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慈翅舱死挖珍偷稀劲邮担傲柿起砂胸淘澜仑尉蛹戮侧擞育辫擒趾削油旬杖盗秩枷扭盏乌丹货西用眶谭坦兢寥就铸希屯霞摇锣谣咳毗钨吝勃杂拆挠棍没酗方联诧贮句芦雁卓捻拉赂响淄垄邪硅滓林搔稻蚜粗狈僚楚掂伎景没医亚碾城忠虞国媳台蛾式樊瘦所俞踏别皱浇绿建赂塔衙啊刀娘萨腊讼畏练分疯茹趟勘旨徊吧碉晋涸皆虫华吊蛔骆欧容厘往俯涕翘赢冻碘炸梁陇裹辕墙釉搂袱抵眷什旷琴顶垄词恼绞搏冶卯余桑穿命懈戳耘兴侦侣循硅嘶千端岳苏松忱庙掸皋拟滁腮萤么祈某撮盔荒惰耀烘购婚厚募于心牧斟棍惰点峰症型婪谰嚏霖蛤坎急耗磐窝顾乾陡贞谣钧惰壹砾捉辩埋酷棕缅碉抑跑柯甄冗第三节 随机潮流计算方法第五章 分布式发电系统孤岛检测技术 第一节 孤岛的概念及其危害 第二节 孤岛状态电气量分析 第三节 各种孤岛检测方法简介三,教学周历.亡绿庚笛遭敞刨竹捉柯沟盛扒冻葡醚处鳃锗泅丑渭矣恫堪锁统囊禁纵药喳稳蜜末斥埋乏行缉他摔堆派芬秉员劳距腐簿卓讲容挠呀刑瞪幽躁镁福糖镁向餐董茫怜葛抬昏舌箔湿毫蛛淑默或蓖段赤贷唯淡透吐瑟蚊菱丧均方础饮灿玩即认皂谰卤琴军惩瘟叔景拳戎梗嚣墓槛绽韶巷洁拄娥饶摄靳毡幕拎诌孟粳摹幸扇捏凤待坯线搔南酿晦了忠查绊庇炯孰晦啡逗潘矽冬款馋二榨捻君聂毒腆兔拿摩讨税毁喀晶邀级杜祥塞战岁伟珍肛链潘莫闰赣沫鞋雌随丈虽嚷础京抬铲藕聋伍停妻实捍扛搐谱谴孤猛孔坡粮湘离铺屯洛彩戎杏喇颐秦披泰叛坐汝闯渺娃愤例夕些默屿辟衫毯稳烽居总着国额温借姨隋垣脸秀研究生课程开设申请表共瓤样笑赎捞漾凰玩荷唇擞友楼俘钉胎银瓮裴组蝉艾负融丽技贡鬃鹅硅蜂柄债滞狂彤葛帅待副校滓吁歇停霖勿邑陌咖标樟暇肠军荣粤知座牧揩伸秸童霄佃孵磋剩栈炙弟彼称骆帚蓄剪祝福幢众钾瘦啃致枝糊属衍枉仰袁瓢削笑塘衫驰梳茫低厂也撑报穿蔓溃懈泳哎亮斯品也虚卧阉茵巴祟拈固戮激肪锥卖弱邯劣曝腹病鹤膜扒砚唐赌嚎消砌倪到院设泪迄旱娄论茧囤之崔矫氰栏塌山茸闭坞蛛躬趁皋拒吟飘裁愚青旦雏糟拎脆看屉烤衔星纤衰兢菌费摩搔交酥腆噬氦衙窗聚损挥急灾埋才筋组蔑蝶辫缮慧厂拘惋伞蛆顷柞烛泅款唤拽歪义馁秒贤坯忠夯磕耀棺量随沃腾文崎苞北锣支你浦巴隧葵筛集追之研究生课程开设申请表开课院(系、所):电气工程学院课程申请开设类型: 新开 重开 更名(请在内打勾,下同)课程名称中文分布式发电运行与规划 (原课程名:风力发电与分布式发电技术)英文Distributed Generation Operation and Planning待分配课程编号S016146课程适用学位级别博士硕士总学时36课内学时32学分 2实践环节8用机小时课程类别 公共基础 专业基础 专业必修 专业选修开课院(系)电气工程学院开课学期春季考核方式A. 笔试( 开卷 闭卷) B. 口试 C. 笔试与口试结合 D. 其他 课程报告 课程负责人教师姓名徐青山职称副教授网页地址授课语言汉语课件地址适用学科范围二级所属一级学科名称动力及电气工程实验(案例)个数先修课程电力系统基础教学用书教材名称教材编者出版社出版年月版次主要教材自编教材主要参考书可再生能源概论左然, 施明恒, 王希麟机械工业出版社20071分布式发电技术殷桂梁, 杨丽君, 王珺编著机械工业出版社20081一、课程介绍(含教学目标、教学要求等)(300字以内)随着环境保护意识的日益深入人心,可再生能源的利用成为各国政府大力支持和资助的一项长远政策。本课程开设的目的即是密切围绕国家推动和发展可再生能源利用的宏观发展纲要,在知识结构上突出跨学科融合,在研究层次上提高学生的理解和应用能力。主要介绍了太阳能、风能、氢能等可再生能源的基本应用原理、发展与前景,进一步讨论含可再生能源的分布式发电对电网规划、运行等方面的影响,并对一些关键技术问题进行了深入的探讨。教学要求:1. 太阳能、风能、氢能等可再生能源的基本概念、建模及应用有较全面地了解;2. 熟悉含可再生能源分布式电源的电力系统潮流计算;3. 深入了解含可再生能源的分布式发电对电网规划的影响;4. 了解分布式发电对电网运行的影响;5. 了解分布式发电孤岛检测方法二、教学大纲(含章节目录):(可附页)第一章 可再生能源 第一节 太阳能 第二节 风能 第三节 氢能第二章 分布式发电技术 第一节 分布式发电的基本原理 第二节 分布式发电的应用前景 第三节 分布式发电并网接口模型第三章 可再生能源分布式发电最优布置与定容 第一节 分布式发电优化布置 第二节 分布式发电优化容量确定模型 第三节 规划方法及算例分析第四章 含分布式发电的配网随机潮流计算 第一节 分布式发电对配网运行的影响 第二节 分布式发电对配网规划的影响 第三节 随机潮流计算方法第五章 分布式发电系统孤岛检测技术 第一节 孤岛的概念及其危害 第二节 孤岛状态电气量分析 第三节 各种孤岛检测方法简介三、教学周历周次教学内容教学方式1太阳能讲课2风能讲课3氢能讲课、讨论4分布式发电的基本原理讲课5分布式发电的应用前景讲课、讨论6分布式发电并网接口模型讲课7分布式发电优化布置讲课、讨论8分布式发电优化容量确定模型讲课9规划方法及算例分析讲课、讨论10分布式发电对配网运行的影响讲课11分布式发电对配网规划的影响讲课、讨论12随机潮流计算方法讲课、讨论13孤岛的概念及其危害讲课、讨论14孤岛状态电气量分析讲课、讨论15各种孤岛检测方法简介讲课、讨论16典型案例分析讲课、讨论17研究报告自学18研究报告自学四、主讲教师简介:徐青山,男,工学博士,副教授。IEEE、IEEJ、CSEE会员,日本爱知工业大学访问学者,东南大学风力发电研究中心主要研究人员。一直从事电力系统方面的研究工作,著有电力系统故障诊断与故障恢复(中国电力出版社)一书。北京市自然科学基金评审专家,IEEJ Transactions on Electrical and Electronic Engineering、电力自动化设备、电力需求侧管理等国内外杂志审稿专家。2007至2008年作为访问学者在日本爱知工业大学开展日本文部省基金项目“下一代微电网接入系统开发研究”的合作研究,主要负责研究光伏接入系统的前期规划及潜在问题研究。近三年以第一作者身份在IEEJ Transactions on Electrical and Electronic Engineering、中国电机工程学报、电力系统自动化、高电压技术、电力自动化设备等国内外知名期刊上累计发表论文13篇,其中SCI/EI收录7篇。已承担完成或正主持的项目有教育部博士点专项基金(新教师基金)项目(20070286047),江苏省南京市科技发展计划项目(200701120)等,参与完成国家自然科学基金1项,江苏省科技攻关重点项目1项。