IEICE Technical Report

Print edition: ISSN 0913-5685      Online edition: ISSN 2432-6380

Volume 117, Number 181

Antennas and Propagation

Workshop Date : 2017-08-24 - 2017-08-25 / Issue Date : 2017-08-17

[PREV] [NEXT]

[TOP] | [2014] | [2015] | [2016] | [2017] | [2018] | [2019] | [2020] | [Japanese] / [English]

[PROGRAM] [BULK PDF DOWNLOAD]


Table of contents

AP2017-68
Minimum constrained adaptive monopulse estimation in radio interference
Hirofumi Fukushima, Ryuhei Takahashi, Nobuhiro Suzuki (MitsubishiElectric)
pp. 1 - 6

AP2017-69
DOA Estimation for Coprime Arrays Without Knowledge of Source Number
Anh-Tuan Nguyen, Takashi Matsubara, Takakazu Kurokawa (NDA)
pp. 7 - 12

AP2017-70
Feasible study on direction of arrival estimation of 28 GHz band in suburban
Satoshi Ito, Masayuki Nakano (KDDI Research)
pp. 13 - 17

AP2017-71
Dependence on Antenna Height of Human Body Shadowing Loss in an Indoor Environment
Yuki Ito, Hisato Iwai, Hideichi Sasaoka (Doshisha Univ.)
pp. 19 - 22

AP2017-72
Path Loss Prediction formulas of Human Blockage in 4.7 GHz and 26.4 GHz Bands in Outdoor Crowded Areas
Mitsuki Nakamura, Motoharu Sasaki, Minoru Inomata, Yasushi Takatori (NTT)
pp. 23 - 28

AP2017-73
Stripline-Fed Patch Antenna with Long-Term Reliable Conductive Vias
Koh Hashimoto, Makoto Higaki (Toshiba)
pp. 29 - 34

AP2017-74
Dual Band MACKEY-E with E Shaped Radiator
Ken Hirano, Shigeru Makino, Keisuke Noguchi, Kenji Itoh, Tetsuo Hirota (Kanazawa Inst. of Tech.)
pp. 35 - 39

AP2017-75
Examination of the transmission in the PCB with the patch element orthogonal laid out.
Hiroshi Ashida, Yoji Ohashi (FUJITSU Lab.)
pp. 41 - 44

AP2017-76
Method of Plane Wave Excitation to Optical Leaky Waveguide
Hiroshi Hashiguchi, Toshihiko Baba, Hiroyuki Arai (Yokohama Natl. Univ.)
pp. 45 - 48

AP2017-77
Design of Simultaneous Generation of Three OAM Modes by Using a RLSA Fed by a Waveguide Circuit in the 60-GHz Band
Xin Xu, Jiro Hirokawa (Tokyo Inst. of Tech.), Agnese Mazzinghi, Angelo Freni (Univ. of Florence)
pp. 49 - 52

AP2017-78
[Tutorial Lecture] Study of Wireless Power Transmission, Reflectarray and GA with Hakodate College student
Tamami Maruyama (NIT, Hakodate college)
pp. 53 - 58

AP2017-79
Propagation analysis of 920MHz band by Ray Tracing method composed of Reinforced concrete walls
Genma Hattori, Yasuhiro Tsunemitsu, Toshiyuki Maeyama (Takushoku Univ.), Toshiyasu Tanaka (MWF)
pp. 59 - 64

AP2017-80
Experiment evaluation of urban propagation model in case of the high receiver position from ground level
Kenji Kobayashi (KCME), Masayuki Nakano, Yoshio Kunisawa (KDDI Research), Eiho Chin (KCME)
pp. 65 - 69

AP2017-81
Far-Field Estimation of Antenna above the Earth by Source Reconstruction from Hemispherical Near-Field
Yoshiki Sugimoto, Hiroyuki Arai (YNU)
pp. 71 - 74

AP2017-82
Experimental Evaluation of Self-Interference Suppression Method Using 180 Degree Hybrid Circuit in MIMO Full-Duplex System
Yoshiyuki Yamamoto (Tohoku Univ.), Riri Niizeki, Yudai Hashimoto (NIT, Sendai Collge), Naoki Honma (Iwate Univ.), Qiaowei Yuan (NIT, Sendai Collge), Quiang Chen (Tohoku Univ.)
pp. 75 - 80

AP2017-83
Interference cancellation techniques for wireless communication in factory automation
Manh Tai Nguyen, Yuki Ueyama, Akito Murai, Keisuke Saito (Omron), Hiroyoshi Yamada (Niigata Univ.)
pp. 81 - 86

AP2017-84
Size reduction of a Broadside-coupled Split Ring Resonator Antenna
Makoto Sano, Keiju Yamada, Makoto Higaki (Toshiba)
pp. 87 - 92

AP2017-85
Dual-Polarized Left-Handed Leaky Wave Antenna Using Grounded Coplanar Transmission Line
Takayoshi Sasaki, Keisuke Sato, Ichiro Oshima (Denki Kogyo), Naobumi Michishita (NDA), Keizo Cho (CIT)
pp. 93 - 98

AP2017-86
Horizontally Polarized Dual-band Sector Antenna using FSR Comprising Alternately Placed Gang Buster Elements
Masato Hasegawa, Keizo Cho (CIT), Atsuya Ando (NTT)
pp. 99 - 103

AP2017-87
Design Method of Meta-surface for Broadband Reflected Wave Reduction
Masaru Nagata, Toshikazu Hori, Mitoshi Fujimoto (Univ. of Fukui)
pp. 105 - 108

Note: Each article is a technical report without peer review, and its polished version will be published elsewhere.


The Institute of Electronics, Information and Communication Engineers (IEICE), Japan