{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2025,6,3]],"date-time":"2025-06-03T06:05:20Z","timestamp":1748930720635},"reference-count":35,"publisher":"Institute of Electronics, Information and Communications Engineers (IEICE)","issue":"11","content-domain":{"domain":[],"crossmark-restriction":false},"short-container-title":["IEICE Trans. Electron."],"published-print":{"date-parts":[[2023,11,1]]},"DOI":"10.1587\/transele.2023mmi0004","type":"journal-article","created":{"date-parts":[[2023,5,30]],"date-time":"2023-05-30T22:14:35Z","timestamp":1685484875000},"page":"643-650","source":"Crossref","is-referenced-by-count":1,"title":["A Study on Evaluation Method for Beam Profile of Phased Array by Using Two-Dimensional Measurement Equipment"],"prefix":"10.1587","volume":"E106.C","author":[{"given":"Kazuki","family":"YUKAWA","sequence":"first","affiliation":[{"name":"Ryukoku University"}]},{"given":"Takayuki","family":"MATSUMURO","sequence":"additional","affiliation":[{"name":"ATR"}]},{"given":"Toshio","family":"ISHIZAKI","sequence":"additional","affiliation":[{"name":"Ryukoku University"}]},{"given":"Yohei","family":"ISHIKAWA","sequence":"additional","affiliation":[{"name":"Kaiyo Inverse Dam Society"}]}],"member":"532","reference":[{"key":"1","doi-asserted-by":"publisher","unstructured":"[1] C.T. Rodenbeck, P.I. Jaffe, B.H. Strassner II, P.E. Hausgen, J.O. McSpadden, H. Kazemi, N. Shinohara, B.B. Tierney, C.B. DePuma, and A.P. Self, \u201cMicrowave and Millimeter Wave Power Beaming,\u201d IEEE Journal of Microwaves, vol.1, no.1, pp.229-259, Jan. 2021. DOI: 10.1109\/JMW.2020.3033992 10.1109\/jmw.2020.3033992","DOI":"10.1109\/JMW.2020.3033992"},{"key":"2","doi-asserted-by":"publisher","unstructured":"[2] N. Shinohara, \u201cHistory and Innovation of Wireless Power Transfer via Microwaves,\u201d IEEE Journal of Microwaves, vol.1, no.1, pp.218-228, Jan. 2021. 10.1109\/jmw.2020.3030896","DOI":"10.1109\/JMW.2020.3030896"},{"key":"3","doi-asserted-by":"crossref","unstructured":"[3] A. Kurs, A. Karalis, R. Moffatt, J.D. Joannopoulos, P. Fisher, and M. Solja\u010di\u0107, \u201cWireless power transfer via strongly coupled magnetic resonances,\u201d Science, vol.317, no.5834, pp.83-86, July 2007. 10.1126\/science.1143254","DOI":"10.1126\/science.1143254"},{"key":"4","unstructured":"[4] Ministry of Internal Affairs and Communications of Japan, \u201cTrends in the ICT Market,\u201d Information and Communications White Paper 2022, Part 2, Section 3, Sept. 2022."},{"key":"5","doi-asserted-by":"crossref","unstructured":"[5] W. Brown, \u201cExperiments in the transportation of energy by microwave beam,\u201d 1958 IRE International Convention Record, New York, NY, USA, pp.8-17, 1964. DOI: 10.1109\/IRECON.1964.1147324 10.1109\/irecon.1964.1147324","DOI":"10.1109\/IRECON.1964.1147324"},{"key":"6","doi-asserted-by":"crossref","unstructured":"[6] P.E. Glaser, \u201cPower from the Sun: Its Future,\u201d Science, vol.162, no.3856, pp.857-861, Nov. 1968. 10.1126\/science.162.3856.857","DOI":"10.1126\/science.162.3856.857"},{"key":"7","unstructured":"[7] S. Nakamura, K. Maekawa, M. Sato, K. Sasaki, and S. Mihara, \u201cMicrowave Transmission Experiment on the Ground for SSPS,\u201d Space Solar Power Systems, vol.1, pp.16-19, 2016."