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Business training objectives: This major cultivates wide-caliber "compound" senior engineering and technical talents who can be engaged in the fields of system operation, automatic control, power electronics technology, information processing, test analysis, research and development, economic management, and electronic and computer technology application related to electrical engineering.
Business training requirements: Students in this major mainly learn a broad engineering technology foundation and certain professional knowledge in electrical technology, electronic technology, information control, computer technology, etc. The main characteristics of this major are the combination of strong and weak electricity, and electrical technology.
Combined with electronic technology, software and hardware, components and systems, students receive basic training in electrical and electronics, information control and computer technology, and have the basic ability to solve problems in electrical engineering technology analysis and control technology.
Main disciplines: Electrical Engineering, Computer Science and Technology, Control Science and Engineering.
Main courses: Circuit Principle, Fundamentals of Electronic Technology, Electrical Engineering, Power Electronics Technology, Electric Power Traction and Control, Computer Technology (Language, Software Basics, Hardware Basics, MCU, etc.), Signals and Systems, Control Theory. In the senior year, students will learn flexible, adaptable, and wide-coverage professional courses and professional elective courses according to the needs of society.
The main practical teaching links: including circuit and electronic technology experiments, electronic technology practice, metalworking practice, computer software practice and hardware practice, curriculum design, production practice, graduation project.
Main professional experiments: motor and control experiments, electrical engineering system experiments, power electronics experiments, etc.
Duration: 4 years.
Degree awarded: Bachelor of Engineering.
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The skill to learn is not to turn the horns!! Freshman year guarantees to eat high math and physics thoroughly! English can't be left behind!
Sophomore: Circuits (the most basic, the most important), electrical circuits (super difficult to learn, very important basics), line algebra and complex variable functions of mathematics, you also have to understand thoroughly, and you can also learn modulus well, which is not bad.
Year 3: Power System Analysis (Important), Digital Electricity, High Voltage (Important), Factory Electricity (Important), Automatic Control Principle (Weak Current Direction), Power Electronics (This is also very important, Modular Electricity is not good, you are difficult to understand), MATLAB (this is quite enjoyable) and MCU and PLC are two more soulful automation courses.
Year 4: Relay Protection (Important), Power System Automation (Important).
There are also some courses: such as DSP, data communication principles, automatic detection technology, fieldbus, you are interested and have the ability to learn well.
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Electrical engineering and automation courses include circuit principles, electronic technology basics, electrical engineering, power electronics technology, power drive and control, computer technology, signals and systems, control theory, etc.
The major of electrical engineering and automation cultivates a wide range of students who can be engaged in the fields of system operation, automatic control, power electronics technology, information processing, test analysis, research and development, economic management, and electronic and computer technology applications related to electrical engineering"Compound"Senior engineering and technical personnel.
The main characteristics of electrical engineering and automation major are the combination of strong and weak electricity, the combination of electrical technology and electronic technology, the combination of software and hardware, the combination of components and systems, students receive basic training in electrical and electronics, information control and computer technology, and have the basic ability to solve the problems of electrical engineering technology analysis and control technology.
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Summary. Main Disciplines: Electrical Engineering, Control Science and Engineering, Computer Science and Technology Main Courses:
Circuit Theory, Information Electronic Technology, Power Electronics Technology, Automatic Control Principle, Microcomputer Principle and Application, Fundamentals of Electrical Engineering, Electrical Engineering, Electrical Appliances, Power System Analysis, Motor Design, High and Low Voltage Electrical Appliances, Motor Control, Principles and Applications of Intelligent Electrical Appliances, Power System Relay Protection, Power System Integrated Automation, Building Power Supply and Distribution, etc.
What courses do you study for electrical engineering and automation?
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Main disciplines: electrical engineering, control science and engineering, computer science and technology Main courses: circuit theory, information and electronic technology, power electronics technology, automatic control principle, microcomputer principle and application, electrical engineering foundation, electrical science, electrical engineering, power system analysis, motor design, high and low voltage electrical appliances, motor control, intelligent electrical principles and applications, power system relay protection, power system integrated automation, building power supply and distribution, etc.
The major of electrical engineering and automation requires basic theories and basic knowledge in the fields of motor and control, electrical appliances and control, power system and automation, building electrical engineering, etc., and can design, manufacture, develop, test, analyze and research. Comprehensive operation, automatic control, power electronics technology, production management and application of electronics and computer technology compound senior engineering and technical personnel.
