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2017 级电气工程及其自动化专业本科培养方案一、专业基本信息英文名称 Electrical Engineering and Automation专业代码 080601 学科门类 工学学 制 4 年 授予学位 工学学士二、培养目标及特色本专业服务于城镇化建设,依托高新技术,紧密围绕其“以强电为主,以弱电为辅,强弱电充分结合”的特点,结合建筑电气及电力系统相关行业的发展状况,开设了建筑供配电、建筑照明、电梯控制技术、继电保护及配电自动化等特色课程及其实践环节,并与建筑电气技术的设计方法、标准、规范等密切结合,结合建筑设计、施工单位和相关专业公司,让学生参与工程项目的设计、施工和管理等环节,具备独立解决建筑电气专业领域相关复杂工程问题的能力,培养符合市场需求的、有特色的电气工程领域的技术人才。三、主干学科电气工程、控制科学与工程四、主干课程1主干基础课程大学英语、高等数学、普通物理及物理实验2主干专业课程电路原理、自动控制原理、电力电子技术、电力系统分析、建筑供配电、电力拖动控制系统。五、主要实践教学环节电气传动综合实训、供电照明课程设计、施工管理与概预算、毕业设计六、毕业学分要求参照北京建筑大学本科学生学业修读管理规定及学士学位授予细则,修满本专业最低计划学分应达到 161.5 学分,其中理论课程 126.5 学分,实践教学环节 35 学分。七、各类课程结构比例课程类别 课程属性 学分 学时 学分比例必修 29.5 640 18.3%通识教育课选修 11 176 6.8%必修 30 584 18.6%大类基础课选修 4 340 2.5%专业核心课 必修 21.5 344 13.3%必修 24.5 400 15.2%专业方向课选修 6 232 3.7%独立实践环节 必修 35 956 21.7%总计 161.5 3672 100%八、教学进程表学期 教学周 考试 实践 学期 教学周 考试 实践1 4-19 周 20 周 1-3 周 2 1-17 周 18-19 周 20 周3 1-17 周 18-19 周 20 周 4 1-16 周 17-18 周 19-20 周5 1-18 周 19 周 20 周 6 1-14 周 15 周 16-20 周7 1-16 周 17 周 18-20 周 8 1-16 毕业设计 /实习 17 周答辩九、毕业生应具备的知识能力及实现矩阵毕业生应具备的知识能力 相关知识领域 实现途径(课程支撑)掌握数学、物理、建筑等自然科学知识;掌握工程制图、信息处理、计算机应用开发等与电气有关工程的知识;具有宽厚的专业基础知识,具有较强的专业基本技能;具有综合运用所掌握的专业理论知识和技能,解决电气工程技术及相关领域的复杂工程问题。工程知识:能够将数学、自然科学、工程基础和专业知识用于解决复杂工程问题高等数学 A(1-2)、线性代数、普通物理 B(1-2)、复变函数与积分变换、工程制图 B、普通化学、VB 程序设计基础、电路原理、模拟电子技术、数字电子技术、电机与拖动基础、自动控制原理、毕业设计、毕业答辩掌握电路、电子技术基本定律、处理、分析、表达与应用的基本原理和方法;具有本专业必须的调研、查阅文献等基本技能,能够通过文献研究分析电气技术领域复杂工程问题;问题分析:能够应用数学、自然科学和工程科学的基本原理,识别、表达、并通过文献研究分析复杂工程问题,以获得有效结论电路原理、模拟电子技术、数字电子技术、单片机原理及应用、电力电子技术、电气控制与可编程控制器、电子实习、电工电子实验与计算机仿真、电子技术课程设计能够根据复杂电气工程项目的目标、任务和要求,考虑社会、安全、法律、环境等因素,设计解决方案,编撰项目设计任务书;能够对单项电气工程项目进行技术设计,编撰相关技术文档;能够应用新技术与方法对设计方案进行改进和创新设计/开发解决方案:能够设计针对复杂工程问题的解决方案,设计满足特定需求的系统、单元(部件)或工艺流程,并能够在设计环节中体现创新意识,考虑社会、健康、安全、法律、文化以及环境等因素。电力电子技术、电力系统分析、建筑供配电、电力拖动控制系统、电梯控制技术、继电保护与配电自动、建筑防雷接地技术、建筑照明、智能建筑系统、单片机原理及应用、空调电气原理、建筑电气软件、电力电子实训、电气传动综合实训、 供电照明课程设计、施工管理与概预算实训、专业实习、毕业设计、毕业答辩受到严格的科学思维训练,有严谨科学的态度,掌握一定的科学研究方法,具有开展创新实验和创新科技研究的能力;具有利用计算机技术、网络技术等进行电气设计与设备制造,从事现代电气工程技术研究的能力研究:能够基于科学原理并采用科学方法对复杂工程问题进行研究,包括设计实验、分析与解释数据、并通过信息综合得到合理有效的结论。高等数学 A(1-2)、线性代数、概率论与数理统计 B、复变函数与积分变换、C 语言、电机与拖动基础、建筑供配电、电梯控制技术、电力系统继电保护、电力拖动控制系统、电力电子实训,创新实践及科研训练具有本专业必须的制图、计算、电气检测和电器设备基本工艺操作等基本技能和较强的计算机及信息技术应用能力;掌握电力系统分析、继电保护、建筑供配电、建筑照明及建筑防雷等技术,完成对复杂电气工程问题的预测、模拟及解决;使用现代工具:能够针对复杂工程问题,开发、选择与使用恰当的技术、资源、现代工程工具和信息技术工具,包括对复杂工程问题的预测与模拟,并能够理解其局限性。C 语言程序设计、工程制图 B、画法几何 B、 VB 程序设计基础、单片机原理及应用、VC 程序设计、电梯控制技术、配电网综合自动化技术、 建筑供配电、电力拖动控制系统、继电保护与配电自动化、建筑防雷接地技术、建筑照明具有宽厚的专业基础知识,具有较强的工程素质和实践能力;能运用基础与专业理论知识和技术评价实际电气工程中的复杂问题对社会、安全、法律等的影响工程与社会:能够基于工程相关背景知识进行合理分析,评价专业工程实践和复杂工程问题解决方案对社会、健康、安全、法律以及文化的影响,并理解应承担的责任。思想道德修养与法律基础、中国近现代史纲要、电路原理、模拟电子技术、数字电子技术、自动控制原理、单片机原理及应用、电机与拖动基础、电力拖动控制系统、电力电子技术、专业实习、金工实习、毕业设计、毕业答辩、创新实践及科研训练了解行业主要的法律要求和质量标准;能在法律和技术规范的框架下开展工作;能够基于工程相关背景知识进行合理分析,评价专业工程实践和复杂电气工程问题解决方案对社会、健康、安全、法律以及文化的影响,并理解应承担的责任。环境和可持续发展:能够理解和评价针对复杂工程问题的专业工程实践对环境、社会可持续发展的影响。房屋建筑学、建筑照明、智能建筑系统、智能交通系统、VC 程序设计、电力拖动控制系统、建筑电气软件、供电照明课程设计、创新实践及科研训练理解马克思主义世界观、人生观和价值观的基本意义;了解国史国情,理解中国特色社会主义道路以及个人的责任;理解职业道德的含义和工程师的职业和责任。职业规范:具有人文社会科学素养、社会责任感,能够在工程实践中理解并遵守工程职业道德和规范,履行责任。思想道德修养与法律基础、中国近现代史纲要、马克思主义基本原理概论、毛泽东思想和中国特色社会主义理论体系概论、军事理论、形势与政策(1-2)、体育(1-4)、军训、施工管理与概预算、专业实习、金工实习、毕业设计、毕业答辩能够理解一个多角色团队中每个角色的含义以及对整个团队环境和目标的意义;能够在团队中做好自己承担的角色,具备综合团队成员的意见并进行合理决策的能力。个人和团队:能够在多学科背景下的团队中承担个体、团队成员以及负责人的角色。电力电子实训、电气传动综合实训、施工管理与概预算、专业实习、创新实践及科研训练能够通过口头及书面方式表达自己的想法,掌握技术文件写作方法,理解和撰写效果良好的报告和设计文件,基本掌握一门外语,具有外语听说读写能力; 沟通:能够就复杂工程问题与业界同行及社会公众进行有效沟通和交流,包括撰写报告和设计文稿、陈述发言、清晰表达或回应指令。并具备一定的国际视野,能够在跨文化背景下进行沟通和交流。军事理论、大学英语(1-4)、体育(1-4)、军训、供电照明课程设计、专业实习、毕业设计、毕业答辩、创新实践及科研训练了解不同的文化,具有一定的跨文化交流能力;对电气工程领域的国际发展现状有基本了解,具备一定的国际视野,能够在跨文化背景下进行沟通和交流;在多学科环境中,能够针对复杂的工程问题,制定经济、合理的解决方案,并能对设计的合理性进行分析项目管理:理解并掌握工程管理原理与经济决策方法,并能在多学科环境中应用。