},{"key":"8","doi-asserted-by":"publisher","unstructured":"[8] C.T. Rodenbeck, B.B. Tierney, J. Park, M.G. Parent, C.B. DePuma, C.J. Bauder, T.J. Pizzillo, P.I. Jaffe, B.H. Simakauskas, and T.Mayhan, \u201cTerrestrial Microwave Power Beaming,\u201d IEEE Journal of Microwaves, vol.2, no.1, pp.28-43, Jan. 2022. 10.1109\/jmw.2021.3130765","DOI":"10.1109\/JMW.2021.3130765"},{"key":"9","doi-asserted-by":"publisher","unstructured":"[9] X. Yi, Q. Chen, S. Hao, and X. Chen, \u201cAn efficient 5.8 GHz microwave wireless power transmission system,\u201d Int. J. RF Microw. Computer-Aid. Eng., vol.32, no.5, e23094, Jan. 2022. DOI: 10.1002\/mmce.23094 10.1002\/mmce.23094","DOI":"10.1002\/mmce.23094"},{"key":"10","unstructured":"[10] N. Shinohara, \u201cR&amp;D Project of Beam Microwave Power Transfer System toward Solar Power Satellite in Japan (in Japanese),\u201d IEICE Trans. Electron., Information and Communication C, vol.105, no.1, pp.11-18, 2022."},{"key":"11","unstructured":"[11] Y. Ishikawa, \u201cGlobal Smart Grid Conception Using Microwave Mirror Satellite Collaborated with Marine Inverse Dam,\u201d Keynote Address of Microwave Workshops and Exhibition, KA01-01, 2014."},{"key":"12","doi-asserted-by":"crossref","unstructured":"[12] R. Ishikawa and K. Honjo, \u201cReversible high efficiency amplifier\/rectifier circuit for wireless power transmission system,\u201d 2013 Asia-Pacific Microwave Conference Proceedings (APMC), Seoul, Korea (South), pp.74-76, 2013. DOI: 10.1109\/APMC.2013.6695195 10.1109\/apmc.2013.6695195","DOI":"10.1109\/APMC.2013.6695195"},{"key":"13","doi-asserted-by":"crossref","unstructured":"[13] Z. Popovic, T. Reveyrand, S. Schafer, M. Litchfield, I. Ramos, and S. Korhummel, \u201cEfficient transmitters and receivers for high-power wireless powering systems,\u201d 2014 IEEE Wireless Power Transfer Conference, Jeju, Korea (South), pp.32-35, 2014. DOI: 10.1109\/WPT.2014.6839621 10.1109\/wpt.2014.6839621","DOI":"10.1109\/WPT.2014.6839621"},{"key":"14","doi-asserted-by":"publisher","unstructured":"[14] T. Uno and S. Adachi, \u201cA Design of Microwave Wireless Power Transmission by the Aperture Illumination of Maximum Transmission Efficiency (in Japanese),\u201d IEICE Transactions B, vol.J66-B, no.8, pp.1013-1018, Aug. 1983. 10.1002\/ecja.4400660810","DOI":"10.1002\/ecja.4400660810"},{"key":"15","unstructured":"[15] T. Matsumuro, Y. Ishikawa, T. Mitani, and N. Shinohara, \u201cAn Effective Design Method of Low-leakage Microwave Beam for Long-distance Wireless Power Transmission (in Japanese),\u201d IEICE Trans. Electron., vol.J99-C, no.12, pp.634-645, Dec. 2016."},{"key":"16","unstructured":"[16] T. Matsumuro, Y. Ishikawa, T. Ishikawa, and N. Shinohara, \u201cEffective beam forming of phased array antenna for efficient microwave power transmission,\u201d 2014 Asia-Pacific Microwave Conference, Sendai, Japan, pp.717-719, 2014."},{"key":"17","doi-asserted-by":"publisher","unstructured":"[17] N. Hasegawa and N. Shinohara, \u201cSidelobe reduction with a GaN active array antenna,\u201d Wireless Power Transfer, vol.4, no.2, pp.113-119, 2017. 10.1017\/wpt.2017.8","DOI":"10.1017\/wpt.2017.8"},{"key":"18","unstructured":"[18] T. Inoue, R. Ishikawa, A. Saito, and K. Honjo, \u201cSimplified 5.8 GHz-Band Variable Beam-Focusing Gaussian Beam Array Antenna (in Japanese),\u201d IEICE Trans. Electron., Information and Communication B, vol.J98-B, no.9, pp.906-913, Sept. 2015."