Technical Program
Interactive Forum
TH1-IFInteractive Forum II
Room
Room A
Date and Time
11/08 (Thu) 10:00-11:30
Chairs
Masahiro Horibe (National Institute of Advanced Industrial Science and Technology, Japan), Dmitry Kholodnyak (St. Petersburg Electrotechnical University, Russia)
Sessions
01 | A -194 dBc/Hz FoM VCO with Low-Supply Sensitivity for Ultra-Low-Power Atomic Clock |
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Haosheng Zhang (Tokyo Institude of Technology, Japan); Hans Herdian (Tokyo Institute of Technology, Japan); Aravind Tharayil Narayanan and Bangan Liu (Tokyo Institude of Technology, Japan); Rui Wu, Atsushi Shirane and Kenichi Okada (Tokyo Institute of Technology, Japan) | |
02 | Single-Pole Double-Throw Switch Using Stacked-FET Configuration at Millimeter Wave Frequencies |
Peng-I Mei and Ting-Jui Huang (National Chiao Tung University, Taiwan); Yi-Fan Tsao (International College of Semiconductor Technology, NCTU, Taiwan); Che-Yang Chiang (Industrial Technology Research Institute, Taiwan); Heng-Tung Hsu (National Chiao Tung University & International College of Semiconductor Technology, Taiwan) | |
03 | Phase Noise Improvement of a Ku-Band Push-Push Oscillator Using Injection Locking via Two Magnetic Coupling Points |
Elton Nascimento Lima (Graduate School of Science and Engineering, Saga University, Japan); Takayuki Tanaka and Ichihiko Toyoda (Faculty of Science and Engineering, Saga University, Japan) | |
04 | A Low-loss Compact X-Band Superconducting Phase Shifter |
Hiroaki Ikeuchi, Tamio Kawaguchi, Noritsugu Shiokawa, Yuichi Sawahara and Hiroyuki Kayano (Toshiba Corporation, Japan) | |
05 | Tunable Film Bulk Acoustic Wave Resonator Based on Magnetostrictive Fe65Co35 Thin Films |
Jitendra Singh (CEERI Pilani, India) | |
06 | Linearity Characterization of Reactive Components |
David Molinero (Wispry, inc, USA); Shawn Cunningham (Wispry, inc., USA); Art Morris (Wispry, USA) | |
07 | A X-Band Wide-Scan Phased Array system based on Rotman Lens |
Yang Yuchen (No38 Research Institute of CETC, P.R. China) | |
08 | Design and Implementation of 2.4Gsps Digital Channelized Receiver |
Yang Yuchen (No38 Research Institute of CETC, P.R. China) | |
09 | Non-Contact and Real-Time Pulse-Based Radar with Sensitivity Improvement for Vital-Sign Monitoring |
Jian-Yu Huang, Chia-Chin Hsu and Chia-Hung Chang (Feng-Chia University, Taiwan); Wei-Wen Hu (Southern Taiwan University of Science and Technology, Taiwan) | |
10 | A Modified Map-Drift Algorithm for SAR Autofocusing |
Wu Wang, Daoxiang An, Yuxiao Luo, Zhimin Zhou and Xiaotao Huang (National University of Defense Technology, P.R. China) | |
11 | Quantized Beamforming for RAR Suppression using Convex-ABC Hybrid Algorithm |
Sung-Jun Yang (KAIST, Korea) | |
12 | Wireless 3D Localization Concept for Industrial Automation Based on a Bearings Only Extended Kalman Filter |
Melanie Lipka (LHFT, Friedrich-Alexander-Universität Erlangen-Nürnberg, Germany); Erik Sippel (Friedrich-Alexander Universität Erlangen-Nürnberg, Germany); Markus Hehn (University Erlangen Nuremberg, Germany); Julian Adametz (FAU, Germany); Martin Vossiek (LHFT, Friedrich-Universität Erlangen-Nürnberg, Germany); Yassen Dobrev and Peter Gulden (Symeo GmbH, Germany) | |
13 | Short Range FMCW Radar for Velocity and Range Detection of Slow Moving Target |
Mengting Tu, Wai Wa Choi and Pedro Cheong (University of Macau, Macao) | |