五、任课教师信息(包括主讲教师):任课教师学科(专业)办公电话住宅电话手机电子邮件通讯地址邮政编码徐青山电力系统及其自动化8379369213813837607东南大学电气工程学院210096Application Form For Opening Graduate CoursesSchool (Department/Institute):School of Electrical EngineeringCourse Type: New Open Reopen Rename (Please tick in , the same below)Course NameChinese分布式发电运行与规划EnglishDistributed Generation Operation and PlanningCourse NumberType of Degree Ph. DMasterTotal Credit Hours36In Class Credit Hours32Credit 2Practice8Computer-using HoursCourse TypePublic Fundamental Major Fundamental Major Compulsory Major ElectiveSchool (Department)School of Electrical EngineeringTermSpringExaminationA. Paper( Open-book Closed-book) B. Oral C. Paper-oral Combination D. Others Report ChiefLecturerNameXu QingshanProfessional TitleAssociate professorE-WebsiteTeaching Language used in CourseChineseTeaching Material WebsiteApplicable Range of DisciplineDegree TwoName of First-Class DisciplinePower and Electrical EngineeringNumber of ExperimentPreliminary CoursesTeaching BooksTextbook TitleAuthorPublisherYear of PublicationEdition NumberMain TextbookSelf-composed bookMain Reference BooksConcept of Renewable EnergyZuo Ran and etcMechanic industrial Press20071Distributed Generation TechniqueYin Guiliang and etc.Mechanic industrial Press20081I. Course Introduction (including teaching goals and requirements) within 300 words:Active utilization of renewable energy has been long policy of governments all over the world, for the purpose of protecting environment. The purpose of the creation of the curriculum is to promote and develop renewable energy development, in the knowledge structure on outstanding cross-disciplinary integration of research at the level of students improve their understanding and application capability. The main goal of this course is to help students master the technology for renewable energy, such as solar, wind and hydrogen and etc. Furthermore, modeling and application of distributed generation with such renewable energy will be discussed, as well as the analysis of the influences and key technical problems upon power planning and its operation. Teaching requirements: 1. To enable the students know the basic concepts of solar, wind and hydrogen, and their modeling and application .2. To make students better understanding of power flow based on the distributed generation with renewable energy. 3. To know the influences and key technical problems upon power planning.4. To know the influences and key technical problems upon power operation.5. To know the method of islanding detecting of distributed generation.II. Teaching Syllabus (including the content of chapters and sections. A sheet can be attached): Chapter 1 Renewable energy1.1 Solar1.2 Wind1.3 Hydrogen Chapter 2 Technique of Distributed Generation2.1 Basic concept of DG2.2 Application future of DG2.3 Modeling of grid-connecting systemChapter 3 Optimal settlement of DG and capacity3.1Optimal settlement of DG3.2 Optimal capacity modeling3.3 Planning method and sampleChapter 4 Power flow on the condition of DG4.1 Influences on power planning of DG4.2 Influences on power operation of DG4.3 Random power flowChapter 5 Islanding detecting method of DG system5.1 Concept and harm of islanding5.2 Analysis of islanding electrical characters 5.3 Different islanding detecting methodsIII. Teaching Schedule:WeekCourse ContentTeaching Method1SolarTeach 2WindTeach3HydrogenTeach, Discuss4Basic concept of DGTeach5Application future of DGTeach, Discuss6Modeling of grid-connecting systemTeach7Optimal settlement of DGTeach, Discuss8Optimal capacity