},{"key":"19","doi-asserted-by":"publisher","unstructured":"[19] J. Sherman, \u201cProperties of focused apertures in the fresnel region,\u201d IRE Transactions on Antennas and Propagation, vol.10, no.4, pp.399-408, July 1962. 10.1109\/tap.1962.1137900","DOI":"10.1109\/TAP.1962.1137900"},{"key":"20","doi-asserted-by":"crossref","unstructured":"[20] Y. Kubo, N. Shinohara, and T. Mitani, \u201cDevelopment of a kW class microwave wireless power supply system to a vehicle roof,\u201d 2012 IEEE Trans. Microw. Theory Techn.-S International Microwave Workshop Series on Innovative Wireless Power Transmission: Technologies, Systems, and Applications, Kyoto, Japan, pp.205-208, 2012. DOI: 10.1109\/IMWS.2012.6215794 10.1109\/imws.2012.6215794","DOI":"10.1109\/IMWS.2012.6215794"},{"key":"21","doi-asserted-by":"crossref","unstructured":"[21] T. Matsumuro, Y. Ishikawa, M. Yanagase, and N. Shinohara, \u201cBoth-Side Retrodirective System for Minimizing the Leak Energy in Microwave Power Transmission,\u201d 2018 Asia-Pacific Microwave Conference (APMC2018), Kyoto, Japan, pp.780-781, Nov. 6-9, 2018. 10.23919\/apmc.2018.8617637","DOI":"10.23919\/APMC.2018.8617637"},{"key":"22","doi-asserted-by":"publisher","unstructured":"[22] T. Matsumuro, Y. Ishikawa, and N. Shinohara, \u201cBasic Study of Both-Sides Retrodirective System for Minimizing the Leak Energy in Microwave Power Transmission,\u201d IEICE Trans. Electron., vol.E102-C, no.10. pp.659-665, 2019. DOI: 10.1587\/transele.2019mmp0011 10.1587\/transele.2019mmp0011","DOI":"10.1587\/transele.2019MMP0011"},{"key":"23","doi-asserted-by":"publisher","unstructured":"[23] C. Pon, \u201cRetrodirective array using the heterodyne technique,\u201d IEEE Trans. Antennas Propag., vol.12, no.2, pp.176-180, March 1964. 10.1109\/tap.1964.1138191","DOI":"10.1109\/TAP.1964.1138191"},{"key":"24","doi-asserted-by":"publisher","unstructured":"[24] V. Fusco and N. Buchanan, \u201cDevelopments in retrodirective array technology,\u201d IET Microwaves Antennas Propag., vol.7, no.2, pp.131-140, Jan. 2013. 10.1049\/iet-map.2012.0565","DOI":"10.1049\/iet-map.2012.0565"},{"key":"25","unstructured":"[25] Y. Ishikawa, T. Matsumuro, and N. Shinohara, \u201cAutomatic beamforming avoiding radio wave absorber in wireless power transmission path (in Japanese),\u201d Space Solar Power, vol.5, pp.29-34, 2020."},{"key":"26","doi-asserted-by":"crossref","unstructured":"[26] K. Yukawa, T. Matsumuro, T. Ishizaki, and Y. Ishikawa, \u201cDevelopment of Two-Dimensional Measurement Equipment for Evaluating Beam Convergence of Retrodirective System,\u201d 2022 Asia-Pacific Microwave Conference (APMC), Yokohama, Japan, pp.350-352, 2022. DOI: 10.23919\/APMC55665.2022.9999767 10.23919\/apmc55665.2022.9999767","DOI":"10.23919\/APMC55665.2022.9999767"},{"key":"27","doi-asserted-by":"publisher","unstructured":"[27] G. Goubau and F. Schwering, \u201cOn the guided propagation of electromagnetic wave beams,\u201d IRE Transactions on Antennas and Propagation, vol.9, no.3, pp.248-256, May 1961. 