FINAL YEAR OPTION OVERVIEW. Assoc Prof Tay Wee Peng Assistant Chair (Academic)

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1 FINAL YEAR OPTION OVERVIEW Assoc Prof Tay Wee Peng Assistant Chair (Academic) 4 March 2019

2 B.ENG (EEE) PROGRAM EDUCATIONAL OBJECTIVES To equip graduates with a solid foundation in mathematics, sciences, engineering & soft-skills such as communication and management for diverse careers and life-long learning. To develop graduates ready to practice and for employment in industries in electrical and electronic engineering To develop graduates with a good understanding of their roles in society and a strong sense of ethical and professional responsibilities.

3 B.ENG (EEE) FINAL YEAR CURRICULUM Electrical & Systems Engineering Electronic Engineering Infocommunication Engineering

4 FINAL YEAR COURSE STRUCTURE Engineers & Society Engineering Communications II (Must be taken in Sem 1) Final Year Project 2 Design Electives 3 Technical Electives GER-PE & GER-UE Electives

5 AREA OF SPECIALIZATIONS WITHIN OPTION GROUP Electrical & Systems Engineering Biomedical Electronics Intelligent Systems & Control Engineering Electrical Power & Energy Electronic Engineering Integrated Circuit Design Microelectronics + Photonics Infocommunication Engineering Communication Engineering Computer Engineering Data Intelligence & Processing

6 ELECTRICAL & SYSTEMS ENGINEERING (ECAL) Biomedical Electronics Biomedical Control System Design Design of Medical Info Process System Physiological System Analysis Biomedical Instrumentation Biophotonics Process Control System Computer Vision Intelligent System & Control Engineering Control Engrg Design Intelligent System Design Process Control System Computer Vision Robotics & Automation Digital Control Systems Computational Intelligence Electrical Power & Energy Power Engrg Design Design of Clean Energy Systems Power System Analysis & Control Power Electronics & Drives Modern Distribution System with Renewable Energy Process Control Systems Digital Control Systems Computational Intelligence

7 ELECTRONIC ENGINEERING (ENIC) Integrated Circuit Design Mixed-Signal IC Design Radio Frequency Integrated System Design Digital Design with HDL VLSI Systems Advanced Analog Circuits Radio Frequency Circuit Design Analysis & Design of Integrated Circuits IC Reliability & Failure Analysis Microelectronics CMOS Process & Device Simulation by Tech CAD Device Parameter Extraction & Layout Implementation Microfabrication Engineering VLSI Technology Microelectronic Devices IC Reliability & Failure Analysis

8 INFOCOMMUNICATION ENGINEERING (INON) Communication Engineering Cellular Comm. System Design Wireless System Design Optical Comm. System Design Digital Communications Telecommunication Systems Wireless Communications Computer Engineering Web Application Design Enterprise Network Des Computer Architecture Information Security Computer Networking Database Systems Embedded Systems AI & Data Mining Multimedia Systems Software Engineering Data Intelligence & Processing DSP System Design Intelligent System Design Neural Network Design Embedded Systems Audio Signal Processing Image Processing Digital Video Processing AI & Data Mining Multimedia Systems Probability Theory & Applications Pattern Recognition Computer Vision Computational Intelligence

9 FINAL YEAR OPTION DECLARATION EXERCISE Select 1 of the 3 option groups. Select 2 Design Electives from the chosen group. Select 3 Technical Electives from the chosen group.

10 FINAL YEAR OPTION WEBSITE

11 FINAL YEAR OPTION DECLARATION PERIOD No Declaration = Registration Placement Not Guaranteed 4 Mar (5 pm) to 24 Mar (11.59 pm) Courses with limited interest will be closed. StudentLink > Academic Matters Enquiries: eeeundgrad@ntu.edu.sg

12 EE(IM) 4080 Final Year Project Associate Professor Goh Wang Ling FYP Committee Chairman March 04,

13 Outline Final Year Project (FYP) How FYP is related to Final Year Option FYP Matters Before Project Allocation/Selection FYP Matters During Project Allocation/Selection FYP Requirements FYP Assessments 2

14 EE(IM) 4080 Final Year Project Every final year student of EEE is required to undertake a project supervised by one or two faculty members. You may start your FYP in the next semester and it will spread over one academic year (2 semesters). No extension is allowed except for approved semester leave. Add/drop during the first 2 weeks of semester is allowed. 3

