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Who can help me list a few topics about the graduation report of communication and signal specialty?
Guide to the topic selection of graduation design (thesis) for undergraduates majoring in communication engineering

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I. Discipline field of communication engineering

Communication engineering specialty belongs to electrical information specialty. Electrical information majors also include: electrical engineering and automation (080601); Automation (080602); Electronic Information Engineering (080603); Computer Science and Technology (080605); Electronic Science and Technology (080606); Biomedical Engineering (080607).

Second, the main research direction and personnel training objectives of communication engineering specialty

1, the main research direction of communication engineering.

(1) data communication transmission research;

(2) Research on signal and information processing;

(3) Simulation research of communication system;

(4) Application of new communication technology;

(5) Research on communication electronic circuit or microcomputer interface;

(6) Software development in communication, network layer protocol research, etc.

(7) Research on network information security.

2. Training objectives of communication engineering professionals

Communication engineering majors train senior engineers who have knowledge of communication technology, communication system and communication network, can engage in research, design, manufacture and operation in the field of communication, and engage in the development and application of communication technology and equipment in various departments of national economy and national defense industry.

Students in this major mainly study the basic theory, composition principle and design method of communication systems and communication networks. After the training of communication engineering practice, they have the basic ability to engage in the design, development, debugging and engineering application of modern communication systems and networks.

Graduates majoring in communication engineering should have the following knowledge, ability and quality structure:

(1) Master the basic theory and knowledge in the field of communication.

(2) Master communication technologies such as light wave, wireless and multimedia.

(3) Master the analysis and design methods of communication systems and communication networks.

(4) Understand the basic principles, policies and regulations of communication system and communication network construction.

(5) Understand the latest progress and development trend of communication technology.

(6) Have the basic ability of design, development, debugging and application of communication systems and communication networks.

(7) Master the basic methods of literature retrieval and data query, and have certain scientific research and practical work ability.

(8) Be good at using existing knowledge to learn and dig new knowledge, and have the ability to apply what you have learned to practical activities and use scientific knowledge to analyze and solve practical problems.

(9) Have the ability to observe and analyze problems independently, dare to be innovative, dare to question, have the basic ability to carry out scientific innovation activities, and be able to flexibly use what they have learned to serve the society.

3. Classification of communication engineering courses.

(1) Digital communication and network exchange: probability theory and mathematical statistics, random signal analysis, communication principle, wireless communication principle, communication networking and program-controlled exchange, computer communication and network, mobile communication, optical fiber communication, microwave communication, electromagnetic wave and electromagnetic field;

(2) Signal and information processing: signal and system, digital signal processing, communication principle, data structure, digital image processing, information theory and coding;

(3) Electronic circuits: circuit analysis, analog circuits, digital circuits, high-frequency electronic circuits, DSP principles and applications, EDA technology, and hybrid integrated circuits;

(4) Computer application: computer culture foundation, C language programming, assembly language, database principle and application, software engineering, object-oriented programming, multimedia technology, microcomputer principle and interface technology, single chip microcomputer principle application, etc.

Third, the graduation design (thesis) topic selection principle

The topic selection of graduation thesis (design) of this major should follow the following principles:

1, combined with major.

Graduation thesis is mainly used to measure students' mastery of the knowledge they have learned, so the topic of the thesis cannot be divorced from the professional knowledge they have learned. Some students' work has nothing to do with their majors, but I have some exploration or research on my own work, and my graduation thesis has written this content. This is only a work summary, not a graduation thesis.

Engineering students' majors are often closely related to their work. They have rich experimental experience and perceptual knowledge. After several years of systematic study, they can learn the corresponding theoretical knowledge and have a new understanding of their work. They can use what they have learned to improve their original working methods, working procedures and working tools and improve their work efficiency.

2, the content should be new

Engineering papers are not only theoretical, but also practical and practical. With the rapid development of engineering disciplines, teaching materials often fall behind as soon as they enter the classroom. By the time students graduate, the knowledge they have learned may have been almost eliminated, so students should pay attention to the knowledge they use and keep up with the development of the discipline.

3. The topic should be of appropriate size and moderate difficulty.

The topic of the paper should not be too big, otherwise it will inevitably cover a wide range. When students participate in scientific research, there are generally problems of narrow knowledge and insufficient theoretical basis. In addition, students mainly study part-time, and the topic is too big, which is bound to be impenetrable, even chaotic and difficult to control. So the topic must be specific and moderate.

The topic selection should be moderate in difficulty. If it's too hard for you, you can't do it yourself. In the end, I may give up halfway and can't finish my paper. If it is too easy, the level of the thesis is too low, which can not well reflect the academic achievements and scientific research level in recent years, and at the same time, I can't get exercise myself.

It is best to choose a topic according to personal interests. If you have a high interest in the topic, you will have spontaneous enthusiasm and enthusiasm, and the article is easy to write new ideas.

Fourth, graduation project (thesis) topic selection

Topic selection is one of the keys to determine the success or failure and quality of graduation design (thesis) training.

1. Graduation design (thesis) for undergraduates majoring in communication engineering can be divided into theoretical graduation design (thesis) and applied graduation design (thesis).

2. From the source of undergraduate graduation design (thesis), it can also be divided into two categories: teacher-proposed graduation design and self-selected graduation design (thesis).

3. Students should determine the direction of topic selection according to the course group of communication engineering specialty, and all applied courses in the direction of digital communication and network exchange and signal and information processing can be used as the content of topic selection. However, the application direction of electronic technology and computer must be combined with communication or signal information processing, and there must be communication-related content.

4. Judging from the research fields involved in graduation design (thesis) of communication engineering major, it can be the following:

(1) network switching and data transmission analysis;

(2) Communication network or digital communication simulation (MATLAB, Systemview, etc. );

(3) Signal and information processing (such as data acquisition, USB interface transmission, image data processing, etc. );

(4) Infrared remote sensing technology (such as anti-theft remote sensing technology)

(5) Network information security (such as coding technology)

(6) Development of communication software (such as the combination of C language and Bluetooth)

(7) Design of data transmission interface circuit or software (such as embedded Bluetooth design)

(8) the application or development of new communication technologies such as optical fiber, wireless and mobile;

(9) Microwave technology, electromagnetic wave transmission technology, satellite radar, etc.

(10) computer network or computer control.

(1 1) communication in the military application research;

(12) Program-controlled switching, interactive cable TV network, etc.

(13) Other propositions related to communication.

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From:/kuix/blog/item/d8ca540ab49e153a2935cc.