Active Fault-tolerant Control Surface Permanent is a M.Tech project topic for Electrical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.
Active Fault-tolerant Control Surface Permanent Project Details
| Abstract |
This project tackles the problem of demagnetization faults in surface permanentβmagnet synchronous motors (SPMSMs). It builds and tests an active faultβtolerant control (FTC) system. The control scheme combines two parts: * A fuzzy extended state observer (FESO) that uses an intervalβtypeβ2 fuzzy logic controller (IT2FLC). * A secondβorder slidingβmode controller (SOSMC) that runs the superβtwisting algorithm. The FESOβs main job is to estimate how severe a demagnetization fault is, and to feed that information back so the controller can compensate in real time. At the same time, the superβtwisting SOSMC reduces the chattering that ordinary slidingβmode control produces, while still keeping motor speed and current tracking accurate even when a
fault occurs. Simulations were run for many cases, changing the amount of demagnetization and adding external load disturbances. The results show that mixing IT2FLC with SOSMC improves the motorβs ability to reject disturbances and keeps the system stable, without needing an exact model of the fault. This approach can guide the design of robust, faultβtolerant drives for safetyβcritical industrial use.
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| Reference Paper |
Active Fault-tolerant Control for Surface Permanent Magnet Synchronous Motor Under Demagnetization Fault |
| Domain |
Electrical Engineering |
| Sub-Domain |
Control Systems / Advanced Control / Sliding Mode |
| PDF Download |
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| Get Help |
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