15 Is FYP linked to Final Year Option? FYPs are NOT classified according to options (Electrical & Systems Eng., Electronic Eng., InfoCommunication Eng.). Should you choose an FYP from your final year option? Useful but not necessary or always possible! How to tell whether an FYP is in your chosen option? 1. By the project title/summary 2. By the main supervisor s area affiliation and his/her research interest Try to choose an FYP close to your final-year option 4

16 Project Selection Key Information Each project must have a main/sole FT supervisor from the School of EEE Project Types: Type A Projects proposed by EEE professors, URECA-FYP Type B Projects proposed by external partners such as research institutes and industries, such as RI/SCP, ISP. Check with your potential EEE supervisors RI : Research Institute SCP : School Collaboration Project, ISP : Industrial Sponsored Project 5

17 Project Allocation/Selection Two phases (see next slide) Do your homework before selecting project/supervisor RI-FYP projects may require interviews by RI supervisors. They may be more demanding and challenging. For RI-FYP, ISP-FYP, you may need to go to RI or company outside NTU regularly, say, once a week. 6

18 Allocation/Selection Phases Phase 1 Selection by Supervisor (Early April) Discuss with your potential supervisor You will receive a confirmation if the project is successfully allocated to you Phase 2 Selection by Students and Allocation by Computer (After Exam, from mid to end May). Selection statistics will be provided ( notification will be sent). Final announcement on allocation: Mid-June 7

19 FYP Requirements (PRE-REQUISITES after examination results are out for this semester) Year 4 standing or in the final study year, meeting all the AU requirements for the BEng degree upon completion of FYP. Have a balance of no more than 44 AUs (46 AUs for IEM students) inclusive of 8-AU FYP at point of registration of FYP. Completed Professional Internship (PI) *. * ABP students are allowed to register for FYP concurrently with PI at any given time. * Double Degree/Major students are allowed to register for FYP if taking up Professional Attachment (PA) during May to July period. 8

20 Interim Assessment FYP Assessments Project Plan/Strategy Submit to Supervisor at ~week 6 Interim Report submit to both Supervisor and Examiner near the end of the first semester of FYP Main Assessment Project Final Report Submit to both Supervisor and Examiner in early April Project Demonstration To Examiner after report submission Oral Presentation To both Supervisor and Examiner Evaluation Criteria Carry out preparatory work, such as literature search and review Evaluate materials of relevance and understand the background Focus on the main issues, formulate the problem, and identify key tasks Validate the problem statement through analytical studies, simulations, experiments etc. Write a report and present the work 9

21 Project Assessment All FYP reports (interim report, draft and final reports) must be submitted to Turnitin service to check for plagiarism, where the service produces a similarity score and originality report. A master course site will be created for students to submit the FYP report for Turnitin checking. Supervisor s and examiner s personal course sites will be created for students to submit the FYP reports to the supervisor and examiner. A minimum CGPA of 4.50 plus at least an 'A-' grade for the FYP is required for the award of the Honours Degree with Highest Distinction. 10

22 Submission Details for Semester 1 FYP Project Plan/Strategy submission: 16 September 2019 Interim report submission: 11 November 2019 Draft report submission: 27 March 2020 Final report submission: 8 April 2020 Demo: April 2020 Oral presentation: May 2020 (after the last exam paper) Note: For Semester 2 FYP, please refer to the FYP Website. 11

23 Useful Information and Guidelines Check your s regularly, particularly those starting with FYP Visit the EEE FYP website regularly. Guidelines, schedules, key announcements, and all other important information about EEE FYP are provided. Or simply search NTU EEE FYP in Google 12

24 Final Year Option Talk 4 March 2019 ELECTRICAL AND SYSTEMS ENGINEERING (ECAL) By John Chan

25 ELECTRICAL AND SYSTEMS ENGINEERING OPTION Students are required to take 2 DESIGN elective courses and 3 TECHNICAL elective courses. Students must choose all design and technical elective courses from their chosen option group. For specialization, students must choose the design and technical elective courses from the respective areas of specialization.

26 Final Year Specialization Biomedical Electronics Power & Clean Energy Intelligent Systems & Control Engineering

27 Biomedical Electronics [1] What is Biomedical Engineering? Biomedical Engineering is a multiple disciplines and high technology area It is to provide solutions for health care industries and services Electrical engineers play a key role in health care industries and services (circuits and electronics, measurement and instrumentation, information and signal processing, medical imaging and image processing, modeling and control, telemedicine)

28 Career Opportunities Medical R & D laboratories and institutes Hospitals Academic institutions/government boards Companies Sale and marketing of medical instruments and products

