ࡱ> _ RZbjbj5\5\0*lkk8+8J a ( $ &&\HHHHHHHDMO8H'#^$''Hkk I///'\kR  H/'H//<|"w= @+f[u,lS=GJ08Je=2P-2P$w=2Pw= ''/'''''HH/'''8J''''2P'''''''''I 1: Master Degree Program in Information and Communication Engineering SystemDiscipline code: 0810 `!. ADMISSIONThe School of Computer Science and Communication Eng.Strong emphasis is placed on developing the student s ability to initiate and carry out original research projects. The research programs of the school encompass the major of communication theory and application technology. Students who want to pursue their master degrees in the above mentioned majors of our faculty should:--- Have the academic qualification admitted by Jiangsu University.--- Have obtained a bachelor degree in communication engineering or in related major before enrolling as a master candidate.a!. GOAL Goal of the major is to orient and train the students on different aspects of information and communication engineering systems. They should be able to apply this training at secondary and tertiary level of chemistry. Aiming to be high-level information and communication related expertise.b!. OBJECTIVESIn order to achieve the goal of Information and Communication Engineering System, High-level personnel engaged in the research, development and teaching of information and communication engineering systems will be cultivated. Degree recipients should have a solid theoretical foundation of information and communication engineering systems, in-depth understanding of domestic and international communications systems, equipment, new technologies and development trends in communications networks, relevant professional knowledge of modern information and communication engineering are mastered by systems and proficiency, and there is a ability of independent studies, to analyze and solve technical issues in the field.c!. RESEARCH FIELDSThe Master Degree Program in Information and Communication Engineering System focuses on:Next Generation of Communication Technology and NetworkMobile Communication & Wireless Communication Signal Processing Technologyd!. DEGREE REQUIREMENTSThe graduate students for Information and Communication Engineering System major are required to accomplish at least 24 course credits which should be earned from the courses you will take, and the credits for degree courses should be more than 14, and the non-degree courses should not be less than 10. The completion of 24 credits-courses is usually within one year, while the additional 1.5 to 2 years is used to complete the dissertation research and oral examination in thesis defense.e!.CURRICULUM Course CategoryCourse nameCreditTermSchool by which Courses opened RemarkDegree CoursesCompulsory Subjects for PublicOverview of China31Overseas Education CollegeCompulsoryChinese41Overseas Education CollegeFundamental TheoriesTheory of Matrices21Mathematics and Physics CollegeAny two of themApplied Random Process21Mathematics and Physics CollegeModern Signals Analysis21Computer and Communication College Foundation of Specialized CoursesDigital Communication31Computer and Communication CollegeCompulsoryNonDegreeCoursesSpecialized Elective Courses Mobile Internet Development Technology (Practice)22Computer and Communication CollegeCompulsoryFrontiers of Modern Communication & Networks22Computer and Communication CollegeNext Generation Network Technologies22Computer and Communication CollegeAt least one of themWireless Communication Technology22Computer and Communication CollegeOptical Communication Technology22Computer and Communication CollegeShort-distance Communication and Network 22Computer and Communication CollegeNetworks & Group Behavors22Computer and Communication CollegeWireless Digital Communication Based on Cross-layer Networking 22Computer and Communication CollegeAdaptive Signal Processing22Computer and Communication Collegef!. COURSE CONTENTNext Generation Network TechnologiesGoalThis is an advanced course in communication networks. The goal of the course is to provide a basic knowledge of the field ofnetwork theory and application, understand the challenges of efficient network management, and the modern techniques (such asmobility management, IPv6 andapplication layer networks). The course will not use a single textbook but rather a set of research papers, and it will be a combination of lecture and discussion.After taking this course, you should have a good understanding of the problems related to current networks and next generation networks, understand the mathematic theory of network analysis, and have knowledge about research directions in this field.This course assumes a