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Advanced Technique and Future Perspective for Next Generation Optical Fiber Communications
Advanced Technique and Future Perspective for Next Generation Optical Fiber Communications
Autore Zhao Jian
Pubbl/distr/stampa Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022
Descrizione fisica 1 electronic resource (134 p.)
Soggetto topico Research & information: general
Physics
Soggetto non controllato optical communication
frame transmission
synchronization word
blind recognition
Hough transform
machine learning
optical communications
patent analysis
network analysis
technical analysis
fiber nonlinearities
deep learning (DL)
artificial intelligence (AI)
BPSK-VSB
BPSK-SSB
fiber transmission
optical neural networks
time lens
fiber
dispersion Fourier transform
high-flux imaging
classification
cancer cell recognition
photon time stretching (PTS)
passive optical networks
laser tuning time
TWDM
Dynamic Bandwidth Allocation
optical access networks
scheduling
FSOC system
omnidirectional communication
miniaturization
ASE noise
ICC
DWDM-FSO/PON optical fiber network
hybrid OOK/M-ary DPPM-M-PAPM
hybrid fiber FSO (HFFSO) link
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910576880503321
Zhao Jian  
Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
IGEC Transactions, Volume 1 : Proceedings of the 15th International Green Energy Conference (IGEC-XV)
IGEC Transactions, Volume 1 : Proceedings of the 15th International Green Energy Conference (IGEC-XV)
Autore Zhao Jian
Edizione [1st ed.]
Pubbl/distr/stampa Cham : , : Springer International Publishing AG, , 2024
Descrizione fisica 1 online resource (508 pages)
Disciplina 333.794
Altri autori (Persone) KadamSambhaji
YuZhibin
LiXianguo
Collana Springer Proceedings in Energy Series
ISBN 3-031-48902-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Intro -- Contents -- 1 Numerical Study of a Natural Convection Cooling Loop System for Floating Photovoltaic Panels -- 1.1 Introduction -- 1.2 Methodology -- 1.2.1 Case Description -- 1.2.2 Solar Irradiation Function -- 1.2.3 Calculation of Electrical Energy -- 1.2.4 Calculation of Heat Losses -- 1.3 Results and Discussion -- 1.3.1 Mesh Independence Study -- 1.3.2 Design Configuration -- 1.3.3 Reservoir Configuration -- 1.3.4 Heat Flux as a Function of Time -- 1.3.5 Effect of Energy Losses Calculation -- 1.4 Concluding Remarks -- References -- 2 A Technical Review on the Implementation of Lithium-Ion Batteries Waste Recycling Methods -- 2.1 Introduction -- 2.2 Methodology -- 2.3 Results and Discussion -- 2.4 Conclusions -- References -- 3 A Malaysian Perspective on Lithium-Ion Batteries Recycling -- 3.1 Introduction -- 3.2 Methods -- 3.3 Results and Discussion -- 3.4 Conclusions -- References -- 4 Theoretical Study on the Performance of a Standing-Wave Thermoacoustic Refrigerator Under Various Boundary Conditions -- 4.1 Introduction -- 4.2 Theoretical Modelling -- 4.2.1 Model Description -- 4.2.2 Acoustic Boundary Conditions -- 4.2.3 Theoretical Analysis -- 4.3 Results and Discussion -- 4.3.1 The Baseline Condition -- 4.3.2 Effect of Boundary Conditions -- 4.4 Conclusions -- References -- 5 To Develop an Eco-Friendly Cold Nuclear Thermal Power Plant by Considering Iron-56 as a Fuel -- 5.1 Introduction -- 5.2 On the Possibility of Occurrence and Present Status of CNF -- 5.3 A Brief Review on NASA's Lattice Confinement Fusion -- 5.4 Russian Experiments on Cold Nuclear Fusion -- 5.5 Japanese Experiments on Cold Nuclear Fusion -- 5.6 Our Approach of Hidden Energy Mechanism of CNF-A Short Review -- 5.7 To Establish Thermal Energy Liberation Mechanism for Designing a Power Plant Based on Cold Nuclear Fusion with Iron-56.