14 | Squint SAR Ground Moving Target Imaging and Motion Parameters Estimation with Keystone Transform |
Jiefang Yang and Yunhua Zhang (National Space Science Center, Chinese Academy of Sciences, P.R. China) | |
15 | Holographic SAR Tomographic Processing of the Multicircular Data |
Dong Feng, Daoxiang An, Xiaotao Huang and Zhimin Zhou (National University of Defense Technology, P.R. China) | |
16 | A Theory of Aircraft Position Verification Using TDOA |
Junichi Naganawa and Hiromi Miyazaki (Electronic Navigation Research Institute, Japan) | |
17 | Automatic Tracking of Human Body Using Millimeter-Wave Adaptive Array Radar for Noncontact Heart Rate Measurement |
Kentaro Konishi (University of Hyogo, Japan); Takuya Sakamoto (University of Hyogo & Kyoto University, Japan) | |
18 | High Resolution Moving Train Imaging using Linear-FM Random Radar Waveform |
Jiafang Liu (National Space Science Center, Chinese Academy of Sciences & University of Chinese Academy of Sciences, P.R. China); Yunhua Zhang and Xiao Dong (National Space Science Center, Chinese Academy of Sciences, P.R. China) | |
19 | Experimental Results of Target Classification Using mmWave Corner Radar Sensors |
Xinyi Tang, Xiaojun Wu and Siew Bee Yeap (Desay SV Automotive, Singapore); Ruijiang Luo (Desay SV Automotive Singapore PTE LTD, Singapore); Tiffany Dai (Desay SV Automotive, Singapore); Li Huang (Desay SV Automotive, P.R. China) | |
20 | Range Migration Algorithm for Near-field SIMO Array Imaging |
Rongqiang Zhu, Jianxiong Zhou and Qiang Fu (National University of Defense Technology, P.R. China) | |
21 | A HSV-Based Fusion of InIRA SAR and GoogleEarth Optical Images |
Dong Li, Yunhua Zhang and Xiao Dong (National Space Science Center, Chinese Academy of Sciences, P.R. China); Xiaojin Shi and Wenshuai Zhai (Center for Space Science and Applied Research, Chinese Academy of Sciences, P.R. China) | |
22 | Interferometric Imaging Radar Altimeter on Board Chinese Tiangong-2 Space Laboratory |
Yunhua Zhang and Xiaojin Shi (National Space Science Center, Chinese Academy of Sciences, P.R. China) | |
23 | Broadband 2 W SiGe - GaN Driver Amplifier and 28 W GaN on Si Power Amplifier |
Eigo Kuwata, Shuichi Sakata, Kengo Kawasaki and Daisuke Tsunami (Mitsubishi Electric Corporation, Japan); Kazuhiro Maeda (Mitsubishi Electric Corporation & High Frequency & Optical Device Works, Japan); Shintaro Shinjo (Mitsubishi Electric Corporation, Japan) | |
24 | A Frequency-domain Technique of Chipless RFID Identification using Cauchy Method |
Lakkhana Bannawat (RMUTR, Thailand); Akkarat Boonpoonga (KMUTNB, Thailand) | |
25 | 24 GHz FMCW Radar System for Real-Time Hand Gesture Recognition Using LSTM |
Jun Seuk Suh and Sijung Ryu (KAIST, Korea); Byunghun Han (KAIST Institute for IT Convergence, Korea); Jaewoo Choi (KAIST, Korea); Jong-Hwan Kim (Korea Advanced Institute of Science and Technology (KAIST), Korea); Songcheol Hong (IEEE, USA) | |
26 | Envelope Tracking System for High Power Applications in uplink 4G/5G LTE Advanced |
Florinel Balteanu (Skyworks Solutions, USA) | |
27 | An On-chip Self-Interference Canceller with Variable Inductor Based Electrical Balance Network for Full Duplex Systems |
Xiucheng Hao, Yongan Zheng, Zhengkun Shen, Zexue Liu, Junhua Liu and Huailin Liao (Peking University, P.R. China) | |
28 | Flange Angle Design for Waveguide-Based Orbital Angular Momentum Multiplexing Communication Systems |
