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1. The Aim
The discipline includes two specialties, or sub-disciplines: Precision instrumentation and machinery, Measurement & test techniques and instrumentation. The discipline is focused on the subjects: modern design method of precision instruments and machinery, modern testing and sensory techniques, micro-machine and special robot techniques, intelligent instrument and embedded system, computer testing & controlling techniques and fault diagnosis, information processing, network communication and managing automation. For the master students it is required to learn the foundational courses in the disciplines of precision instrument and machine, measurement & test techniques and instrumentation, etc., and to know the development tendency in the field of instrumentation science and technology. It is emphasized to cultivate the students to have innovative spirit and creative idea, and to improve their ability of analyzing and solving problems by their own.
2. Duration of Study
The regular duration: 2.5 years
3. Main Fields of Research
3.1. Precision instrumentation and machinery
1. Modern design method of precision instrument & machine
2. Modern testing and sensory techniques
3. Micro-machine and special robot techniques
3.2. Measurement & test techniques and instrumentation
1. Intelligent instrument and embedded system
2. Computer testing & controlling techniques and Fault Diagnosis
3. Information processing, network communication and managing automation
4. Courses and Credits
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Category
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Course Number
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Course Name
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Period
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Credit
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Term
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Remarks
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|
| Academical Degree Courses | Political Theoretical Course |
001000701
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Theory and Practice of Scientific Socialism
|
30
|
2
|
1
|
|
|
001000702
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Natural Dialectics
|
45
|
3
|
2
|
|||
| First Foreign Language |
001000704
|
Public English
|
100
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3
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1, 2
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||
|
091000701
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Professional English
|
40
|
2
|
3
|
|||
| Basic and Specialized Course |
001000706
|
Numerical analysis
|
40
|
4
|
1
|
Precision instrumentation and machinery | |
|
091102701
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Computer dynamical testing and controlling
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40
|
4
|
2
|
|||
|
091102702
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Signal collecting and processing
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40
|
4
|
1
|
|||
|
001000707
|
Stochastic process
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40
|
4
|
1
|
Measurement & test techniques and instrumentation | ||
|
091102703
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Digital signal processing
|
40
|
4
|
2
|
|||
|
091102704
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Computer Network and the principle of communication
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40
|
4
|
3
|
|||
| Required Courses | Literature Reading Seminar |
091102901
|
Precision mechanical designing
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40
|
4
|
1
|
Precision instrumentation and machinery |
|
091102902
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New sensors
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40
|
4
|
2
|
|||
|
091000901
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MEMS (Micro-electro-mechanical system)
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40
|
4
|
3
|
|||
|
091102903
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Modern optical testing techniques
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40
|
4
|
2
|
|||
|
091102904
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Engineering digital image processing
|
40
|
4
|
3
|
|||
|
091102905
|
Machine vision
|
40
|
4
|
4
|
|||
|
091102906
|
Computer testing & controlling techniques
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40
|
4
|
2
|
Measurement & test techniques and instrumentation | ||
|
091102907
|
Field bus technology
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40
|
4
|
2
|
|||
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091102908
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New sensory techniques
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40
|
4
|
2
|
|||
|
091102909
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Signal collecting and processing
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40
|
4
|
3
|
|||
|
091102910
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Information aft-processing techniques
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40
|
4
|
3
|
|||
|
091102911
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Embedded automatic controlling system
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40
|
4
|
3
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| Academic Seminar |
|
|
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2
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|
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5. Research program and Thesis
A master student must obtain required credits before he/she is eligible for undertaking research project for his/her master thesis. The thesis project is the most important measure that helps the student to apply foundational theory and knowledge to solving problems in research work, to cultivate innovative spirit and to train the abilities of innovation. The thesis work should include the following steps in general:
1. Literature survey: The student is required to make an extensive literature survey in research field under the direction of the supervisors, and to give at least two oral reports on the seminars of their discipline.
2. Kickoff report: The student must complete a kickoff report about his/her research project and work-plan in details before the forth semester. The project should have the meaning either of scientific /technical value, or of solving technological problems arising in the industry. The report should have a length of more than 3000 words and not less than 30 reference articles. In the report a historical review, the conceptual idea on the research, the problems to be solved and the way might be followed should be included. This report must be assessed by an expert group including the supervisor and other 3-5 professors. The expert group will give their comments and suggestion to it.
3. Mid-term Report: The student must submit a mid-term report with about 1000 words summarizing the research progress half year later after kickoff report, and then give an oral report to supervisor group in the academic seminar.
4. Defense of Thesis: After the thesis being completed, the student should attend a defense meeting held according to the regulations of the National Degree Office to report research achievements, to answer questions, and to listen to the judgment given by defense committee.
5. Publication requirement: The student must have at least one article related to the thesis project published /accepted by the core journals (the student must be the first author or the second only when the supervisor is the first), or a patent applied, or an important achievement (as a principal researcher ordered in 5) identified by the organization equivalent to / higher than the level of provincial one.
1. University graduate
2. HSK 4
3. Aged 18 - 60
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