工程经济学、电气传动综合实验、供电照明课程设计、施工管理与概预算实训、专业实习、创新实践及科研训练了解电气工程的发展历史,以及技术发展历程中技术创新的社会背景与影响;对于电气行业技术发展水平、所面临的挑战有正确认识;对职业生涯规划和持续学习的必要性有正确认识,能够采用合适的方法通过学习不断地发展自身的能力。终身学习:具有自主学习和终身学习的意识,有不断学习和适应发展的能力。大学英语(1-4)、体育(1-4)、高等数学 A(1-2)、线性代数、概率论与数理统计、普通物理B(1-2)、复变函数与积分变换、电路原理、模拟电子技术、数字电子技术、电机与拖动基础、自动控制原理、电力拖动控制系统、电力电子技术、建筑供配电、建筑环境电磁兼容技术、电梯控制技术、配电网综合自动化技术、单片机原理及应用、VC 程序设计、专业实习、创新实践及科研训练十、指导性教学计划(见附表)十一、主要课程逻辑关系结构图2017 Undergraduate Program for Specialty in Electrical 线性代数高等数学建筑供配电建筑照明电力拖动控制系统电梯控制技术继电保护与配电自动化电力电子技术自动控制原理电力系统分析电气控制与可编程控制器电机与拖动基础单片机原理及应用模拟电子技术数字电子技术电路原理复变函数 概率论与数理统计计算思维导论V B 程序设计C 语言程序设计电气工程及其自动化专业主要课程关系结构图Engineering and Automation I. Basic InformationName: Electrical Engineering and AutomationCode: 080601 Category: EngineeringLength: Four years Degree: Bachelor of EngineeringII. Purpose and Characteristics (not exceeding 300 words) This discipline serves urbanization construction and relies on high technology. By centering on the characteristic of “studying strong electricity as a priority and weak electricity as a supplement and combining both sufficiently” and considering current development of industries related to electrical and power systems, the discipline has incorporated feature courses such as building power supply and distribution, building illumination, elevator control technology, relay protection and power distribution automation as well as their practices. By cooperation with building design and construction enterprises and relevant professional companies, and through observance of design methods, standards and specifications of building electrical technology, the discipline enables students to take part in design, construction and management of engineering projects and develop the capabilities of independently solving relevant complex engineering problems in the field of building electrics, and it cultivates technical talents in technical engineering field who are able to meet market requirements and have individual strengths.III. Major DisciplineElectrical Engineering, Control Science & EngineeringIV. Major Courses1. Major basic coursesCollege English, Advanced Mathematics, College Physics and Physics Experiment2. Major specialized courses Circuit Principle, Automatic Control Theory, Power Electronics Technology, Power System Analysis, Electric Drive Control Systems, Electric Power Distribution and Supply for Building V. Major practical teaching Comprehensive Practice Training of Electric Drive, Course Design for Power Supply and Lighting, Construction Management and Pre-budgeting Practice Training, Graduation DesignVI. Credits Required for GraduationAccording to the undergraduate education management regulations and the detailed rules for award of a bachelor degree of Beijing University of Civil Engineering and Architecture, the minimum credits required for graduation shall be 159.5 credits, in which theoretical courses have 124.5 credits and practice courses have 35 credits. VII. Course Structure and Credit ProportionsCourse Category Course Type Credits Class Hour Credit ProportionCompulsory 29.5 640 18.3%General education courses Elective 11 176 6.8%Compulsory 30 584 18.6%Fundamental coursesElective 4 340 2.5%Professional core coursesCompulsory 21.5 344 13.3%Compulsory 24.5 400 15.2%Professional direction courses Elective 6 232 3.7%Independent practice Compulsory 35 956 21.7%Total 161.5 3672 100%VIII. Teaching ScheduleSemesterWeeks of Teaching Exam PracticeSemesterWeeks of Teaching Exam Practice1 Week 4-19 Week 20 Week 1-3 2 Week 1-17 Week 18-19Week 203 Week 