Nedime Pelin M. H. Salem (New Jersey Institute of Technology, USA); Edip Niver (NJIT, USA); Mohamed A Salem (Sonoma State University, USA) | |
29 | Experimental Demonstration of OFDM Based WDM-MIMO Visible Light Communication System |
Nariisa Omura and Saeko Oshiba (Kyoto Institute of Technology, Japan) | |
30 | Six-Port Based High Performance Concurrent Dual-Band Receiver |
Nadia Chagtmi (Faculte des Sciences de Tunis, Tunisia); Afef Harguem (Ecole Polytechnique of Montreal, Canada); Noureddine Boulejfene (Center for Research on Microelectronics and Nanotechnology, Technopole of Sousse, Sousse, Tunisia); Fadhel Ghannouchi (University of Calgary, Canada) | |
31 | Clustering Based Pilot Allocation Algorithm for Mitigating Pilot Contamination in Massive MIMO Systems |
He Gao, Tiankui Zhang and Chunyan Feng (Beijing University of Posts and Telecommunications, P.R. China); Youxiang Wang (China United Network Communication Corporation Ltd., P.R. China) | |
32 | Experimental Evaluation of Adaptive Simultaneous Transmission Timing Control Considering Idle/Busy Probability for Multi-band Wireless LAN |
Naoto Egashira (ATR Wave Engineering Laboratories, Japan); Kazuto Yano (ATR, Japan); Masayuki Suto (Mobile Techno Corp., Japan); Atsuhiko Sugitani (Mobile Techno Corps, Japan); Yasuharu Amezawa (Mobile Techno Corp, Japan); Tomoaki Kumagai (ATR, Japan) | |
33 | Development of High Isolation Ping-Pong DDS-PLL Based Frequency Synthesizer for Fast Frequency Hopping Applications |
Jian-Yu Li, Fu Chun Tang and Tsung-Hwa Hsieh (Yuan Ze University, Taiwan) | |
34 | Study on Fading Prediction for Automated Guided Vehicle using Probabilistic Neural Network |
Julian L Webber (Osaka University & Advanced Telecommunications Research Institute International, Japan); Norisato Suga (ATR, Japan); Abolfazl Mehbodniya (UCD, Ireland); Kazuto Yano and Tomoaki Kumagai (ATR, Japan) | |
35 | Atmospheric Vapor Distribution Observation by Using a Ku-Band Beacon from a LEO Satellite |
Seiji Fukushima and Yusuke Kora (Kagoshima University, Japan); Masanori Nishio (Aichi University of Technplogy, Japan) | |
36 | Busy/Idle Duration Model for WLAN Traffic and Its Prediction Performance using Autoregressive Method |
Yafei Hou and Yusuke Tanaka (Okayama University, Japan); Julian L Webber (Osaka University & Advanced Telecommunications Research Institute International, Japan); Kazuto Yano (ATR, Japan); Satoshi Denno (Okayama University, Japan); Tomoaki Kumagai (ATR, Japan) | |
37 | Efficient Acquisition of Map Information using Local Data Sharing over Hierarchical Wireless Network for Service Robots |
Rui Teng (Advanced Telecommunications Research Institute International, Japan); Kazuto Yano and Tomoaki Kumagai (ATR, Japan) | |
38 | Effect of Applying Meta-Surface Reflector on 2×2 LOS MIMO |
Ryuji Kuse, Takeshi Fukusako and Akira Matsushima (Kumamoto University, Japan) | |
39 | Wool-Air Mix Permittivity Measurement |
Kimberley W. Eccleston (Lincoln Agritech Ltd, New Zealand); Sonya M Scott (AgResearch Ltd, New Zealand); Paula A Brooksby (University of Canterbury, New Zealand); Ian Fowler and Scott A Sevier (AgResearch Ltd, New Zealand) | |
40 | Simulation of Suppression Technology of Angular Glint Based on MIMO Radar |
Hai Lin, Jun-Xiang Ge and Jie Wang (Nanjing University of Information Science & Technology, P.R. China) | |
41 | Flexible OTA Probe Setups for Massive MIMO Base Station Testing |