29 Power & Clean Energy [2] Power is a basic necessity.can you think of anything in life without ELECTRICITY (POWER)? Importance of power engineers What do they do? Power system control, building services & electrical consulting, energy traders/brokers, power electronics, energy alternatives & renewable energy, intelligent energy system, oil refineries and related companies Registered as a Professional Engineer (PEng) with PEB

30 Career Opportunities Oil refineries Building services Electrical consulting companies Power equipment sales Engineering firms Hospitals Shipyards Singapore Power, MINDEF, SMRT, PSA, JTC, CAAS, LTA

31 Final Year Technical Electives with Pre-requisites (EE3010, EE3015) Design Electives > EE4503 Power Engineering Design (S1) > EE4504 Design of Clean Energy Systems (S2) Technical Electives# > EE4530 Power System Analysis and Control (S1/S2) > EE4532 Power Electronics and Drives (S1) > EE4533 Power Apparatus and System Protection (S2) > EE4534 Modern Distribution Systems with Renewable Resources (S2) #Taking the 4 technical electives ensures 100% coverage of the FEE (Electrical) syllabi for PEng registration with the PEB. #The 4 th technical elective can be taken as a UE (since only 3 technical electives are needed).

32 Intelligent Systems & Control Engineering [3] CONTROL is the heart of many engineering systems and it synergistically integrates the plants (electro-mechanical, chemical, etc), with sensors, actuators, computers, communication, and software to yield optimal responses Control systems enables integrations of mechanics, electronics, and computer hardware and software to revolutionize technology in the new economy

33 Career Opportunities Robotics and automated manufacturing Aerospace and automotive industries Precision engineering and manufacturing Process industries (petrochemical processes, pharmaceuticals and biotechnology processes, energy (including alternative energy) systems, environment and water treatment processes, food production processes) Building automation

34 OPTION GROUP B ELECTRONIC ENGINEERING presented by K Radha Krishnan Associate Professor, EEE 04 March 2019

35 Specialization in Electronics Option 2 specializations ELECTRONICS Microelectronics Microelectronics Courses Photonics Courses IC Design IC Design Courses 2

36 Courses in IC Design Specialization IC Design Should have taken in Third Year: 1 EE3019 Integrated Analog Electronics (Pre-requisite) Design Electives (Choose any 2) Technical Electives (Choose any 3) 1 EE4303 Mixed-Signal IC Design 1 EE4304 Radio Frequency Integrated System Design EE4305 Digital Design with HDL EE4340 VLSI Systems 1 EE4341 Advanced Analog Circuits 1 EE4343 Radio Frequency Circuits 1 EE4344 Analysis & Design of Integrated Circuits EE4694 IC Reliability & Failure Analysis 3

37 Courses in Microelectronics/Photonics Specialization Design Electives (Choose both) EE4613 EE4614 CMOS Process and Device Simulation by Technology CAD Workstation Based Design & Simulation Course Virtual Wafer Fabrication & Device Characterization of a 2 µm CMOS Process Virtual Process Integration for MOS Technology Development & Device Optimization Device Parameter Extraction & Layout Implementation Workstation Based Design & Simulation Course Virtual Device Characterization Transistor Parameter Extraction Circuit Simulation & Mask Layout Pre-requisite: EE3013 Semiconductor Devices and Processing 4

38 Courses in Microelectronics/Photonics Specialization Technical Electives (Microelectronics/Photonics) 1 EE4645 Microfabrication Engineering 1 EE4646 VLSI Technology EE4647 Microelectronic Devices (Choose any 3) 1 EE4694 IC Reliability and Failure Analysis EE4838 EE4840 Laser Engineering and Applications Bio-Photonics 1 Pre-requisite: EE3013 Semiconductor Devices and Processing 5

39 Courses in Microelectronics/Photonics Specialization Technical Electives (Photonics) EE4838 EE4840 LASER ENGINEERING AND APPLICATIONS BIOPHOTONICS No Pre-requisite required 6

40 Employment Opportunities in Electronics and Photonics Areas

41 Wide Range of Career Opportunities in Electronics Sector with Global Leaders + R&D Manufacturing Headquarters 8

42 16 of top 20 global companies have R&D, manufacturing or HQ in Singapore World #1 USA #1 CPU #1 World #2 Asia #1 World #4 USA #2 World #5 Japan #2 World #7 Europe #1 World #8 USA #3 Memory #2 World #9 USA #4 Comms #1 World #11 USA #5 Comms #2 World #12 USA #6 CPU #2 World #13 Europe #2 World #15 Japan #5 World #17 USA #7 World #17 Europe #3 World #18 USA #8 World #19 Taiwan #1 World #20 USA #9 Graphics #3 Companies representing >50% of ww semicon revenue are in Singapore 9

43 Singapore s Semiconductor Ecosystem Strong, comprehensive base of top companies IC Design Wafer Fabrication Assembly and Test Have focused on engaging top companies to build up a semiconductor ecosystem in Singapore 9 of the top 15 fabless semiconductor companies 3 of the top wafer foundries 4 of the top 6 OSATs Outsourced Semiconductor Assembly and Test 10 4

44 11

45 12

46 13

47 Singapore s Electronics Industry in % of Singapore s GDP S$90B manufacturing output Breakdown of Electronics Industry Semiconductors (53%) ~66,000 employment 17% of total manufacturing jobs Electronic Modules & Components (11%) Data Storage (11%) 9% 1 in 10 chips worldwide are made in Singapore Infocomms & Consumer Electronics (14%) Computer Peripherals & EMS (11%) A Key Pillar of our Economy singstat.gov.sg,

48 Photonics Industry in Singapore Estimated output S$1.2 billion Communications Sensing, Test & Measurement Security, Defense Advanced Displays Solid State Lighting Electronics Mfg Services Tinggi Tech Nejilock

49 Research Oriented Career Opportunities Project officer, Research Assistant in Research projects in Many Research Centers in NUS, NTU, etc Postgraduate scholarships. Job prospect after MEng or PhD: Professor, research scientist or engineer at IME, IMRE, DSI, I2R, SimTech, IBN, NTU, NUS, MNCS, etc. (& overseas opportunities).

50 Many graduates, who did not take the Electronics option, have also ended up in Electronics Sector for employment! -Recent survey So, you have chosen the right area! Look at long-term career plan and Job satisfaction Follow your interest & heart! Thank you!

51 Final-Year Option in InfoCommuncation Engineering TEH Kah Chan Area Lead (InfoCommunication) School of Electrical and Electronic Engineering 4 March 2019

52 Infocommunication Engineering Communication Engineering Three Specializations Data Intelligence and Processing Computer Engineering

53 Communication Engineering Satellite Communications Mobile Communications Optical Communications

54 Data Intelligence & Processing Applications Media Search Engine Mobile Audio Video on-demand Computer Social Network HDTV On-line Gaming Smart Phones

55 Computer Engineering All aspects of our lives have been transformed by the emergence of internet, e-commerce, mobile phones/pda, ultra-high-definition TV, medical imaging, etc. It is computer engineers who developed the hardware, software and networking technologies that made them possible Combines computer systems with conventional aspects of electrical and electronic engineering Covers computer hardware, software, and networking

56 Smart Phone as an Example

57 Year 3 Prescribed Elective Courses for Infocomm Select any two courses Code EE3012 EE3014 EE3017 Title Communication Principle Digital Signal Processing Computer Communications Recommendation: Communication Engineering EE EE3017 Computer Engineering EE EE3017 Data Intelligence & Processing EE EE3017 or EE3012

58 EE4105 EE4109 EE4110 EE4208 EE4413 EE4414 EE4717 EE4718 Year 4 Elective Courses in Infocomm Engineering Design Elective courses Cellular communication system design Wireless system design Optical communication system design Intelligent Systems Design DSP system design Neural Networks Design Web application design Enterprise network design COMMUNICATION ENGINEERING: EE4105, EE4109, EE4110, EE4151, EE4152, EE4153, EE4188. COMPUTER ENGINEERING: EE4717, EE4718, EE4001, EE4756, EE4758, EE4761, EE4455, EE4483, EE4490, EE4791. DATA INTELLIGENCE & PROCESSING: EE4208, EE4413, EE4414, EE4266, EE4285, EE4475, EE4476, EE4478, EE4483, EE4490, EE4491, EE4497. EE4001 EE4152 EE4153 EE4188 EE4266 EE4285 EE4455 EE4475 EE4476 EE4478 EE4483 EE4490 EE4491 EE4497 EE4756 EE4758 EE4761 EE4791 Technical Elective courses Software engineering Digital communications Telecommunication systems Wireless communications Computer Vision Computational Intelligence Embedded systems Audio signal processing Image processing Digital video processing Artificial intelligence & data mining Multimedia systems Introduction to Probability Theory Pattern Recognition Computer architecture Information security Computer networking Database systems

59 Career Opportunities of EEE Graduates with Infocomm Engineering Research Centre Consumer Electronics Industry Communications & Broadcasting Infocomm Computers & Communications Government & Statutory Boards Banking & Financial Institutions Private Communication Networks

60 Industries that requires Infocomm

61 Thank you

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