1-17 Week 18-19Week 20 4 Week 1-16 Week 17-18Week 19-205 Week 1-18 Week 19 Week 20 6 Week 1-14 Week 15 Week 16-207 Week 1-16 Week 17 Week 18-20 8 Graduation project/internship at week 1-16, and thesis defense at week 17IX. Required Knowledge & Skills of Graduates and Obtainment MatrixRequired Knowledge & Skills of GraduatesRelevant Fields of Knowledge Obtainment Approaches (Course Support)Having acquired knowledge in natural sciences including math, physics and construction and in Engineering knowledge: Capable of using basic and professional knowledge of math, natural sciences Advanced Mathematics A(1-2), Linear Algebra, College Physics A(1-2), Complex Functions and electric engineering including engineering drawing, information processing and computer application development. Having obtained extensive understanding of basic professional knowledge and developed strong professional skills, and being capable of using theoretical knowledge and skills to solve complex engineering problems in electric engineering and relevant fields.and engineering to solve complex engineering problems.Integral Transformations, Engineering Drawing B, College chemistry, Fundamentals of VB Programming, Electric Circuit Principles, Analog Electronics Technology, Digital Electronics Technology, Electric Machines and Motor Drive, Automatic Control Theory, Graduation Design, Graduation ReplyUnderstanding basic laws of electric circuits and electronic technologies as well as basic principles and methods of their processing, analysis, expression and application. Having developed basic skills of the discipline such as investigation and literature research and being capable of analyzing complex engineering problems in electric technology field by literature research.Problem analysis: Capable of using basic principles of math, natural sciences and engineering sciences to recognize, express and analyze through literature research complex engineering problems in order to reach valid conclusions.Circuit Principles, Analog Electronic Technologies, Digital Electronic Technologies, Principle and Application of MCU, Power Electronic Technologies, Electric Control and Programmable Controller, Electronic Technology Practice, Electrical & Electronic Experiment and Computer Simulation, Course Design for Electronic TechnologyBeing able to create solutions for complex electric engineering projects and prepare project design assignments according to the targets, tasks and requirements of the projects and different social, security, statutory and environmental factors. Being able to conduct technical designs for electric engineering projects, prepare relevant technical documents, and creatively improve design schemes with new technologies and methods.Create/develop solutions: Capable of creating solutions for complex engineering problems, designing systems, units (components) and processes that meet specific requirements, and incorporating the innovative sprit and social, health, safety, statutory, cultural and environmental factors in the design process.Power Electronic Technologies, Power System Analysis, Electric Power Distribution and Supply for Building, Electric Drive Control System, Elevator Control Technologies, Relay Protection and Automation of Distribution Power System, Lightning and Grounding Technology in Building, Building Lighting, Intelligent Building Systems, Principle and Application of MCU, Air-condition Electrical Principle, Building Electrical Software, Power Electronics Practice Training, Comprehensive Practice Training of Electric Drive, Course