$iPrint version:$$aBlokhina, Elena.$$tNonlinearity in Energy Harvesting Systems : Micro- and Nanoscale Applications.$$dCham : Springer International Publishing, ©2016$$z9783319203546 000764330 852__ $$bebk 000764330 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-3-319-20355-3$$zOnline Access$$91397441.1 000764330 909CO $$ooai:library.usi.edu:764330$$pGLOBAL_SET 000764330 980__ $$aEBOOK 000764330 980__ $$aBIB 000764330 982__ $$aEbook 000764330 983__ $$aOnline 000764330 994__ $$a92$$bISE