basic knowledge of networking concepts and background, and of probability theory & random process. Success in introduction to communication network analysis and some knowledge about modern wireless networks should be sufficient background.Essential Objectives Understand the evolution and development trend of modern communication networks; Understand the mainstream wired / wireless access network technologies; Understand the core network switching / transmission technology; Understand typical technology of next generation network ;Understand technique of the application layer network ; Learn some key research direction of modern network theory;Master network modeling and performance analysis method based on queuing theory;Learn how to use graph theory to carry out network design and analysis.Content CoverageModern communication network is the foundation of modern information society. In-depth understanding of modern communication networks, network theory analysis method and effective design of modern communication network are necessary for postgraduate students of major in communication and information system. This course emphases on theoretical research and specific application deployment of modern communications networks , course contents include the evolution of modern communication networks (wired / wireless), access network technologies (IEEE 802.11/802.15/802.16, 3G/4G), core network technologies (MPLS), the next-generation network technologies (Ipv6, IMS, soft switching), network mobility management, network quality of service, application layer networks (P2P, application layer multicast), communications network performance analysis (queuing theory, graph theory) and so on.Evaluation 20% paper and presentation 80% final examModern Signals AnalysisGoalHelp students to understand basic principles and typical methods of modern digital signal processing. After the study of this course, students can use digital signal processing technologies to design modern digital communication system or process voice/image/video signal.Essential Objectives Master the basic knowledge of random signals and statistical analysis;Master typical signal modeling methods of modern signal processing, including auto-regressive moving average model, HYPERLINK "javascript:void(0);"autoregressive HYPERLINK "javascript:void(0);"model, moving average model; Master principle and design method of Wiener filter and Kalman filter; Master adaptive filter theory and understand adaptive filtering applications in communications receiver.Content CoverageDigital signal processing is a cutting-edge interdisciplinary with fast development of its theory and technology, now digital signal processing technologies have a wide range of applications. Students without the knowledge of this course cannot have an in-depth understanding of various types of signal processing methods in modern communication systems, especially the principle of digital communication receiver. This course requires students to complete the learning of at least two prerequisite courses,  = 1 \* GB3 `$signals and systems;  = 2 \* GB3 a$ digital signal processing. Otherwise, students are not recommended to learn this course. Course contents include: Random Signal Processing (typical stochastic processes, stochastic processes cross linear system, spectral factorization, etc.), stochastic models (ARMA/AR/MA), the Wiener filter (FIR/causal IIR/non- causal IIR), Kalman filters, adaptive filter (LMS algorithm/RLS algorithm, etc.).Evaluation 20% paper and presentation, 80% final examMobile Internet Development Technology (Practice)GoalThis course is a practice course. In the course, students are asked to design an entire information system. This training will effectively enhance their engineering capabilities of students. After taking this course, students can master the Arduino development, Android development and raspberry pie application development.Essential Objectives Master technology of Arduino microcontroller development technology; Master Android development technology; Master raspberry pie application deployment and development technology; Understand communication technology in information systems; Construct an entire information system; Develop the cooperative ability; Develop the innovative thinking and innovation development capabilities.Content CoverageEngineering development capability is a basic and necessary skill for students .This course adopts Arduino robot car and Ardupilot UAV system with open source as training objects, and provides development practices with Arduino microcontroller, Android smart phones, raspberry pie embedded systems, Web applications, geographic information systems, wireless communication technologies. This course will build teams with 3-5 persons to complete an intelligent information system application. As the course includes all current mainstream development technology, it is necessary for students who take this course to possess certain basic knowledge of software and network in advance.Evaluation 20% team paper and presentation 80% final team workDigital CommunicationGoal 000Make each graduate become a person who has profound theory of digital communication, solid special knowledge for digital communication engineering and can do researches on communication with wide field of view Essential Objectives Learn to design digital communication system model according to the specified requirementMaster source coding, channel coding and digital modulation Master channel decoding and digital demodulationLearn to coding for Markov sourcesMaster the method for vector quantizationMaster principles of inner production spaceMaster orthonormal bases and the projection theoremContent Coverage Introduction coding for discrete sources, quantization, vector spaces and signal space, coding and decoding and random processes and noise in digital communication.Evaluation Twenty percent of evaluation score from assignment and eighty percent of evaluation from examination.Optical Communication TechnologyGoal High-speed and wide broadband optical network is the development direction of next-generation networks. After spending some time with this cause, you will be more thoroughly conversant with all the important issues that today affect how optical networks are made, what their limitations and potentialities are, and how they fit in with more classical forms of communication networks based on electronic time division. Whether you are a computer network expert wondering how to use fiber to break the bandwidth bottlenecks that are limiting your system capabilities, a planner or implementer trying to future-proof your telephone network, a student looking for a fun lucrative career, or a midcareer person in need of a retread.Essential Objectives Learn to propagation of signals in optical fiber and understand loss and bandwidth; chromatic dispersion and nonlinear effects in optical fiber. Learn to WDM system, understand and master the role of Couplers, Isolators and Circulators, Multiplexers and Filters in WDM networks and technology.Learn to Optical Amplifiers, Transmitters, Switches and Wavelength ConvertersLearn to client layers of the optical layer in optic networks and WDM network elements.Learn to control and management in optical networks.Content Coverage Describes a revolution within a revolution, the opening up of the capacity of the now-familiar optical fiber to carry more messages, handle a wider variety of technology of Couplers, Isolators and Circulators, Multiplexers and Filters in WDM networks and provide improved reliabilities and ease of use.Evaluation 30% team paper and presentation 70% final paper workShort-distance Communication and NetworkGoal The goal of this course is to cultivate students tounderstandthe subject background,the latestresearch achievements anddevelopment directionof wireless sensor network,grasp architecture,communication protocol,supporting technology,the design of sensor nodes andtypicalapplication system of sensor network.Enable students tomaster theresearch ideas and methodsof new disciplines,laythefoundationfor the research and developmentworkin the future.Essential Objectives Understand object and method of study, the character and the taskofthe course;understand the developmentprocess and thesubject backgroundof wireless sensor network;Master the architectureof sensor networks,including network structure,nodestructure and protocol stack;Master the communicationprotocol in sensor networks,including theMACrouting andpower control under the ZigBee andIEEE802.15.4protocol system and so on;Understand the relevantsupporting technologies,including synchronization, positioning, security,data fusion and so on.Master thecomposition and working principle ofthe sensor node, understand the development trendand direction of thenode; grasp the hardwareplatform and software development environment of onesensor node at least,candesign node with existingchipKnow thecommonsensor networkoperating systemand application examples.Content Coverage Wirelesssensor networkis across disciplinary science withthe theory and technologydeveloping quickly, which is widely used in industry, agriculture, meteorology, human health monitoring environmental monitoring and otherfield. Sequencecurriculum of this courseincludes computer network, communication network andwireless communication theory, contents of the course includewirelesssensor network architecture,protocol frameworkand commoncommunication protocol,key technology,hardware and software platform andthe design method ofnode.Teachingof this course consists of theoreticalstudy and practice.Evaluation 50% term paper and presentation 50% final team workWireless Digital Communication Based on Cross-layer NetworkingGoal This course is a major elective course with total 24 credit hours and 2 credits. This course is dedicated to the graduate students majored in communication and information systems. Lecture, seminar and self-study will be used as the teaching methods and mastering the principle of mobile communications, following the latest technical development and cultivating innovation capacity are the goals of teaching. Essential Objectives To learn the basic concepts of mobile communications and understand the current situation of the development of history and development. To learn some basic concepts and analysis methods of wireless channel in mobile environment.To understand some advanced technologies in mobile communication.To learn 2G, 3G and 4G mobile communication systems.Content Coverage The main contents include: the basic concepts of mobile communication, radio wave propagation and channel of mobile communication in mobile communication system, the basic technology of mobile communication, mobile communication network structure, and introduction of the GSM cellular systems, the CDMA mobile communication system, the third generation mobile communication system and the fourth generation mobile communication system. Evaluation In the examination, the students are required to hand a research report related to the course and the grades are based on the assessment of the reports.Wireless Communication TechnologyGoal Wireless communication is one of the most vibrant areas in the communication field today. The exponential increase in mobile data traffic during the past two decades has led to the massive deployment of wireless systems. As a consequence, the sophisticated multi-antenna communication theory have been presented and further implemented in WiFi and 3G, 4G or even future cellular communication system. The multi-antenna communication technology not only takes advantage of time and frequency spectral resources but also exploit the spatial domain. This course will lead you to familiar with the multiple input and multiple output (MIMO) communication theory and technology.Essential Objectives Point-to-point communication techniques that increase reliability by exploiting time, frequency and spatial diversity.Point-to-point communication revisited from a more fundamental capacity point of view, culminating in the modern concept of opportunistic communication.MIMO channel modeling.MIMO capacity and architectures.Diversitymultiplexing tradeoff and space-time code design.Content Coverage This course will firstly discuss the point-to-point communication: detection, diversity and channel uncertainty, which includes coherent and non-coherent detection, investigating various diversity techniques that improve the performance, studying the impact of channel uncertainty on the performance of diversity combining schemes; capacity of wireless channels, which includes investigating the problem of communication over AWGN and wireless fading channels; MIMO spatial multiplexing and channel modeling, which includes modeling deterministic and fading MIMO channels, further studying the multiplexing capability of MIMO channels; MIMO capacity and multiplexing architectures, which includes learning the V-BLAST architecture, fast fading MIMO channel, receiver architectures, slow fading MIMO channel and an outage-optimal architecture D-BLAST; MIMO diversity-multiplexing tradeoff and universal space-time codes, which includes diversity-multiplexing tradeoff, universal code design for optimal diversity-multiplexing tradeoff.Evaluation Write an essay to introduce the recent developments of MIMO communication and the practical implementation. Besides, every student should give a public presentation which is the source of final scores.NetworksAndCollectiveBehaviorGoal Reasoning about the behavior principle and reaction mechanism of online social networks based on the Internet, to provide theory, method and model for the application research on the network survey, network voting, electronic auction, etc. so as to improve the efficiency and justification. Essential Objectives To learn and understand the graph theory for network structure analysisTo learn and understand the game theory for network behavior analysis To learn and understand the network information transfer model and cascade behaviorTo understanding the affections of institutions to aggregate behaviorContent Coverage Online social networks based on the Internet connect people more closely, and produce subtle interactions everyone behavior in the networks may have an effect on the others, thus affecting the group behavior results. This course attempts to use synthetically the theories and methods of sociology, computing and information science, and applied mathematics to reveal the group behavior and its effect mechanism in online social networks. Graph theory and game theory are the basic theories of course analysis, the main teaching contents of the course are network information dissemination model, cascade behavior, and affections of institutions to aggregate behavior. The goal of the course is to provide theory, method and model for the application research on the network survey, network voting, electronic auction, etc. so as to improve the efficiency and justification. Evaluation Comprehensively considering the classroom discussion, practice after class,and the end evaluation, the respective ratio is 3:3:4g!. PRACTICE PROCESS AND REQIREMENTSGraduate students are required to participate in the professional teaching practice, including the guidance of undergraduate experiment, marking the lab reports and homework to complete at least 60-70 hours of work. The practice process will be reviewed by the teachers in charge of teaching. The graduate students are also required to attend related seminars and experts forum, and if possible, to participate in social investigation and research or technology promotion. See also , <Jiangsu University graduate training process Introduction>h! ADVISORY COMIMITEE AND SUPERVISORY The master postgraduate students should be directed by a qualified major supervisor (Ph.D. graduate faculty), as well as a committee panel containing several qualified co-advisors/committee members. The Advisory Committee initially consists of at least 4 members of the Graduate Faculty, including the Major Advisor, who acts as the chair. At least 2 members must be from the School of xxxxxx, with at least 1 of these being a full member of the Graduate Faculty. The remaining 2 members may be from School of Management or another college, with 1 being a full member of the Graduate Faculty. If the student declares a minor, 1 committee member must be from the minor department. The committee should be established by the end of the second semester of the student s graduate career.i!. OTHER ISSUES AND REQUIREMENTS Graduate students are required to initiate their thesis study projects prior to the end of the second semester. The medium-term examination for thesis study is scheduled in the fourth semester. Other following important schedules relevant to your graduate study could be found from the Overseas Education College (OEC) at Jiangsu University. In general, a Masters student is required to have a research proposal and a plan of study accepted by his or her Graduate Advisory Committee by the end of the second semester of study. A list of completed courses and those proposed to meet school requirements should also be prepared. A meeting of the Advisory Committee should be convened by the student to discuss his/her proposal and course work.Every graduate student is required to publish at least one research paper in a relevant INTERNATIONAL JOURNAL prior to being eligible to apply a dissertation defense. The thesis must demonstrate a mastery of research techniques, ability to perform original and independent research, and skill in formulating conclusions that enlarge upon or modify accepted ideas.The above achievements are required to be with the first unit of Jiangsu University.j!. FINANCIAL ASSISTANCE Applicants from a foreign country can apply a variety of Chinese government scholarship that may fully or partially support your degree study at JU. For further information regarding these scholarships provided by Chinese government, you can surf on the website of Overseas Education College (OEC), JU, at http://oec.ujs.edu.cn/pub/eng/Scholarship/GS/. In addition to apply these funding supports, you can also apply a financial assistance provided by school of the Management of JU during your degree study, which depends on your performance in academic research.k! ATTACHMENTS(`!). Guide for thesis and dissertation research proposal and plan of studySchool of xxxxx, Jiangsu UniversityZhenjiang, Jiangsu Province(Date)TITLE: A brief, clear, specific designation of the subject of the research. The title, used by itself, should give a good indication of the project.OBJECTIVES: A clear, complete, and logically arranged statement of specific objectives of the project. If several objectives are proposed, they must be closely related. List them as 1, 2, 3, etc.JUSTIFICATION: Should present the motivation and importance of the research.PREVIOUS WORK AND PRESENT OUTLOOK: A brief summary covering pertinent previous research on the problem, citing important and recent publications, the status of current research, and additional information needed, to which the project is expected to contribute. This review will help to determine work already accomplished.PROCEDURE: A statement of essential work plans and methods to be used to attain each of the stated objectives. The procedure should correspond with objectives, and follow the same order. Phases of the work to be undertaken should be designated. RESEACH METHOD: should specify the research method of the project, if the theoretical analysis is conducted, the basic model description should be given, if the empirical study is conducted, the possible source of data should be indicated.PROBABLE DURATION: An estimate of the maximum time likely to be required to complete research and publish results. LITERATURE CITED: List important and recent publications involving this field of work.(a!).The directory of mainly classic books needed to be read.Optical Networks --A Practical Perspective (Second Edition), Rajiv Ramaswami, Kumar N. Sivarajan, Academic Press, 2002.Fundamentals of Wireless Communication, D. Tse and P. Viswanath, Cambridge University Press, May 2005.Principles of Digital Communication, Robert G. , Gallager January 5, 2008Computer networking: a top-down approach featuring the Internet, Kurose J F., Pearson Education India, 2005.High-speed networking: a systematic approach to high-bandwidth low-latency communication, Sterbenz J P G, Touch J D., John Wiley & Sons, 2002.Data and computer communications, Stallings W, Stallings W. New Jersey: Prentice hall, 1997.Open systems networking: TCP/IP and OSI, Piscitello D M, Chapin A L., Addison-Wesley Publishing Company, 1993.IEEE 802 wireless systems: protocols, multi-hop mesh/relaying, performance and spectrum coexistence, Walke B H, Mangold S, Berlemann L. ,John Wiley & Sons, 2007.Inside cisco ios software architecture, Bollapragada V, Murphy C, White R., Cisco Press, 2000.Routing tcp/ip, Doyle J, Carroll J D H., Cisco press, 2005.Computer networks, Andrew S. Tanenbaum. China Tsinghua University Press, 2012. HYPERLINK "http://huiwen.ujs.edu.cn:8080/opac/openlink.php?title=Computer+networks+%3A" Computer networks: a top-down approach, Behrouz A. Forouzan and Firouz Mosharraf. China Machine Press, 2012. HYPERLINK "http://huiwen.ujs.edu.cn:8080/opac/openlink.php?title=Computer+networks+%3A" Computer networks: a systems approach Larry L. Peterson, Bruce S. Davie. China Machine Press, 2012.Wireless Sensor Networks and Applications. Yingshu Li,My T. Thai,Weili Wu.New York: Springer-Verlag Inc, 2008.Synchronization in Wireless Sensor Networks: Parameter Estimation, Peformance Benchmarks, and Protocols, Erchin Serpedin, Qasim M. Chaudhari, Oxford city: Cambridge University Press,2009.Mobile Communications (2nd edition), Jochen Schiller, Addison Wesley, 2003.3G Evolution: HSPA and LTE for Mobile Broadband (2nd edition), Erik Dahlman, et al., Elsevier, 2008.Wireless Communications Principles and Practice (1st edition), Theodore S. Rappaport, Prentice-Hall, Inc., 1996.(b!). The directory of mainly professional academic journals needed to be read.IEEE Transactions on CommunicationsIEEE Wireless CommunicationsIEEE Communications LettersIEE Review IEEE Communications MagazineElectronics LettersIEEE Transactions on Medical ImagingIEEE Transactions on Ultrasonic, Ferroelectrics & Frequency ControlIEE Proceedings-F: Communications, Radar & Signal ProcessingInternational Journal of Infrared and Millimeter WavesMicrowave JournalOptics CommunicationsIEEE/IEE Electronic LibraryIEEE Transactions on Signal ProcessingMobile Networks & ApplicationsComputer CommunicationsJournal of Communications And NetworksJournal of The Communications NetworkKSII Transactions on Internet and Information SystemsWireless NetworksComputer Networks HYPERLINK "http://www.letpub.com.cn/index.php?journalid=3316&page=journalapp&view=detail" \t "_blank" IEEE Antennas and Wireless Propagation LettersIEEE Transactions on Antennas and PropagationIEEE Transactions on Microwave Theory and Technique(c!). Introduction