5.8 A Detailed Analysis on Coulombic Term -- 5.9 Discussion -- 5.10 Conclusion -- References -- 6 Exploring the Conductivity Landscape of Notable Ceramic Electrolytes Under Varying Ambient Conditions -- 6.1 Introduction -- 6.2 Experimental -- 6.2.1 Material Synthesis -- 6.2.2 Materials Characterizations -- 6.3 Results and Discussions -- 6.4 Conclusions -- References -- 7 Location Optimisation of EVC Point of Coupling for Minimising Voltage Harmonic Levels of a UK Based LV Power Distribution Network -- 7.1 Introduction -- 7.2 Case Study -- 7.3 Validate Simulation -- 7.4 Algorithms -- 7.5 Elephant Herding Optimisation -- 7.6 Monarch Butterfly Optimisation -- 7.7 Simulation -- 7.8 Results -- 7.9 Conclusion -- References -- 8 Grid Optimization and Demand Side Management for Electric Vehicles Penetration in Remote Areas -- 8.1 Introduction -- 8.2 Case Study -- 8.3 Methodology -- 8.3.1 Grid Optimisation -- 8.3.2 Demand-Side Management -- 8.4 Results -- 8.4.1 Power Loss and Voltage Drop Optimisation -- 8.4.2 Result of Demand-Side Storage System -- 8.5 Conclusion -- References -- 9 Thermodynamic Assessment of High-Parameter Transcritical Cycle Enabled by CO2-SO2 Mixture -- 9.1 Introduction -- 9.2 System Description -- 9.3 Modeling -- 9.4 Result and Discussion -- 9.4.1 Cycle Performance Varying the Mass Fraction Under Different Maximum Temperatures -- 9.4.2 Cycle Performance Varying the Mass Fraction Under Different Maximum Pressures -- 9.4.3 Cycle Performance Varying the Mass Fraction Under Different Minimum Temperatures -- 9.5 Conclusions -- References -- 10 Experimental Investigation on the Stability of Biocomposite Phase Change Materials for Building Applications -- 10.1 Introduction -- 10.2 Materials and Method -- 10.2.1 Materials -- 10.2.2 Thermal Cycling Experimental Set-Up -- 10.2.3 Thermal Cycling Test Method -- 10.2.4 Characterization of the PCM.
10.3 Results and Discussion -- 10.3.1 Change in Physical Appearance -- 10.3.2 Leakage Stability Comparison -- 10.3.3 Surface Morphology Analysis -- 10.3.4 XRD Analysis -- 10.3.5 FTIR Test Analysis -- 10.3.6 DSC Test Analysis -- 10.4 Conclusion -- References -- 11 Dynamic Analysis of Hybrid Electric Vehicle Coupled with Waste Heat Recovery System Under Different Road Conditions -- 11.1 Introduction -- 11.2 System Description -- 11.3 Model Construction -- 11.3.1 Truck Powertrain and Bodywork -- 11.3.2 Engine -- 11.3.3 Motor and Battery -- 11.3.4 WHR system -- 11.3.5 Driver -- 11.3.6 Energy Management Strategy -- 11.3.7 Model Validation -- 11.4 Results and Discussion -- 11.4.1 Road Condition Selection -- 11.4.2 Dynamic Characteristics Analysis Based on CHTC Working Conditions -- 11.5 Conclusions -- References -- 12 Impact of Biomass-Coal Blending on Flow Dynamics in a Dual Fluidized Bed Gasification System -- 12.1 Introduction -- 12.2 Numerical Model and Simulation -- 12.2.1 Governing Equations and Their Constitutive Relations -- 12.2.2 Simulation Set-Up -- 12.3 Results and Discussion -- 12.3.1 Axial Pressure, Voidage and Suspension Density -- 12.3.2 Radial Voidage Profile -- 12.3.3 Radial Solid Velocity -- 12.3.4 Radial Granular Temperature with Solid Volume Fraction -- 12.4 Conclusions -- References -- 13 Perovskite Solar Cells with Tunable Bandgaps for Beam-Spiltting Photovoltaic-Thermal System -- 13.1 Introduction -- 13.2 Simulations of Beam Splitting PV-T Hybrid System -- 13.3 Experimental Section -- 13.3.1 Materials -- 13.3.2 Device Fabrication -- 13.3.3 Sample Characterization -- 13.4 Results and Discussion -- 13.4.1 Characteristics of Perovskite Films -- 13.4.2 PV Performance of PSCs -- 13.4.3 Analysis of Beam-Splitting PV-T Hybrid System with PSCs of Different Band Gaps -- 13.5 Conclusions -- References.
