2025级 083500|软件工程 硕士生 培养方案
年级
2025
培养类型
硕士生
学位类别
学术学位
学院
信息工程学院
专业
083500|软件工程
学制
3.0
课程学分要求
最低总学分
24.0
非学位课
8
必修环节
3
学位课
13
培 养 环 节
培养目标
中文:为适应我国国民经济发展和社会主义建设的需要,本学科培养德智体美全面发展,具备基础理论与应用能力的高级人才,本学科培养的硕士研究生应满足以下要求: 1. 坚持党的基本路线,热爱祖国,遵纪守法,道德品质好,立志为社会主义现代化建设服务。 2. 具备坚实的软件工程理论基础和系统的专门知识,具有较好的创新意识和综合性的学术修养、严谨求实的科学态度和作风,能够综合运用软件工程方法、技术和工具分析和解决实际问题,具备较全面的软件研发能力与实践经验;能从事软件工程的基础研究、应用基础研究、应用研究、关键技术创新和大型软件系统分析、设计、开发与管理等工作,也可继续攻读博士学位。 3. 掌握一门外国语,能够熟练阅读本学科的外文资料,具备专业写作和学术交流能力。 4. 诚实守信,具有良好的学术道德和团队合作精神;身心健康,具备承担科学研究和专业技术工作的体魄和素养。
英文:To meet the needs of China's national economic development and socialist construction, this discipline cultivates high-caliber specialists who are comprehensively developed in morality, intelligence, physical fitness, and aesthetics, and who possess both solid theoretical foundations and strong practical capabilities. Graduates of the master’s program in this discipline shall satisfy the following requirements: 1. Adhere to the Party’s basic line, love the motherland, abide by laws and regulations, demonstrate high moral standards, and be committed to serving socialist modernization. 2. Possess a solid theoretical foundation in software engineering and systematic specialized knowledge; exhibit strong innovation awareness and comprehensive academic cultivation; maintain a rigorous and pragmatic scientific attitude and style; be capable of comprehensively employing software engineering methods, technologies, and tools to analyze and solve practical problems; and possess well-rounded software development capabilities and practical experience. They shall be qualified to conduct fundamental research, applied basic research, applied research, and key technological innovation in software engineering, as well as to perform analysis, design, development, and management of large-scale software systems. They shall also be prepared to pursue doctoral studies. 3. Master one foreign language, be proficient in reading foreign literature in the discipline, and possess professional writing and academic communication skills. 4. Demonstrate honesty and trustworthiness, uphold good academic ethics, and exhibit strong teamwork spirit; maintain physical and mental health, and possess the physical and mental qualities necessary to undertake scientific research and specialized technical work.
学科/类别简介及研究方向
中文:软件工程学科是河南科技大学振兴计划学科,也是国家和河南省战略性新兴产业密切相关学科之一。本学科培养从事软件理论和软件技术开发相关领域的理论研究、系统设计、软件开发、软件测试和管理的工程技术人才。重点围绕软件工程理论与方法、软件工程技术、软件服务工程等方面进行研究。本学科包括以下研究方向: 1.软件工程理论与方法 面向社会计算、移动互联网和信息物理融合系统等新型计算和应用场景,重点研究基于大模型的软件缺陷检测理论和方法,以及可持续演化的智能化软件理论、方法和技术。研究大型复杂软件开发、运行和维护的理论和方法,以及形式化方法在软件工程中的应用。主要包括软件范型、软件语言、软件形式化方法、软件构造与演化、以及软件建模和分析等。 2. 软件工程技术 面向高端装备制造数字化转型应用,在工业互联网平台、工业智能软件、工业检测系统等领域,重点开展领域分析、领域设计、领域实现和工程应用研究。研究大型复杂软件开发、运行与维护的原则、方法、技术及相应的支撑工具、平台与环境。主要包括软件需求工程、软件设计方法、软件体系结构、软件分析与测试、软件维护和演化、软件工程管理、以及软件工程支撑工具等。 3. 软件服务工程 面向移动云计算环境和开放、动态、复杂的未来互联网应用,研究大型复杂软件服务体系结构、服务业务过程和服务计算关键技术,探索移动云服务体系结构和服务组合优化理论,建立跨域、跨界、跨行业、强耦合的软件服务架构。研究面向服务的软件工程原理、方法和技术,构建支持软件服务系统的基础设施和平台。主要包括面向服务的软件体系结构、面向服务的业务过程、软件服务工程方法、以及软件服务运行支撑等。
英文:Software Engineering is a priority discipline under Henan University of Science and Technology’s Revitalization Initiative and is closely aligned with the strategic emerging industries of both China and Henan Province. The discipline cultivates engineering professionals capable of conducting theoretical research, system design, software development, software testing, and management in the fields of software theory and software technology. Its research is concentrated on software-engineering theories and methods, software-engineering technologies, and software-service engineering. Throughout its construction and development, the discipline has embraced the educational philosophy of “solid foundations, emphasis on practice, and promotion of innovation.” By integrating local socioeconomic needs and its own distinctive strengths, the discipline actively engages in scientific collaboration and joint talent cultivation with research institutes, local enterprises, and public institutions, thereby serving local economic and social progress while contributing to national defense and broader national strategies. The discipline encompasses the following three research directions: 1. Software-Engineering Theory and Methods Focusing on emerging computing and application scenarios such as social computing, mobile Internet, and cyber-physical systems, this direction investigates large-model-based theories and techniques for software-defect detection, as well as sustainable-evolution theories, methods, and technologies for intelligent software. It explores the theories and methods for developing, operating, and maintaining large-scale, complex software systems, and the application of formal methods in software engineering. Key topics include: software paradigms, software languages, formal methods, software construction and evolution, and software modeling and analysis. 2. Software-Engineering Technology Oriented to the digital-transformation needs of high-end equipment manufacturing, this direction conducts domain analysis, design, implementation, and engineering application research on industrial Internet platforms, industrial intelligent software, and industrial inspection systems. It studies the principles, methods, and technologies—together with supporting tools, platforms, and environments—required for the development, operation, and maintenance of large-scale, complex software. Core areas include: software requirements engineering, software design methods, software architecture, software analysis and testing, software maintenance and evolution, software project management, and software-engineering support tools. 3. Software-Service Engineering Addressing mobile cloud-computing environments and the open, dynamic, and complex applications of the future Internet, this direction examines large-scale, complex software-service architectures, service business processes, and key service-computing technologies. It explores mobile cloud-service architectures and service-composition optimization theories, aiming to establish cross-domain, cross-industry, and tightly coupled software-service frameworks. The direction investigates service-oriented software-engineering principles, methods, and technologies, and constructs the infrastructure and platforms that underpin service-oriented software systems. Main topics include: service-oriented software architectures, service-oriented business processes, software-service-engineering methods, and runtime support for software services.
培养方式及学习年限
中文:1.培养方式 本学科硕士研究生培养实行导师负责制,采用导师个别指导或导师组集体培养相结合、课程学习和论文研究工作相结合的方式。 2.学习年限 本学科硕士研究生的学制为3年,原则上,全日制硕士研究生最长学习年限为4年,非全日制硕士研究生最长学习年限为5年。 研究生提前完成培养计划中规定的课程学习和学位论文工作,论文答辩通过,达到申请学位要求者,可申请提前毕业。硕士研究生(学制为3年)最多提前半年毕业。提前毕业的硕士研究生须满足以下条件之一: (1)发表SCI二区及以上期刊论文1篇,或发表SCI三区及以上期刊论文2篇;同时授权发明专利1件。 (2)发表SCI期刊论文1篇,同时获省部级一等奖及以上科技奖励1项(限前10名)。
英文:1. Cultivation method The training of postgraduates in this discipline implements the tutor responsibility system, and adopts the method of combining individual tutors or collective training of tutor groups, and combining course study and dissertation research work. 2. Years of study The length of study for postgraduates in this discipline is 3 years. In principle, the longest study period for full-time postgraduates is 4 years, and the longest study period for part-time postgraduates is 5 years. Graduate students who have completed the prescribed course studies and thesis work outlined in the training plan ahead of schedule, passed the thesis defense, and met the requirements for degree application, are eligible to apply for early graduation. Master's students (with a study duration of 3 years) can graduate up to six months ahead of schedule. Master's students who graduate early must meet one of the following conditions: (1) Publish one paper in a SCI journal ranked as second quartile or higher (SCI Q2 or above), publish two papers in SCI journals ranked as third quartile or higher (SCI Q3 or above), Simultaneously obtain one authorized invention patent. (2) Publish one paper in an SCI journal, simultaneously receive a first-class or higher provincial/ministerial-level science and technology award (limited to the top 10 winners).
