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工程硕士光学工程领域专业学位研究生培养方案(代码:085202 授工程硕士专业学位)一、培养目标1掌握本领域坚实的基础知识和系统的专门知识;掌握本领域的基本研究方法与技能,具备一定的研究实际问题的能力;2掌握并能熟练运用一门外国语;3培养严谨求实的学习态度和工作作风;4可胜任本领域的相关的工作。二、主要研究方向1光通信系统及器件;2光电检测与信息处理技术;3激光技术与器件;4太赫兹光电子学;5微光机电技术;6光电显示、太阳能电池材料与器件。三、学习年限与培养方式培养方式为全日制,专业硕士学位的学习年限一般为2年。四、学分要求与分配总学分要求32学分,其中学位课学分要求18学分,研究环节要求14学分,具体学分分配如下表:总学分32学分修课学分18学分校级公共课程7学分,其中:英语2学分,思政类2学分、数学3学分专业领域基础课2学分(必修)专业选修课6 学分实践教学(实验、设计、调查分析)3 学分补修课程、任选课程只计成绩,不计学分研究环节14学分专业课程实习实践(含报告)4学分实践环节4学分专业实训(含报告)4学分开(选)题报告1学分必修论文中期进展报告1学分必修专业学位论文8学分必修五、课程设置及学分分配光学工程领域专业学位硕士研究生课程设置类别课程课程代码课程名称学时学分季节开课单位备注学位课程18学分公共课程7学分411.500第一外国语(英语)322秋外语学院必修408.601中国特色社会主义理论与实践研究362秋马院011.700应用高等工程数学483秋数学学院408.602自然辩证法概论(理工)181秋马院选修专业领域基础课2学分182.535光电技术概论483秋光学与电子信息学院必修专业选修课限定选修6学分182.501光电信号处理483秋光学与电子信息学院182.503现代实用光学系统483秋光学与电子信息学院182.502光波导技术322秋光学与电子信息学院182.537激光加工工艺322秋光学与电子信息学院182.513光电信息与通信系统322秋光学与电子信息学院182.516光电成像与遥感技术322春光学与电子信息学院182.518半导体激光器及其应用322春光学与电子信息学院182.519光电技术322春光学与电子信息学院182.528空间激光通信原理与技术322春光学与电子信息学院182.508光通信与光交换技术322秋光学与电子信息学院182.522光电检测与光学图像信号处理322春光学与电子信息学院182.541微纳光子器件数值仿真322春光学与电子信息学院182.542宽带光接入网322秋光学与电子信息学院182.799光纤传感技术322春光学与电子信息学院182.798光纤通信原理与系统设计322春光学与电子信息学院182.797参加学术讲座或学术报告(合计至少6次)1光学与电子信息学院实践教学(实验、设计、调查分析)3学分182.538光电技术综合实验644光学与电子信息学院182.796项目管理实践2光学与电子信息学院182.795光电领域调查分析报告1光学与电子信息学院182.794光电行业发展报告1光学与电子信息学院非学位课补修课程BX182.01工程光学40秋光学与电子信息学院本科非光电类的硕士生必修实践研究环节14学分650.705专业课程实习实践(含报告)4光学与电子信息学院必修学分4学分650.706专业实训(含报告)4光学与电子信息学院650.708开(选)题报告1光学与电子信息学院必修650.709论文中期进展报告(硕)1光学与电子信息学院必修650.710专业学位论文(硕)8光学与电子信息学院必修六、实践环节实践教学不少于半年;以就业目标为对象,凡直接服务于就业目标的学习、实习、研发等活动,均属于应用于实践活动,包括校内实验教学、参与导师课题的研发,校外企事业单位的实习实践等。七、学位论文论文必须以完成一个工程课题为选题原则,既可以是校外企业的课题,也可以是导师研究项目中的课题,要相对完整,具有可操作性,并兼顾一定的学术性。八、学位授予论文评阅和答辩必须有一名专业技术职务老师(副高级及以上)参加。课程考核合格、学分修满且论文答辩通过者,授予工程硕士专业学位。Educational Plan for Master Degree ProgramOptical Engineering(Discipline code: 085202 Master of Engineering)I. Educational Objectives1. Be able to master the basic theory, professional knowledge in the field of optical engineering; master basic research approach and skills in this field, develop the ability to solve practical problems;2. Master a foreign language;3. Be trained to have rigorous and realistic scientific attitude and good work ethic;4. Be competent in the field of optical engineering and related field.II. Main Research Areas1. Optical Communication Networks System and devices;2. Optoeletronic detection & information process technology;3. Laser technology and devices; 4. Terahertz Optoelectronics; 5. MOEMS technology; 6. Photoelectric display, solar cell materials and devices.III. The Length of Schooling and Training ModeThe M.Eng Student should be studied in full-time scheme. The M.Eng Student are trained in terms of professional courses, professional practice and final thesis, which should be completed no longer than 2 years.IV. Credit Requirement and AllocationEach student is required to gain at least 32 credits, including at least 18 courses learning credits and 14 research credits, as show in the following table.Total Credits32 creditsCourses learning18 creditsPublic courses credit 7 credits, including 2 for English course, 2 for political courses, 3 for mathematical courses.Fundamental requisite courses 2 creditsFundamental optional courses 6 creditsPractices (experiments, design and survey analysis) 3 creditsOnly scores but no credits for redeemed and voluntary courses.Research14 creditsSpecial course design and reports4 creditsPractical phase4 creditsSpecial practices and reports4 creditsThesis topic selection report1 creditRequiredThesis interim report1 creditRequiredThe final thesis8 creditsRequiredV. Curriculum Provision and Credit AllocationCurriculum