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Topic: ADRC
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Topic: Integral Sliding Mode Control
Topic: Jacobi polynomial neural network
Topic: Lyapunov stability principle
Topic: PID
Topic: PMSM
Topic: absolute pressure piston manometer
Topic: adaptive controller
Topic: adaptive fuzzy logic system (AFLS)
Topic: anomaly detection
Topic: asymmetric
Topic: bond graph
Topic: boundary control
Topic: changing balanced position
Topic: classic PI design
Topic: control design
Topic: digital twins
Topic: direct current microgrids
Topic: distributed drive
Topic: electric vehicle
Topic: experimental validation
Topic: failure control
Topic: fault diagnosis
Topic: flexible cable
Topic: four-tank system
Topic: friction compensation
Topic: fuzzy control
Topic: gain-scheduled control
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New Control Schemes for Actuators
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Topic: Induction Motor
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Topic: Integral Sliding Mode Control
Topic: Jacobi polynomial neural network
Topic: Lyapunov stability principle
Topic: PID
Topic: PMSM
Topic: absolute pressure piston manometer
Topic: adaptive controller
Topic: adaptive fuzzy logic system (AFLS)
Topic: anomaly detection
Topic: asymmetric
Topic: bond graph
Topic: boundary control
Topic: changing balanced position
Topic: classic PI design
Topic: control design
Topic: digital twins
Topic: direct current microgrids
Topic: distributed drive
Topic: electric vehicle
Topic: experimental validation
Topic: failure control
Topic: fault diagnosis
Topic: flexible cable
Topic: four-tank system
Topic: friction compensation
Topic: fuzzy control
Topic: gain-scheduled control
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New Control Schemes for Actuators
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Advanced Control Systems for Electric Drives
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IET Control Theory & Applications
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Design and Control of Power Converters 2019
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Control Based on PID Framework
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Energy Efficiency in Electric Devices, Machines and Drives
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Design and Control of Electrical Motor Drives
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Advances in Rotating Electric Machines
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Applications of Power Electronics
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Nonlinear Systems
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Advanced Control and Estimation Concepts, and New Hardware Topologies for Future Mobility
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