课程学习及学分要求
中文:学术学位硕士研究生课程由学位课和非学位课组成,硕士学位研究生课程教学原则上在2个学期完成。其中,学位课包括公共必修课、公共和专业基础课,非学位课是指公共选修课和专业选修课。要求: 1.总学分不少于24学分。其中,课程总学分不少于21学分,必修环节应修满3学分。 2.课程中学位课不少于13学分,非学位课不少于8学分。 3.非学位课中,专业选修课不少于6学分,课程的选修可结合研究方向和导师的意见进行选择。 4.学位课考试方式为考试,课程成绩≥60分可获得学分,学位课平均成绩≥75分方可申请学位。非学位课考试方式为考试或考查。
英文:Academic Master’s Degree Curriculum Structure The curriculum for academic Master’s students consists of degree courses and non-degree courses. Coursework must normally be completed within two academic semesters. Degree courses include (i) compulsory public courses and (ii) compulsory public & disciplinary foundation courses. Non-degree courses consist of public electives and disciplinary electives. Requirements 1. Total credits ≥ 24, Course credits ≥ 21, Compulsory components (research ethics, literature review & proposal, and academic activities) = 3 credits. Within the 21 course credits. 2. Degree-course credits ≥ 13, Non-degree-course credits ≥ 8 3. Within the non-degree-course credits, Disciplinary-elective credits ≥ 6, Electives should be selected in consultation with the research direction and supervisor. 4. Assessment and Grade Standards, Degree courses: assessed by written examination; credit is granted if the grade ≥ 60. The average grade for all degree courses must be ≥ 75 for graduation eligibility. Non-degree courses: assessed by examination or continuous assessment.
素质培养
中文:科学素质培养为必修环节,包括开题报告、中期检查、学术活动。 1.开题报告。应在第3学期完成选题工作。硕士研究生以PPT的形式将考核内容向考核小组进行不少于15分钟的汇报,开题报告的评定成绩低于70分,视为未通过。考核通过,获得1学分。 2.中期检查。应在第5学期完成中期检查。硕士研究生以PPT的形式将考核内容向考核小组进行10-20分钟的汇报,开题报告的评定成绩低于70分,视为未通过。考核通过,获得1学分。 3.学术活动。硕士生在申请论文答辩前应参加校级(地厅级)以上单位或本学科学术团体织组织的学术报告会不少于3次。完成获得1学分。
英文:Scientific quality training is a compulsory link, including the opening report, mid-term inspection, and academic activities. 1. The opening report. The topic selection should be completed in the third semester. Postgraduates should report the assessment content to the assessment team for no less than 15 minutes in the form of PPT. If the assessment score in the opening report is lower than 70 points, it will be regarded as a failure. If you pass the examination, you will get 1 credit. 2. Mid-term inspection. The mid-term examination should be completed in term 5. Master students will report the assessment content to the assessment team for 10-20 minutes in the form of PPT. If the assessment score in the opening report is lower than 70 points, it will be regarded as a failure. If you pass the examination, you will get 1 credit. 3. Academic activities. Before applying for thesis defense, master students should attend at least 3 academic reports organized by units above the school level (prefecture level) or by academic groups in the discipline. Completion earns 1 credit.
学位论文或实践成果
中文:硕士学位论文工作应在导师指导下独立完成,论文对所研究的内容应有新见解,并力求在理论上或实际应用上对我国社会主义建设具有一定的理论意义或应用价值 1.论文类型与形式 硕士学位论文字数一般不少于3万字。论文文字重复比检查须满足学校相关规定。 2.论文评阅 按论文评阅实行盲审制,硕士学位论文须有2名校外研究生导师担任评阅人。两位评阅人均不同意答辩时,不能答辩;有一位评阅人不同意答辩时,一般不能答辩。 3.学位论文答辩 论文答辩委员会采取不记名投票方式,就是否通过学位论文和授予硕士学位作出决议。决议经全体成员三分之二(含)以上同意,方可通过。
英文:The master's thesis work should be completed independently under the guidance of the supervisor. The thesis should have new insights into the research content, and strive to have a certain theoretical significance or application value for my country's socialist construction in theory or practical application. 1. Paper Type and Format The length of the master's thesis is generally not less than 30,000 words. The text repetition ratio check of the thesis must meet the relevant regulations of the school. 2. Paper review The blind review system is implemented according to the thesis review. The master's degree thesis must have 2 off-campus postgraduate tutors as reviewers. If two reviewers do not agree with the defense, they cannot respond; when one reviewer does not agree with the defense, generally they cannot respond. 3. Dissertation defense The dissertation defense committee adopts secret ballot to make a decision on whether to approve the dissertation and confer a master's degree. Resolutions can only be passed with the consent of more than two-thirds (inclusive) of all members.