14 The Challegnge of Rural Energy Decarbonisation of Heat in the UK -- 14.1 Introduction -- 14.2 UK Heating Overview -- 14.2.1 Heat Decarbonisation Policy in the United Kingdom -- 14.2.2 Rural Heating -- 14.2.3 Off Grid Rural Heating -- 14.2.4 Current Work on off Grid Rural Heat Decarbonisation -- 14.3 Off Gas Grid Heating Fuels and Technologies -- 14.4 Modelling -- 14.4.1 Methodology -- 14.4.2 Existing Fuels Model -- 14.4.3 Renewable Energy Systems Model -- 14.5 Conclusions -- References -- 15 Synthetic Geological Velocity Building and Acoustic Wave Simulation in Hydrogen-Bearing Reservoirs -- 15.1 Introduction -- 15.2 Methods -- 15.3 Results -- 15.4 Conclusions -- References -- 16 Optimal Sizing Capacities of Solar Photovoltaic and Battery Energy Storage Systems for Grid-Connected Commercial Buildings in Malaysia -- 16.1 Introduction -- 16.2 Modelling of System -- 16.2.1 Grid -- 16.3 Load Demand of UTeM at FKE-2 Building -- 16.3.1 Rooftop Availability -- 16.3.2 PV Module -- 16.3.3 Battery Energy Storage -- 16.3.4 Cost of Energy (COE) -- 16.3.5 Optimization Problem Formulation -- 16.4 Results and Discussion -- 16.4.1 Optimal PV-BES System -- 16.4.2 PSO Convergence -- 16.4.3 Case Study Analysis -- 16.5 Conclusion -- References -- 17 Numerical Analysis of Two-Phase Flow Using 2-D Axi-Symmetric Approach for an Effervescent Atomizer -- 17.1 Introduction -- 17.2 Methodology -- 17.2.1 Governing Equations -- 17.2.2 Geometry -- 17.2.3 Grid Generation -- 17.2.4 Boundary Conditions and Physics Setup -- 17.3 Results and Discussions -- 17.3.1 Effect of Turbulence Models -- 17.3.2 VOF 3-D Simulation -- 17.4 Conclusions -- References -- 18 Life Cycle Greenhouse Gas Emissions of Hydrogen Supplied Chains via Offshore Wind Farms Utilizing Compressed Gaseous Hydrogen, Liquefied Hydrogen and Ammonia: A Case Study of China -- 18.1 Introduction -- 18.2 Methodology.
18.3 Results and Discussion -- 18.3.1 Life Cycle Energy Consumption and GHG Emissions for Baseline -- 18.3.2 Comparison Between Different Transportation Distances -- 18.3.3 Sensitivity Coefficient Analysis -- 18.4 Conclusion -- References -- 19 Simulation Validation of Moment Balancing Method for Drag-Dominant Tidal Turbines -- 19.1 Introduction -- 19.2 Methodology -- 19.2.1 Model Description -- 19.2.2 Moment Analysis Principles -- 19.3 Results and Discussion -- 19.3.1 Idle and Thrust moment relationship quadratic with U1 and ω -- 19.3.2 Moment Plots -- 19.3.3 Cp Versus TSR Curve -- 19.3.4 Wake Velocity Vector Plots -- 19.3.5 Flow Field and Downstream Distribution -- 19.3.6 Discussion -- 19.4 Conclusion -- References -- 20 CFD Analysis of Combustion of Gasoline, Hydrogen, CNG and HCNG Blends in Internal Combustion Engine -- 20.1 Introduction -- 20.2 Numerical Methodology -- 20.2.1 Validation Case: CFR Premix from Argonne National Laboratory -- 20.3 Results and Discussion -- 20.3.1 Gasoline SI Premix-With Combustion -- 20.3.2 Pure Hydrogen-GRI MECH 3.0 Mechanism -- 20.3.3 Pure Hydrogen-Short Mechanism -- 20.3.4 Pure Methane-DRM19 Mechanism -- 20.3.5 50% H-CNG Blend-GRI MECH 2.1 Mechanism -- 20.4 Summary -- References -- 21 Prediction of Transport Properties of Methanol-Octane Blends at Different Temperatures and Pressures Using Molecular Dynamics Simulation -- 21.1 Introduction -- 21.2 Methodology -- 21.3 Results and Discussion -- 21.4 Conclusions -- References -- 22 Experimental Investigation of a Diesel Engine Run on Simulated Gaseous Fuels Under Varying Compression Ratio -- 22.1 Introduction -- 22.2 Materials and Methods -- 22.2.1 Test Fuels -- 22.2.2 Experimental Setup -- 22.2.3 Experimental Procedure -- 22.2.4 Uncertainty analysis -- 22.3 Results and Discussion -- 22.3.1 Performance Characteristics -- 22.3.2 Combustion Characteristics.
22.3.3 Emission Characteristics.
Record Nr. UNINA-9910847086603321
Zhao Jian  
Cham : , : Springer International Publishing AG, , 2024
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui