Future Radio Technologies Towards 5G: Research Opportunities at DCE + RF education at University of Oulu

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1 Future Radio Technologies Towards 5G: Research Opportunities at DCE + RF education at University of Oulu Aarno Pärssinen Professor, Radio Engineering

2 WIRELESS IN SMART PHONE iphone 6 Plus Teardown (

3 WIRELESS IN SMART PHONE iphone 6 Plus Teardown PA modules incl. Duplex filters UHB PA ET LB PA ANT SW Cellular modem: LTE Cat4 (150Mbbs DL & 50Mbps UL), HSPA+, EV-DO, TD-SCDMA) Application processor ANT tuner HB PA MB PA WLAN BT BT LE 3G/2G PA NFC RFIC: 2/3/4G TRx RFIC: 4G CA TRx 16/64/128GB NAND Flash PMIC other PMIC WLS

4 Digital signal processing implementing wireless algorithms S-o-A 2G/3G/4G RF transceiver with 8 band support

5 5 Industry Views on 5G Qualcomm Nokia Huawei Ericsson DoCoMo Samsung

6 mmw technology GHz 800 MHz bandwidth 10 Gbit/s Adaptive Beamforming Pre-5G radio prototype

7 7 Competences of a modern RF engineer Fundamentals Understand various applications of radios Master very well basic principles of communications Master very well basics of electronics design Excel in fundamentals of RF from Smith chart and matching to noise and non-linearity Prototyping and measuring RF Computer tools for electronics design

8 8 Competences of a modern RF engineer Advanced RF transceiver architectures RF system design and block level partitioning RF control algorithms IC design Communication circuits (LNA, PA, mixers, filters, amplifiers, ADCs, DAC s, VCO s, PLL s, digital for RF, ) Antenna design Radio propagation Various implementation technologies: fundamentals and their boundaries (CMOS, BiCMOS, SiGe, HBT, GaN, SAW, BAW, PCB, ) Material physics in some cases when closely involved to electronics Digital signal processing for wireless Embedded programming

9 9 Competences of a modern RF engineer Capability to co-operate and learn new things With and from your close colleagues In cross-disciplinary topics On your own Team work

10 10 Prerequisites for WCE-RF Basic courses of electronics: Understanding small signal behavior of a transistor in addition to circuit theory for Electronics design II & III Preferably basic course of radio technology to support further studies in Radio Engineering I & II

11 WCE RF Schedule 1st Year Autumn 2017 Periods 1-2 Spring 2018 Periods 3-4 Electronics Design II (6 cr, 1 p) Statistical Signal Processing (5 cr, 1 p) Broadband Communications Systems (5 cr, 1 p) Electronics Design III (5 cr, 2 p) Commun. Signal Processing I (5 cr, 3 p) RF Components and Measurements (5 cr, 4 p) Radio Engineering I (5 cr, 2 p) Radio Engineering II Radio Channels (6 cr, 3 p) (5 cr, 4 p) or Antennas (5 cr, 4 p) (one of these is mandatory, Wireless one can be chosen as an Communications I optional study course) (5 cr, 2 p) Optional Course Optional Course Advanced Practical Training (3 cr) (recommended in summer 2018, training report will be done on autumn 2018 term) Finnish Language studies (2-5 cr) and/or optional studies depending on personal workload Basic Studies Advanced Studies Optional Studies

12 WCE RF Schedule 2nd Year Autumn 2018 Periods 1-2 Spring 2019 Periods 3-4 Electronic System Design (5 cr, 1 p) Diploma (M.Sc.) Thesis Work (30 cr, 2-4 p) Communications Circuit Design (5 cr, 1 p) Optional Course Optional Course Optional Course Telecommunication Engineering Project (5 cr) or Electronics Design and Construction Exercise (5 cr, 1-2 p) (either one of these is mandatory) Finnish Language studies (2-5 cr) and/or optional studies to fulfill 120 ECTS requirements Basic Studies Advanced Studies Optional Studies

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