Design for Power Supply and Lighting, Construction Management and Pre-budgeting Practice Training, Specialty Practice, Graduation Design, Graduation ReplyHaving been trained in scientific thinking patterns and developed a scientific attitude. Having mastered scientific research methodology and being capable of conducting innovative experiments and innovative technological research. Being able to use computer and internet technologies to conduct electric design, equipment production and research in modern electric engineering technologies.Research: Capable of studying complex engineering problems based on scientific principles and scientific methodology, including designing experiments, analyzing and interpreting data and integrating information to reach effective conclusions.Advanced Mathematics A(1-2), Linear Algebra, Probability and Mathematical Statistics B, Complex Functions and Integral Transformation, C Programming, Electric Machines and Motor Drive, Building Distribution and Power Supply, Elevator Control Technology, Relay Protection and Automation of Distribution Power System, Electrical Drive Control System, Power Electronics Practice Training, Innovation Practice and Research TrainingHaving developed basic skills required in the discipline including drawing, calculation, electric inspection and basic operation of electric equipment. Being proficient in computer and information technology. Having mastered Power system analysis, Relay protection, Building Distribution and Power Supply, building lighting and building lightning protection technologies and so on, to predict, simulate and solve complex engineering problems.Use modern tools: Able to develop, select and use appropriate technologies, resources, modern engineering tools and information technology tools to tackle complex engineering problems, including prediction and simulation of the complex engineering problems and understanding of their limitations.C Programming, Engineering Drawing B, Descriptive Geometry B, Fundamental of VB Programming, Principle and Application of MCU, VC Program Design, Elevator Control Technology, Relay Protection and Automation of Distribution Power System, Electric Power Distribution and Supply for Building, Electrical Towage Control System, Relay protection and Distribution Automation, Lightning Protectionand Grounding Technology in Building, Building LightingHaving acquired extensive knowledge in the profession and developed strong engineering and practical capabilities. Being able to use basic and theoretical knowledge and technologies to evaluate the influence of complex problems in actual electrical engineering on society, safety and statutory regulations.Engineering and society: Capable of evaluating the effects of professional engineering practices and solutions of complex engineering problems on society, health, safety, statutory regulations and culture based on background engineering knowledge and understanding relevant responsibilities.Thought Morals Accomplishment and Basic Law, The Outline of the Modern Chinese History, Circuit Principles, Analog Electronics Digital Electronics, Automatic Control Theory, Principle and Application of MCU, Electric Machines and Motor Drive, Electric Drive Control System, Power Electronic Technology, Specialty Practice, Metalworking Practice, Graduation Design, Graduation Reply, Innovation Practice and Research TrainingUnderstanding major statutory requirements and quality standards of the industry. Being capable of working in acc

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