Heng Wang, Weimin Wang and Yongle Wu (Beijing University of Posts and Telecommunications, P.R. China); Yuanan Liu (Beijing University of Posts and Telecom, P.R. China) | |
42 | A 3D Printed Elliptical Mirror for Material Characterization Using FMCW Transceivers |
Jonas Wagner, Jan Barowski and Ilona Rolfes (Ruhr-Universität Bochum, Germany) | |
43 | Towards an Automated, Non-Destructive Method to Measure Sugar Content Using Dielectric Spectroscopy |
Scott J Thomason and Konstanty S Bialkowski (The University of Queensland, Australia) | |
44 | Near Field Quasi Plane Wave Generation and Performance Evaluation |
Xuelei Sun, Zhengpeng Wang and Jungang Miao (Beihang University, P.R. China) | |
45 | The Impact of Human Walking on the Time-Frequency Distribution of In-Home Radio Channels |
Alireza Borhani and Matthias Pätzold (University of Agder, Norway) | |
46 | A Novel Composite-Loop Active Load-Pull System Having Stability and Simple Structure |
Kentaro Kawabe and Toshio Ishizaki (Ryukoku University, Japan) | |
47 | Microstrip Lines Loaded with Bandstop Resonators for High Resolution Permittivity Sensing |
Amir Ebrahimi (RMIT University, Australia); Asif Ahmed (RMIT University, Australia & American International University Bangladesh, Bangladesh); Benjamin Mapleback, James Scott and Kamran Ghorbani (RMIT University, Australia) | |
48 | Complex Permittivity Evaluation of Dielectric Materials for Millimeter Wave Circuit Substrates with the Whispering-Gallery Mode Resonator Method |
Kentaro Takano, Kota Tsunoda, Takashi Shimizu and Yoshinori Kogami (Utsunomiya University, Japan) | |
49 | Complex Permittivity Measurements of Thermoplastic Resin Filaments for a 3D Printer Using a 50GHz TM0m0 Mode Cavity Resonator |
Takafumi Sasaki, Kohei Takahagi, Yoshinori Kogami and Takashi Shimizu (Utsunomiya University, Japan) |
TH3-IFInteractive Forum III
Room
Room A
Date and Time
11/08 (Thu) 14:00-15:30
Chairs
Tuptim Angkeaw (Chulalongkorn University, Thailand), Kazuya Yamamoto (Mitsubishi Electric Corporation & High Frequency and Optical Device Works, Japan)
Sessions
01 | A Generalized Digital Predistortion Model Based on Artificial Neural Networks |
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Zhijian Yu (Shanghai Huawei Technologies Co., Ltd., P.R. China) | |
02 | In-Phase or Quadrature Observation for Indirect Learning Architecture Digital Predistortion Method Based on Forward Modeling |
Yikang Zhang, Gang Li, Hongmin Li, Wen Qiao and Falin Liu (University of Science and Technology of China, P.R. China) | |
03 | A 32% Bandwidth, 47.2% PAE Power Amplifier with a Reduced IMD3 Using GaAs HBT Technology |
Li Shaojun, Lv Hongliang, Zhang Yimen and Zhang Yuming (Xidian University, P.R. China); Muhammad Asif (Chinese Academy of Science, Pakistan) | |
04 | Design of a 1.4 - 3.6 GHz High-Efficiency Broadband Power Amplifiers with Mixed Operation Modes |
Fei You, Chuan Li and Weimin Shi (University of Electronic Science and Technology of China, P.R. China); Songbai He (University of Electronic Science and Technology of China, Chengdu, P.R. China) | |
05 | Design of Low-Power High-Speed Current Mode Dual-Modulus Prescaler with Inductive Peaking Structure |
Wanlu Wang, Song Jia, Xinning Liu and Yuan Wang (Peking University, P.R. China) | |
06 | An 88.68% Tuning Range Enhancement and High Process Compatibility mm-Wave QVCO with SCHI Achieving-196.6 FOMT |