for Master of Optical EngineeringCourses typeCourse codeCourse nameTimeCreditSemesterDepartmentOtherDegree requird courss Study 18 creditsPublic courses 7 credits411.500First foreign language(English)322autumnSchoool of Foreign languageRequired408.601Theory and Practice of Scientific Socialism with Characteristics362autumnSchool of Marxism011.700Advanced Engineering Mathematics483autumnSchool of Mathematics and Statistics408.602Dialectics of Nature181autumnSchool of MarxismElectiveProfessi-onal fundam-ental course 2 credits182.535Introduction for Optoelectronic Technology483autumnSchool of Optical and Electronic InformationRequiredProfessi-onal optional courses 6 credits182.501Optoeletronic signal processing483autumnSchool of Optical and Electronic Information182.503Modern practical optical system483autumnSchool of Optical and Electronic Information182.502Optical Waveguide Technology322autumnSchool of Optical and Electronic Information182.537Laser processing technics322autumnSchool of Optical and Electronic Information182.513Optoelectronic Information and Communication System322autumnSchool of Optical and Electronic Information182.516Imaging and remote sensing technology322springSchool of Optical and Electronic Information182.518Semiconductor Lasers and Their Applications322springSchool of Optical and Electronic Information182.519Optoelectronic Technology322springSchool of Optical and Electronic Information182.528The Principle and Technology of Free Space Optical communication322springSchool of Optical and Electronic Information182.508The Technology of Optical Communication and Photonics Switching322autumnSchool of Optical and Electronic Information182.522Photoelectricity detecting & image processing322springSchool of Optical and Electronic Information182.541Simulations of Micro-Nano photonics devices322springSchool of Optical and Electronic Information182.542Broadband optical access network322autumnSchool of Optical and Electronic Information182.799Optical fiber sensing technology322springSchool of Optical and Electronic Information182.798Principle and system design for Optical fiber communication322springSchool of Optical and Electronic Information182.797Attend academic lectures or academic report(6)1School of Optical and Electronic InformationPracticeCourse(Expe-riments,design,survey)3credits182.538Optoelectronic technology Experiment644School of Optical and Electronic Information182.796Practice of project management2School of Optical and Electronic Information182.795Survey analysis report in optoelectronic field1School of Optical and Electronic Information182.794Optoelectronic Industry development report1School of Optical and Electronic InformationNon-degree required courseRedeem-ed courseBX182.01Engineering Optics40autumnSchool of Optical and Electronic Informationrequired course for students not majored in opticsPractical and Research Phase14 credits650.705Professional courses practices and reports4School of Optical and Electronic Informationrequired credit4 credit650.706Professional field work and reports4School of Optical and Electronic Information650.708Thesis topic selection report1School of Optical and Electronic InformationRequired650.709Thesis interim report1School of Optical and Electronic InformationRequired650.710The final thesis8School of Optical and Electronic InformationRequiredVI. Internship and Practical TrainingStudents are required to take professional practices no less than 6 months; professional practice includes Professional courses, field work, research work, which benefits students future career, such as taking experimental course on campus
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