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Electric Propulsion: Fundamentals and Applications
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Related lectures (36)
Asynchronous Motor: Electronic Control
MOOC: Electromechanical conversion II
Covers voltage/frequency variation in big engines and vector control for synchronous and asynchronous motors.
Electric Motors: Principles and Applications
Explores electric motor principles, linearity, control systems, active suspensions, and Laplace transforms.
Asynchronous Motor: Examples of Implementations
MOOC: Electromechanical conversion II
Explores practical examples of asynchronous motors in aviation, ski lifts, and household heating systems.
Rotating Field, Torque Generation
MOOC: Electromechanical conversion II
Explains the interaction of rotating fields in motors and the conditions on supply frequencies.
Robotics: Actuation and Mobility Analysis
Covers corrected exercises from the 2020 exam in the field of robotics, including topics such as accuracy, speed, DC motors, optimal gear ratio, dynamics of robot arms, encoders, and kinematics.
Robotics Actuators
Explores hydraulic, pneumatic, and electromechanical actuators used in robotics, including stepper motors and specific energy comparisons.
Synchronous Motor, Electric Drives
MOOC: Electromechanical conversion II
Explores synchronous motors in electric drives, covering auto-commutation, rotor position detection, sensor options, and commutation modes.
Motors: DC and Servos
Explains DC motor operation, PWM control, and programming techniques for motor control applications.
Hydropower Innovations: Water Turbines and Pump-Turbines
Covers the importance of water turbines and pump-turbines in advancing hydropower technology and sustainability.
DC Motor, Characteristic Equations
MOOC: Electromechanical conversion II
Explores the characteristic equations of a DC motor and their impact on motor performance.
Permanent Magnet Synchronous Motor
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Explores the Permanent Magnet Synchronous Motor, focusing on power balance, torque characteristics, and an example with a BMW 130i.
Direct Current Machines: Principles and Applications
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Provides an overview of direct current machines, covering their principles, construction, and applications in various fields.
Synchronous Motors: Permanent Magnet Applications and Characteristics
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Discusses the principles and applications of synchronous motors with permanent magnets, focusing on their operation and performance characteristics.
Basic Elements of Electric Machines
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Covers the basic elements of electric machines, including magnetic circuits and different types of motors.
Fundamentals of Electric Machines: Electromagnetic Principles
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Explains the fundamental principles of electric machines and the generation of electromagnetic torque.
Exergy and Electrical Motors: Fuel Cell Insights
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Discusses exergy, electrical motors, and introduces fuel cells, focusing on their efficiency and operational principles.
DC Motors: Excitation and Induced Voltage
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Covers the principles of DC motors, excitation types, induced voltage equations, power balance, and operating modes.
Stepper Motors: Types and Functionality
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Covers the principles and types of stepper motors, including reluctance, electromagnetic, and Lavet motors, and their applications in technology.
Parallel Excitation Motor: Propeller Aerodynamics
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Explores parallel excitation motors in propeller aerodynamics for flying robots.
Induction Motors: Starting Methods and Characteristics
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Discusses asynchronous induction motors, focusing on their starting methods and characteristics, including star-delta and auto-transformer techniques.
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