Real-Time Digital Twin of a Wound Rotor Induction Machine Based on Finite Element Method
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Summary
This work describes the development of a real-time digital twin (RTDT) of a wound rotor induction machine (WRIM) using a precomputed finite element model fed with online measurements that computes accurate outputs in real- time of electromagnetic quantities otherwise difficult to measure.
- Type
- article
- Published
- 2020-10-16
- Cited by
- 35
- References
- 23
- Access
- Open access
- OpenAlex
- https://openalex.org/W3092651889
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:226509319
Keywords
Harmonics, Rotor (electric), Finite element method, Rotation (mathematics), Fault (geology)
References
- Study on the implementation of the phase-domain model for rotating electrical machines
- A Real-Time Thermal Model of a Permanent-Magnet Synchronous Motor
- A General Framework for FPGA-Based Real-Time Emulation of Electrical Machines for HIL Applications
- A Finite Element-Based Circuit Model Approach for Skewed Electrical Machines
- A combined state-space nodal method for the simulation of power system transients
- Development and Validation of a Comprehensive Synchronous Machine Model for a Real-Time Environment
- Multiple coupled circuit modeling of induction machines
- Methods of Interfacing Rotating Machine Models in Transient Simulation Programs
- Real-Time Emulation of Switched Reluctance Machines via Magnetic Equivalent Circuits
- State-space-nodal rotating machine models with improved numerical stability
- Review of Hardware Platforms for Real-Time Simulation of Electric Machines
- Damper Currents Simulation of Large Hydro-Generator Using the Combination of FEM and Coupled Circuits Models
- Digital Twin for rotating machinery fault diagnosis in smart manufacturing
- Next Generation Digital Twin
- Real-Time HIL Emulation of Faulted Electric Machines Based on Nonlinear MEC Model
- Challenges of developing a digital twin model of renewable energy generators
- Digital Twin: Enabling Technologies, Challenges and Open Research
- Real-Time Simulation of Power Conversion in Doubly Fed Induction Machine
- Advancements in Real-Time Simulation for the Validation of Grid Modernization Technologies
- Magnetic Equivalent Circuit Modeling of Induction Motors
Cited by
- Thermal Analysis of Low-Power Three-Phase Induction Motors Operating under Voltage Unbalance and Inter-Turn Short Circuit Faults
- Analytical Model of Induction Machines with Multiple Cage Faults Using the Winding Tensor Approach
- Fast Flux and Torque Control of a Double Inverter-Fed Wound Machine Considering All Coupling Interferences
- Digital Twin in Electrical Machine Control and Predictive Maintenance: State-of-the-Art and Future Prospects
- CONSTRUCTION OF A ROTOR RADIAL VIBRATION MODEL OF EMU ELECTROMECHANICAL ENERGY CONVERSION EQUIPMENT USING THE FINITE ELEMENT METHOD
- Extending the Multiphysics Modelling of Electric Machines in a Digital Twin Concept
- Special Issue on Power Converter of Electric Machines, Renewable Energy Systems, and Transportation
- Analytical Model of Eccentric Induction Machines Using the Conformal Winding Tensor Approach
- Multi-fidelity neural optimization machine for Digital Twins
- A fault prediction framework for Doubly‐fed induction generator under time‐varying operating conditions driven by digital twin
- Multi-Fidelity Data Aggregation for Information Fusion in Simulation and Experiment
- Overview of Digital Twin Platforms for EV Applications
- Energy efficiency model-based Digital shadow for Induction motors: Towards the implementation of a Digital Twin
- Exploring Digital Twin-Based Fault Monitoring: Challenges and Opportunities
- When is a simulation a digital twin? A systematic literature review
- Digital Twins for Condition and Fleet Monitoring of Aircraft: Toward More-Intelligent Electrified Aviation Systems
- Digital Twin-Enabled Modelling of a Multivariable Temperature Uniformity Control System
- Experimental Identification of a Coupled-Circuit Model for the Digital Twin of a Wound-Rotor Induction Machine
- Continuous-Time Digital Twin with Analogue Memristive Neural Ordinary Differential Equation Solver
- A Review of Digital Twinning for Rotating Machinery
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