Hui Yang (Institute of Microelectronic Circuits and Systems, East China Normal University, P.R. China); Runxi Zhang and Chunqi Shi (East China Normal University, P.R. China); Guangsheng Chen (Shanghai Eastsoft Microelectronics Co. Ltd., P.R. China) | |
07 | 1-40GHz MMIC Distributed Power Amplifier in Gallium Nitride Technology with P1dB > 31dBm |
Iban Barrutia and Amparo Herrera (Universidad de Cantabria, Spain) | |
08 | A 2W 45% PAE X-Band GaN HEMT Class-F MMIC Power Amplifier |
Tomohiro Senju, Kazutaka Takagi and Hideki Kimura (Toshiba Infrastructure Systems & Solutions Corporation, Japan) | |
09 | Deep Neural Network Based Predistorter with ReLU Activation for Doherty Power Amplifiers |
Reina Hongyo (Toshiba Corporation); Yoshimasa Egashira and Keiichi Yamaguchi (Toshiba Corporation, Japan) | |
10 | A Low Loss Slow Wave Structure Based on HCG SSP for Traveling Wave Tube Applications |
Chen Zhao (Nanyang Technological University, Singapore); Geyi Wen (Nanjing University of Information Science and Technology, P.R. China) | |
11 | A 26GHz 22.2dBm Variable Gain Power Amplifier in 28nm FD-SOI CMOS for 5G Antenna Arrays |
Christian Elgaard (Ericsson Research & Lund University, Sweden); Andreas Axholt (Acconeer, Sweden); Eric Westesson (Ericsson Research, Sweden); Henrik Sjöland (Lund University, Sweden) | |
12 | Novel Dual Power-Mode CMOS Differential Power Amplifier Design Using Single Supply Voltage and a Compact Reconfigurable Output Combining Network |
Chenxi Zhai (The Chinese University of Hong Kong, Hong Kong); Kwok-keung (Michael) Cheng (Chinese University of Hong Kong, Hong Kong) | |
13 | A GaN-on-Si MMIC Doherty Power Amplifier for 5G Applications |
Rocco Giofrè (University of Roma Tor Vergata, Italy); Alessandro Del Gaudio (University of Rome Tor Vergata, Italy); Walter Ciccognani (Universita of Rome Tor Vergata, Italy); Sergio Colangeli and Ernesto Limiti (University of Rome Tor Vergata, Italy) | |
14 | Phase Noise Characteristics of VCOs Utilizing Various Structural 3D-Striped Inductor |
Yuta Sakamoto and Nobuyuki Itoh (Okayama Prefectural University, Japan) | |
15 | Solid-State Transmitters and Sources for Remote Sensing Radars, Instruments and Communication |
Naresh Deo (QuinStar Technology, USA) | |
16 | Mode-Reconfigurable RF Power Amplifier with Independently Controllable Fundamental and Second Harmonic Output Impedances |
Genedyn Gems Mendoza and Miguel Carlo Purisima (University of the Philippines, Philippines) | |
17 | Study on Linearization Performance of Highly Efficient Low-Voltage Biased Driver Including Dual-Stage GaN MMIC |
Osman Ceylan, Andre Prata and Sergio Pires (Ampleon Netherlands BV, The Netherlands) | |
18 | A 29.6 dBm 29-GHz Power Amplifier for Satellite and 5G Communications Using 0.15-µm GaAs p-HEMT Technology |
Ian Huang, Shao-Ting Yen and Wei-Pang Chao (National Taiwan University, Taiwan); Jeng-Han Tsai (National Taiwan Normal University, Taiwan); Abdulelah Alshehri, Mazen Almalki and Abdulhamid Sayed (KACST, Saudi Arabia); Tian-Wei Huang (National Taiwan University, Taiwan) | |
19 | High Power High Efficiency Asymmetric Doherty Amplifiers for Base Station Applications |
James Wong (Sumitomo Electric Europe Ltd & Sumitomo Electron Device Innovations, United Kingdom (Great Britain)); Akira Akiyama (Sumiotmo Electric Device Innovations, Inc., Japan) | |
20 | A High-Efficiency 4.35-4.85 GHz Doherty Amplifier for Base Station Applications |