of Professors Shu Yan. Ph.D, Professor Education Background1975-1978, Department of Radio Physics, Nankai Unversity, BS. Degree1998-2003, The School of Electronic and Information Engineering, Xi an Jiaotong University, Ph. D degree.Working Experience2005-Present, Department of Communication Engineering, School of Computer Science and Communication Engineering, Jiangsu University1978-2005, Xian Research Institute, CCTEGResearch InterestingElectromagnetic and Microwave Technology, Computational electromagneticand Wireless Sensor Network.ContactsEmail: yanshu@mail.ujs.edu.cn Tell: 13913445923, Fax: 0511-88780371Na Zhu. ProfessorEducation Background1978.1-1982.2, Department of Optical Technology, Zhejiang University, Hangzhou, China. BS Degree Jan. 19821986.9-1987.5 Nanjing University of Posts and Telecommunications as a scholar visitor, Nanjing, China.Working Experience1984-Present, Professor, School of Computer Science and Communication Engineering, Jiangsu University1982-1984, Assistant Engineer, Jiangsu Laser Research InstituteResearch InterestingAll-optical Networks, Optical communications, Optical Wireless Communication, and Wireless Sensor Networks.ContactsEmail:  HYPERLINK "mailto:zhuna@ujs.edu.cn" zhuna@ujs.edu.cn Tell: 13815176192 , Fax: xxxxxxxYun-tuan Fang. ProfessorEducation Background2007-2008 Royal Institute of Technology in Sweden as a scholar visitor1997-2000 Nanjing Normal University as a graduate studentWorking Experience2012-Present, Jiangsu UniversityResearch InterestingOptics communications; design of new optical deviceContactsEmail:fangyt@ujs.edu.cn Tell: xxxxxx , Fax: xxxxxxxSong Xuehua: Ph.D, Professor Education Background1989-1993, The Specialty of Physics in Nanjing Normal University, acquired the BS.1998-2001, Specialty of Circuits and Systems in Shanghai Jiao Tong University, acquired the Master's degree.2011, Received PhD degree in Power Machinery and Engineering from the institute of Automotive in Jiangsu UniversityWorking Experience2nJ - . / 3   * 4 VX2BVXZ`vͼ|hQTCJOJQJaJhQT5CJOJQJaJo(hQTCJaJo(hQTCJaJhQT5CJaJo(hQT5CJaJ hQT5CJOJQJ^JaJo(hQT5CJ$OJQJaJ$o(hQT5B*CJ$aJ$o(phfhQT5CJ$aJ$o(hQT5CJ$aJ$0J /  XZvBh0dhG$H$ $d81$a$ & FdhG$H$d8$d8a$ "B|8Nfh 0b>^ȽȽȽhQT5CJOJQJ^JaJ hQTaJhQThQTaJmH sH hQTKH\ho(hQTKH\hhQT5CJaJo(hQT5CJaJ hQT5CJOJQJ^JaJo(hQTCJOJQJaJhQTCJaJhQTCJaJo(5$&EG]^efVXn >@BF~ĽĽĽģăĽzrhQTCJaJhQTCJaJo(haJo(0hQTB*OJQJ^JaJfHph222q 3hQTB*OJQJ^JaJfHo(ph222q hQTaJo( hQTaJhQT5CJaJo(hQT5CJaJ hQT5CJOJQJ^JaJo(hQTCJaJo(hQTCJaJ,>Vdn $d8$Ifa$$d$G$H$Ifa$d8>9***$d$G$H$Ifa$kd$$IfTֈu Um<! 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R. China. In Apr. 1997, obtained MS. Degree in computer application science from Jiangsu University, P. R. China.In Jul. 1986, obtained BS. Degree in electrical automation from Jiangsu University, P. R. China.Working ExperienceFrom 1986 to the present, she has been working for nearly thirty years in Jiangsu University, P. R. China.Research InterestingComputer NetworkInterface Programming in Communication NetworksNetwork Engineering Technology Intrusion Detection Technology Advanced Computer NetworksContactsEmail: zhouly@ujs.edu.cn Tell: 13862446578 Fax: 0511-88780371Yi Zhu. Associated ProfessorEducation Background2010-Present, for Ph.D.degree in Communication and Information System, Nanjing University of Posts and Telecommunications, China2003-2006, Computer Application Technology, Jiangsu University, China. Master Degree ,20061995-1999, Communication Engineering, Soochow University, China. BE Degree , 1999Working Experience2011-Present, School of Computer Science and Telecommunication Engineering, Jiangsu University, Associated Professor & Vice Dean of Department of Communication Engineering2005-2011, School of Computer Science and Telecommunication Engineering, Jiangsu University, LecturerResearch InterestingNext Generation Network Technologies, Development of Mobile Internet & IOTContactsEmail:zhuyi@ujs.edu.cn Tell: 86-13852985471Yang Lixia.Ph.D, Associated Professor Education BackgroundHe received his B.S. from Hubei University, China, in 1997, and his Ph.D. degree from Xidian University, China, in 2007. His major is in Wireless Communication Engineering. As a Ph.D. Candidate in Department of Physics, he was with the Electromagnetic Scattering and Inverse Scattering (EM-SIS) Lab., Xidian University from 2002 to 2006. And from 2010 to 2011, he worked as a Post-doc Researcher, at ElectroScience Lab.