10.1109\/tap.1961.1144999","DOI":"10.1109\/TAP.1961.1144999"},{"key":"28","doi-asserted-by":"publisher","unstructured":"[28] R.C. Hansen, J. McSpadden, and J.N. Benford, \u201cA universal power transfer curve,\u201d IEEE Microw. Compon. Lett., vol.15, no.5, pp.369-371, May 2005. DOI: 10.1109\/LMWC.2005.847718 10.1109\/lmwc.2005.847718","DOI":"10.1109\/LMWC.2005.847718"},{"key":"29","doi-asserted-by":"publisher","unstructured":"[29] N. Shinohara, \u201cBeam efficiency of wireless power transmission via radio waves from short range to long range,\u201d Journal of electromagnetic engineering and science, vol.10, no.4, pp.224-230, Dec. 2010. 10.5515\/jkiees.2010.10.4.224","DOI":"10.5515\/JKIEES.2010.10.4.224"},{"key":"30","doi-asserted-by":"crossref","unstructured":"[30] K. Yukawa, T. Matsumuro, T. Ishizaki, and Y. Ishikawa, \u201cBasic Study on Two-Dimensional Beam Propagation Characteristics in Parallel Plate Waveguide,\u201d 2021 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting (APS\/URSI), pp.35-36, 2021. 10.1109\/aps\/ursi47566.2021.9704452","DOI":"10.1109\/APS\/URSI47566.2021.9704452"},{"key":"31","doi-asserted-by":"publisher","unstructured":"[31] A. Noda and H. Shinoda, \u201cSelective Wireless Power Transmission Through High-<i>Q<\/i> Flat Waveguide-Ring Resonator on 2-D Waveguide Sheet,\u201d IEEE Trans. Microw. Theory Techn., vol.59, no.8, pp.2158-2167, Aug. 2011. DOI: 10.1109\/TMTT.2011.2156425 10.1109\/tmtt.2011.2156425","DOI":"10.1109\/TMTT.2011.2156425"},{"key":"32","doi-asserted-by":"publisher","unstructured":"[32] A. Yaghjian, \u201cAn overview of near-field antenna measurements,\u201d IEEE Trans. Antennas Propag., vol.34, no.1, pp.30-45, Jan. 1986. DOI: 10.1109\/TAP.1986.1143727 10.1109\/tap.1986.1143727","DOI":"10.1109\/TAP.1986.1143727"},{"key":"33","doi-asserted-by":"crossref","unstructured":"[33] D. Schurig, J.J. Mock, B.J. Justice, S.A. Cummer, J.B. Pendry, A.F. Starr, and D.R. Smith, \u201cMetamaterial electromagnetic cloak at microwave frequencies,\u201d Science, vol.314, no.5801, pp.977-980, Nov. 2006. 10.1126\/science.1133628","DOI":"10.1126\/science.1133628"},{"key":"34","doi-asserted-by":"publisher","unstructured":"[34] N. Kundtz, D. Gaultney, and D.R. Smith, \u201cScattering cross-section of a transformation optics-based metamaterial cloak,\u201d New J. Phys., vol.12, no.4, p.043039, April 2010. 10.1088\/1367-2630\/12\/4\/043039","DOI":"10.1088\/1367-2630\/12\/4\/043039"},{"key":"35","unstructured":"[35] D.M. Pozar, Microwave Engineering 4th Edition, pp.102-110, Wiley, 2014."}],"container-title":["IEICE Transactions on Electronics"],"original-title":[],"language":"en","link":[{"URL":"https:\/\/www.jstage.jst.go.jp\/article\/transele\/E106.C\/11\/E106.C_2023MMI0004\/_pdf","content-type":"unspecified","content-version":"vor","intended-application":"similarity-checking"}],"deposited":{"date-parts":[[2023,11,4]],"date-time":"2023-11-04T03:17:10Z","timestamp":1699067830000},"score":1,"resource":{"primary":{"URL":"https:\/\/www.jstage.jst.go.jp\/article\/transele\/E106.C\/11\/E106.C_2023MMI0004\/_article"}},"subtitle":[],"short-title":[],"issued":{"date-parts":[[2023,11,1]]},"references-count":35,"journal-issue":{"issue":"11","published-print":{"date-parts":[[2023]]}},"URL":"https:\/\/doi.org\/10.1587\/transele.2023mmi0004","relation":{},"ISSN":["0916-8524","1745-1353"],"issn-type":[{"value":"0916-8524","type":"print"},{"value":"1745-1353","type":"electronic"}],"subject":[],"published":{"date-parts":[[2023,11,1]]},"article-number":"2023MMI0004"}}