James Wong (Sumitomo Electric Europe Ltd & Sumitomo Electron Device Innovations, United Kingdom (Great Britain)); Gaku Nishio (Sumitomo Electric Device Innovations, Inc., Japan) | |
21 | A Novel Indirect Learning Digital Predistortion Architecture Only with In-Phase Component |
Cuiping Yu and Quan Tang (Beijing University of Posts and Telecommunications, P.R. China); Yuanan Liu (Beijing University of Posts and Telecom, P.R. China) | |
22 | Envelope Tracking Linearizability of Power Amplifier |
Yu Zhu and Alex Klimashov (Skyworks, USA); Boshi Jin (Skyworks Solutions Inc., USA); Florinel Balteanu and Serge Drogi (Skyworks Solutions, USA); Dylan Bartle (Skyworks, USA); Paul DiCarlo (Skyworks Solutions, USA) | |
23 | A Novel Power Combining Technique for Microwave Generation with a Combination of Injection-Locked High Power Oscillator and Power-Adjustable High Efficiency Amplifier |
Hikaru Ikeda (Company & Panasonic Corporation, Japan); Yasushi Itoh (Shonan Institute of Technology, Japan) | |
24 | A Low-Profile Dual-Polarized Wideband Antenna with AMC Reflector |
Kaining Zhu (Beijing University of Posts and Telecommunications, P.R. China); Ming Su (Being University of Post and Teleommunication, P.R. China); Cuiping Yu (Beijing university of posts and telecommunications, P.R. China); Yuanan Liu (Beijing University of Posts and Telecom, P.R. China); Chaorui Zang (Beijing University of Posts and Telecommunications, P.R. China) | |
25 | Directed Gain Bandwidth Enhancement in Patch/Slot Hybrid Antenna |
Bei Huang and Jun Zhang (Guangdong University of Technology, P.R. China); Zuhua Liu (Foshan Innovative Micro-IC Technology Inc, P.R. China); Gary Zhang and Fugen Wu (Guangdong University of Technology, P.R. China) | |
26 | Millimeter Wave High-Isolated MIMO Antenna With Two Opposite Radiation Directions |
Zheng Gan (South China University of Technology, P.R. China) | |
27 | Wideband Reconfigurable Parasitic Plasma Antenna in VHF Band |
Chao Wang and Bin Yuan (Shanghai Jiao Tong University, P.R. China) | |
28 | A Microstrip Patch Antenna Sandwiched Between a Ground Plane and a Metasurface for WiMAX Applications |
Niamat Hussain, Uktam Azimov and Ji Woong Park (Chungbuk National University, Korea); Seung-Yeop Rhee (Chonnam National University, Korea); Nam Kim (Chungbuk National University, Korea) | |
29 | Design of a Triple Band Folded Dipole Antenna with Low SAR for GPS/WLAN Application |
Ji Woong Park, Min-joo Jeong and Han Ul Bong (Chungbuk National University, Korea); Ic Pyo Hong (Kongju National University, Korea); Nam Kim (Chungbuk National University, Korea) | |
30 | High-Performance Long-Range OAM Communication Using Loop Antenna Arrays in 12-GHz Band |
Hiroto Otsuka and Ryohei Yamagishi (The University of Electro-Communications, Japan); Ryo Ishikawa (The University of ElectroCommunications, Japan); Akira Saitou, Hiroshi Suzuki and Kazuhiko Honjo (The University of Electro-Communications, Japan) | |
31 | The Design and Simulation of a Compact Vivaldi Antenna for UWB Applications |
Yongdong Zang (CETC38, P.R. China); Mou-ping Jin (East China Research Institute of Electronic Engineering, P.R. China) | |
32 | A Magnetic Current-Based Filtering Antenna |
Xue Ren (City Univeirsity of Hong Kong, P.R. China); Shaowei Liao and Quan Xue (South China University of Technology, P.R. China) | |
33 | A Low-Profile and High-Gain Circularly Polarized Antenna Based on Holographic Principle |