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1. Basic public courses include:
Advanced Mathematics, Linear Algebra, Probability and Statistics, Engineering Mathematics (Complex Variable Functions and Integral Transformations), College Physics, Engineering Drawing, Engineering Mechanics, Computer Fundamentals and C Programs, Circuits, Mathematics and Electricity, Modular Electricity, Electronic System Design and Practice, Metalworking Practice, etc.
2. The main professional courses include:
Automatic control theory, microcomputer principle, detection and sensing technology, computer network, single-chip microcomputer, motor and power drive foundation (including motor principle, transformer principle, motor speed regulation), power electronics technology (including inverter technology), PLC principle and application (commonly used in the field of industrial automation), single-chip microcomputer principle and application, power engineering (power transmission and distribution technology), etc.
There may be slight differences in the specific courses arranged by different schools for the same major, but they are generally these.
Hope the above is helpful to the subject.
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Jack-of-all-trades, everything has to be learned, basic courses c program, circuit, digital electricity, modular electricity, electronic system design and practice, etc., professional courses automatic control theory, single-chip microcomputer principle, detection and sensing technology, motor and power drag basics (including motor principle, transformer principle, motor speed regulation), power electronics, some schools will also learn some robotics and other courses, but they are not very refined. The employment is wide, and it is easy to find a job, depending on what kind of school it is, such as Harbin Institute of Technology, Xi'an Jiaotong University and other strong professional schools. Employment can go to power plants, power supply bureaus, maintenance, overhaul, commissioning of electrical equipment.
If the employment direction is biased towards power electronics, you can go to Hisense, Foxconn, Emerson, ABB and other high-tech companies.
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After work, I knew that this major was for mechanical engineering and service.
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The energy and virtual skills that need to be mastered to learn electrical engineering and its automation are as follows:
1. Learning ability: learning electrical requires a strong learning ability, which is true in all walks of life, and this ability is generally cultivated in college years;
2. Hands-on ability: For students who learn electrical, hands-on ability is also very important, and each school should have corresponding internship courses, such as metalworking practice, electrician practice, experiments in various courses, etc., and the examples in the course experiment are of great help to the actual design;
3. English ability: From the perspective of electrical majors, foreign countries are currently much ahead of China, and students must at least understand foreign literature.
4. Poor programming ability: In the electrical industry, if the programming ability is strong, you will get more opportunities, many operations in this era have been intelligent, and the control can be completed only through the programming language.
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The major courses of electrical engineering and automation mainly study electronic technology, power electronics technology, high-level rolling low-voltage electrical appliances, electrical engineering basics, electrical engineering, etc.
1. Specific learning courses:
Electrical engineering and automation courses include: electronic technology, power electronics technology, high and low voltage electrical appliances, electrical engineering fundamentals, electrical engineering, circuit theory, automatic control principles, microcomputer principles and applications, electrical appliances, power system analysis, motor design, motor control, intelligent electrical principles and applications, etc.
2. Training objectives of electrical engineering and automation:
Cultivate students with basic theoretical knowledge of engineering and relevant professional knowledge with electric energy production, transmission and utilization as the core, be able to use the knowledge learned to solve engineering problems and build engineering systems, have good social ethics and professional ethics, and adapt to social development of comprehensive literacy.
It can be engaged in planning and design, electrical equipment manufacturing, power plant and power grid construction, system commissioning and operation, information processing, protection and system control, stool monitoring, maintenance and overhaul, environmental protection, economic management, quality assurance, market transactions and other fields related to electrical engineering, and has high-quality professionals with scientific research, technology development and organization and management capabilities.
Professional training mode:
1. Clarify the training orientation of school-enterprise coupling.
Regularly send students to the practice base for internship, focusing on cultivating students' ability to solve practical problems, further cultivating students' ability in project construction, project development, and system research and development, and improving the fit of students into employment positions in the future.
2. Further clarify the training orientation of the integration of industry and education.
In the specific course teaching links, the future development standards and the course content are integrated and docked, the teaching process and the production process are integrated, and the new concept and new model of talent training with diversified professional directions are implemented.
3. Strengthen the student-centered training positioning.
Highlight the subjectivity of students in learning, change the traditional teacher-centered teaching method, and gradually change to teacher-student interaction and student-centeredness, mobilize students' enthusiasm and desire for knowledge, and stimulate creativity.
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It's really hard. The various classes I took were very brain-burning, and the hands-on ability was also very demanding. For example, if you want to solder this monolithic, the circuit is designed and routed by yourself.
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