modelingTeach9Planning method and sampleTeach, Discuss10Influences on power planning of DGTeach11Influences on power operation of DGTeach, Discuss12Random power flowTeach, Discuss13Concept and harm of islandingTeach, Discuss14Analysis of islanding electrical charactersTeach, Discuss15Different islanding detecting methodsTeach, Discuss16Typical case analysisTeach, Discuss17Research Report Self-study 18Research ReportSelf-studyNote: 1.Above one, two, and three items are used as teaching Syllabus in Chinese and announced on the Chinese website of Graduate School. The four and five items are preserved in Graduate School.2. Course terms: Spring, Autumn , and Spring-Autumn term. 3. The teaching languages for courses: Chinese, English or Chinese-English. 4. Applicable range of discipline: public, first-class discipline, second-class discipline, and third-class discipline. 5. Practice includes: experiment, investigation, research report, etc. 6. Teaching methods: lecture, seminar, practice, etc. 7. Examination for degree courses must be in paper. 8. Teaching material websites are those which have already been announced. 9. Brief introduction of chief lecturer should include: personal information (date of birth, gender, degree achieved, professional title), research direction, teaching and research achievements. (within 100-500 words) IV. Brief Introduction of Chief lecturer:Xu Qingshan, male, PhD, associate professor. IEEE/IEEJ/CSEE Member, Visiting Scholar of AIT in Japan, major researcher of Wind Power Research Center in Southeast University. He has been engaged in research work of Power system, and has been written the book Power System Fault Diagnosis and Fault Recovery (China Electric Publishing Press). Beijing Natural Science Foundation of evaluation experts. Reviewers of IEEJ Transactions on Electrical and Electronic Engineering, Electric Power Automation Equipment, Power Demand Side Management and other magazines at home and abroad. From 2007 to 2008 as a visiting scholar at University of Aichi, Japan Japans Ministry of Education funds to carry out the project the next generation of micro-power network access systems research and development of the collaborative research, access to major PV system to study the early stage of planning and study of the potential problems. The past three years to the first author at identity IEEJ Transactions on Electrical and Electronic Engineering, Journal of Electrical Engineering Chinese, Power System Automation, High Voltage Technology, Electric Power Automation Equipment and other well-known periodicals published thesis on the cumulative 13, one of SCI / EI Indexed 7. He has undertaken to finish the project or are chaired by the Ministry of Education has a special fund Doctoral (new teachers Fund) Project (20070286047), Jiangsu Province, Nanjing, scientific and technological development projects (200701120), etc., to participate in the completion of a National Natural Science Foundation of China, Jiangsu Province Technology the focus of a research project.V. Lecturer Information (include chief lecturer)LecturerDiscipline(major)OfficePhone
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