Lei Gan (Xidian University, P.R. China) | |
34 | Slot Antenna Backed by a Quarter Cylindrical Cavity with a Tuning Slit Stub |
Jun Nishijima, Yuto Ishii, Hitoshi Shimasaki (Kyoto Institute of Technology, Japan) | |
35 | A Super Compact 2×2 MIMO Antenna for GSM/WLAN Applications |
Sachin Kumar (Kyungpook National University, Korea); Kunal Srivastava (Indian Institute of Technology (ISM) Dhanbad, India); Kang Wook Kim and Hyun Chul Choi (Kyungpook National University, Korea) | |
36 | Planar Via-Free Medium with 2-D Negative Refractive Index Properties |
Hidehisa Shiomi and Atsushi Sanada (Osaka University, Japan) | |
37 | Mie Resonances of Silicon Meta-Atoms at Visible Frequencies |
Zhixia Xu, Changjiang Su, Siyuan Liu, Hongxin Zhao, Shunli Li and Xiaoxing Yin (Southeast University, P.R. China) | |
38 | Low Frequency Leaky Waves at Left Handed Ferrite Microstrip Line |
Makoto Tsutsumi (Fukui Institute Technology & Kyoto Institute of Technology, Japan) | |
39 | Using Magnetic Photonic Crystal to Achieve High Performance Broadband Band-Pass Filter |
Xi Yang, Yan Gu, Zhong-Hao Sa and Rui-Xin Wu (Nanjing University, P.R. China) | |
40 | Phase Modulation in Partially Reflective Surfaces for Beam Steering in Fabry-Perot Cavity Antennas |
Badreddine Ratni (Univ Paris Nanterre, France); André de Lustrac (Institut d'Electronique Fondamentale - Université Paris-Sud, France); Gérard-Pascal Piau (Airbus, France); Shah Nawaz Burokur (LEME, France) | |
41 | Flat Retroreflector Mimicking a Cylindrical Retroreflector with a Function of a Luneburg Lens |
Tsutomu Nagayama, Seiji Fukushima and Toshio Watanabe (Kagoshima University, Japan); Atsushi Sanada (Osaka University, Japan) | |
42 | Miniaturized Antenna Based On Vertical Split-Ring Resonator |
Zhan Wang and Yuandan Dong (University of Electronic Science and Technology of China, P.R. China) | |
43 | Numerical Homogenization for Effective Permittivity of Composite Dielectrics in Waveguide by the Finite Element Method |
Tuptim Angkeaw (Chulalongkorn University, Thailand) | |
44 | Design Methodology of a Single-Beam Passive Reflectarray for Controlling Arbitrary Illuminations |
Jiawei Han (ESIGELEC, IRSEEM & Normandie Univ, UNIROUEN, France); Constant Manouan Aka Niamien (Normandie Univ, UNIROUEN, ESIGELEC/IRSEEM, Rouen, France); Zouheir Riah (Normandie Univ UNIROUEN ESIGELEC/IRSEEM, France) | |
45 | Design of a Perfect Absorber for Normal Incident Waves Using Dirac Cone Metasurface with Anchor Shaped Unit Cells |
Subaru Morita and Atsushi Sanada (Osaka University, Japan) | |
46 | Ground-Wave-Suppressed High-Frequency Sky-Wave Radar Based on Practically-Realizable Bandgap Structure |
Liang-Yu Ou Yang (National Chung-Shan Institute of Science & Technology, Taiwan); Shih-Yuan Chen (National Taiwan University, Taiwan) | |
47 | Antenna Gain Enhancement by 2-D Photonic Crystals with the Γ-Point Dirac Cone |
Daigo Kambayashi and Atsushi Sanada (Osaka University, Japan) | |
48 | Design of Small-size Bandstop Filters with Lumped-element Immittance Inverters on Artificial Transmission Lines |
Dmitry Kholodnyak (Saint Petersburg Electrotechnical University "LETI", Russia / Tohoku University, Japan); Noriharu Suematsu (Tohoku University, Japan) | |
49 | Design of a Low-Voltage High-Efficiency 250 GHz Gyrotron |
Chenxiang An, Dian Zhang, Jun Zhang, Song Li and Jing Liu (National University of Defense Technology, P.R. China) |