学位申请与授予
中文:1.硕士研究生在学位申请时,需要提供其攻读硕士学位期间的学术成果。申请学位须满足下列条件之一: (1)发表中文核心及以上期刊论文1篇,或发表SCI、EI、CPCI 收录的国际会议论文1篇。 (2)发表中文CN及以上期刊论文1篇;同时参与导师主持的省部级及以上科研项目1项并提交结项报告(限前5名),或获省部级及以上科技奖励1项。 2.硕士研究生在学校规定学习年限内,按培养方案规定修完培养计划规定内容,成绩合格,完成学位论文并通过答辩,准予毕业。经学校学位评定委员会审议通过,准予授予相应硕士学位。
英文:1.When applying for a master's degree, graduate students are required to provide their academic achievements during their pursuit of the master's degree. The application for a degree must meet one of the following conditions: (1) Publish one paper in a Chinese core journal or above, Publish one paper in an international conference paper that is indexed by SCI (Science Citation Index), EI (Engineering Index), or CPCI (Conference Proceedings Citation Index). (2) Publish one paper in a Chinese journal ranked as CN (Chinese Core Journals) or higher, simultaneously participate in one provincial/ministerial-level research project led by your advisor and submit the completion report (limited to the top 5 contributors), or receive a provincial/ministerial-level science and technology award. 2. Master students who have completed the training plan according to the provisions of the training plan within the specified learning period of the university, have qualified grades, have completed the dissertation and passed the defense, and are approved to graduate. After examination and approval by the academic Degree Assessment Committee of the university, the corresponding master's degree will be granted.
备注
中文:
英文:
申请理由
阅 读 书 目
书名/期刊
著者
出版社
出版年份
选读/必读
平 台 课 程
课程数量:6 课程总学分:8.0
必修/选修
课程类别
课程性质
课程编号
课程名称
开课单位
学分
总学时
开课学年
开课学期
备注
必修
学位课
公共必修课
M14A00002
中国特色社会主义理论与实践研究
马克思主义学院
2.0
32
2025-2026
第一学期
必修
学位课
公共必修课
M14A00003
自然辩证法概论
马克思主义学院
1.0
16
2025-2026
第二学期
必修
学位课
公共必修课
M14A00020
习近平新时代中国特色社会主义思想概论
马克思主义学院
1.0
16
2025-2026
第一学期
必修
学位课
公共必修课
M15A00007
硕士生英语
外国语学院
2.0
32
2025-2026
第一学期
必修
学位课
公共必修课
M02A00015
学术道德与论文写作
研究生院
1.0
16
2025-2026
第一学期
选修
非学位课
公共选修课
M14A00025
四史教育
马克思主义学院
1.0
16
2025-2026
第二学期
方 向 课 程
请选择研究方向
软件工程
软件工程
研究内容
不区分研究方向。
备注
课程数量:13 课程总学分:23.0
必修/选修
课程类别
课程性质
课程编号
课程名称
开课单位
学分
总学时
开课学年
开课学期
备注
必修
学位课
专业基础课
M05B08007
软件工程理论基础
信息工程学院
2.0
32
2025-2026
第一学期
必修
学位课
专业基础课
M05B08006
软件体系结构
信息工程学院
2.0
32
2025-2026
第一学期
必修
学位课
公共基础课
M10A00010
矩阵理论
数学与统计学院
2.0
32
2025-2026
第一学期
选修
非学位课
专业选修课
M05C08002
大数据分析技术
信息工程学院
2.0
32
2025-2026
第一学期
选修
非学位课
专业选修课
M05C08006
高级软件工程
信息工程学院
2.0
32
2025-2026
第一学期
选修
非学位课
专业选修课
M05C08009
可信计算技术
信息工程学院
2.0
32
2025-2026
第二学期
选修
非学位课
专业选修课
M05C08013
人工智能
信息工程学院
2.0
32
2025-2026
第一学期
选修
非学位课
专业选修课
M05C08014
软件分析与测试
信息工程学院
2.0
32
2025-2026
第二学期
选修
非学位课
专业选修课
M05C08024
信息安全技术
信息工程学院
2.0
32
2025-2026
第二学期
选修
非学位课
专业选修课
M05C08026
云计算技术
信息工程学院
2.0
32
2025-2026
第一学期
必修
必修环节
中期检查
M05D00002
中期检查
信息工程学院
1.0
0
2027-2028
第一学期
必修
必修环节
学术活动
M05D00003
学术活动
信息工程学院
1.0
0
2027-2028
第一学期
必修
必修环节
开题报告
M05D00001
开题报告
信息工程学院
1.0
0
2026-2027
第一学期