(ESL) of Electronic and Computer Engineering(ECE) Department, The Ohio State University(OSU), U.S.A..Working Experience2007.04-Present, Dept. of Communication Engineering, School of Computer Science and Communication Engineering, Jiangsu University1997.08-2002.07, School of Physics and Electronic Engineering, Huanggang Normal UniversityResearch InterestingRF Microwave Circuits Design, and Antenna Theory and Design in Wireless Communication System, Electromagnetic Scattering of Complex Objects, Computational Electromagnetic, Electromagnetic Characteristics of Complex Media, Microwave Plasma Electromagnetic, ContactsEmail: lixiayang@yeah.net Tell:+86-511-88797508-509, Fax:+86-511-88780371 Kunqi Guo.Ph.D, Associated Professor Education Backgroundreceived his B.S. from University of Electronic Science and Technology of China (UESTC) in 1990 and M.S. degree from Universit de Paris 7 in 1995. He received his Ph.D. degree in information and communication engineering from Harbin Institute of Technology (HIT) in 2007. He is now an associate professor in the School of Computer Science and Communication Engineering of Jiangsu University. His interests include wireless technology and mobile computing.Working ExperienceContactsEmail: kunqiguo@163.com Tell: 13952946680 ,Jisheng Dai .Ph.D, Associated Professor Assistant Professor Education Background2001.9-2005.6, Department of Electronic Engineering, Nanjing University of Technology (NJUT), Nanjing, China, B.E degree.2005.9-2010.6, Department of Electronic Engineering and Information Science, University of Science and Technology of China (USTC), Hefei, China, Ph. D degree.Working Experience2010.6-Present, School of Electrical and information Engineering, Jiangsu University, Assistant Professor.2009.1-2009.10, Department of Electrical and Electronic Engineering, The University of Hong Kong, Research Assistant.Research InterestingConvex Optimization, Information Theory, Wireless Communications, Array Signal Processing, and BioinformaticsContactsEmail:jsdai@ujs.edu.cn XuBao. Ph.DEducation Background1999.9-2003.6, Bachelor degree, School of Computer Science and Communication Engineering, Jiangsu University2003.9-2006.6, Master degree, School of Computer Science and Communication Engineering, Jiangsu University2007.9-2011.6, Doctor degree, National Mobile Communications Research Laboratory, Southeast UniversityWorking Experience2008-2014, Assistant Professor, Jiangsu University2013.11-2014.11, Postdoctoral, School of Electrical and Computer Engineering, Georgia Institute of Technology, USA2014-Present, Associate Professor, Jiangsu UniversityResearch InterestingVisible Light Communications, Mobile CommunicationsContactsEmail: xbao@ujs.edu.cn Tell: 0511-88797508(509)Jing Xia .Ph.D Education BackgroundJing Xia received the B.E. degree in communication engineering from Jiangsu University, China, in 2003, the M.E. degree in computer science and technology from Jiangsu University, China, in 2007, and the Ph.D. degree in electromagnetic and microwave technique form Southeast University, Nanjing, China, in 2014.Working Experience2003-2013, A lecturer of Jiangsu University2014-Present, Associate Professor, Jiangsu UniversityResearch InterestingRF and antenna technologies for mobile communications and microwave theory and technology.ContactsEmail: ujsasan@ujs.edu.cn Tell: 0511-88797508 , Fax: 0511-88780370APPLICATION FORM FOR THE SCHEDULEComments of DisciplinePerson in chargeSignature  Date Review opinion of college academic degree sub-committee: Person in charge Signature  DatePAGE 1PAGE 20 INCLUDEPICTURE "http://cs.ujs.edu.cn/UploadFile/2012-7/201275103642771.jpg" \* MERGEFORMATINET Z*|*~**********@+P+R+h+j+~+++++++,(,B,N,Z,~,,,,,,,,--@-B-Z-^----..<.>.V.X.Z...////ɺ hQTaJhQTaJo( hQTo(hQThQT5B*CJaJphhQT5B*CJaJo(ph6jhQT5B*CJUaJmHnHo(phsHtHhQT5CJaJo(jhQTUhQT0Jo(://@0J0f0h0l0t0x0000000011x2z2222233(3N3T3V3j3$4:444p5r550626P6666666666"7$7~88ѼѼѵŸчhQTCJaJo(hQT5B*CJaJo(ph*jhQT5CJUaJmHnHsHtHhQTaJo( hQTaJhQT5B*CJaJo(phhQT5CJaJhQT5CJaJo(hQTB*CJaJo(phhQTB*CJaJph50012(3N34r5526D6666$788;^;b<=B=D?V???D@n@DD(Ddh86;8;^;b;l;;;;<<=@=B===B?D?V?b???????? @ @@@@B@l@n@LANAXAACCCDD&D(D:DFDDDDDDDDDDPEGGôߥߥjhQTUmHnHsHtHhQT5B*CJaJo(phhQT5B*CJaJo(ph$hQT5CJaJmHnHo(sHtHhQTCJaJo(hQT5CJaJo(hQT5CJaJhQTaJo( hQTaJ:(D:DDDD&EPEDFGG~HjIIpJJJJJJKLxMMNNVOOOO^PdhGhIjIIInJpJJJJJJJJLLxMMNVOOOO&P8P^P~PPPbRRSSSS@SDSHSJSRSVSZSSST.T0TTTTUjUxUUUUUxWXLXXXXXXXXXƿѮh>jh>UhQT5CJo(hQTCJo(hQT5CJ aJ o(hQT5CJPJ\aJo(hQT5CJaJo(hQT5CJaJhQTaJo( hQTaJC^P`PPPS@SST0TTTUUUUUVVVVNVVVW X$IfWD:`X$If$a$dhWWWvWxWzW|W~WWWJXLXX$Ifckdu$$IfL#$044 la XXXXXXXXXXXXXXXXX !&dPdhakd$$IfL#$044 laXXXXXXXXXYYYY YYYYY Y$Y&Y(Y,Y.Y0YYYYYYYYZ履hQT5CJPJ\aJo(j|hQTCJUaJhQTCJaJjhQTCJUaJhQT5CJ4aJ4o(j[hQTUo(hO"w0JmHnHuhQT0JmHnHsHtH hQT0JjhQTUhQTh>jh>U XXYYY Y"Y$Y&Y*Y,Y.YYYYYZdhWD1`&`#$0182P. 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