学術論文

[1] 千藤雄樹, 田口健治, 工藤祥典, 柏達也, 大谷忠生, "各種高精度FDTD法の数値分散特性及び安定条件の比較検討," IEICE Trans. vol. J85-C, no. 12, pp. 1159-1167, Dec. 2002.
[2] T. Kashiwa, Y. Sendo, K. Taguchi, T. Ohtani, and Y. Kanai, "Phase velocity errors of the nonstandard FDTD method and comparison with other high-accuracy FDTD methods," IEEE Trans. Magnetics, vol. 39, no. 4, pp. 2125-2128, July 2003.
[3] K. Taguchi, Y. Sendo, T. Kashiwa, T. Ohtani, and Y. Kanai, "On the duality of electric fields and magnetic fields in the non-standard FDTD method," Microwave and Optical Technology Letters, vol. 40, no. 2, pp. 148-151, Jan. 2004. (Letter)
[4] 大谷忠生, 田口健治, 柏達也, "Complex nonstandard FDTD法のためのサブグリッド技術," IEICE Trans. vol. 87-C, no. 2, pp. 234-241, Feb. 2004.
[4'] T. Ohtani, K. Taguchi, and T. Kashiwa, "A subgridding technique for the complex nonstandard FDTD method," Electronics and Communications in Japan, Part 2, vol. 87, no. 8, pp. 1-9, Aug. 2004.
[5] K. Taguchi, T. Ohtani, T. Kashiwa, and Y. Kanai, "The nonstandard FDTD method using a complex formulation," IEEE Trans. Magnetics, vol. 40, no. 2, pp. 1448-1451, Mar. 2004.
[6] K. Taguchi, M. Uchiya, T. Kashiwa, K. Hirayama, H. Kuribayashi, and S. Komatsu, "FDTD large-scale parallel supercomputing and its application to the analysis of radiation characteristics of an antenna mounted on a vehicle," Int. J. of RF and Microwave Computer-Aided Engineering. vol. 14, no. 3, pp. 253-261, May 2004.
[7] T. Ohtani, K. Taguchi, and T. Kashiwa, "New optimization parameters for the nonstandard FDTD method," Microwave and Optical Technology Letters, vol. 47, no. 2, pp. 161-163, Oct. 2005. (Letter)
[8] 野村壮史, 佐藤和夫, 田口健治, 柏達也, "FDTD法を用いたトポロジー最適化によるアンテナ設計手法," IEICE Trans. vol. J89-B, no. 12, pp. 2196-2205, Dec. 2006.
[9] K. Taguchi, T. Ohtani, T. Kashiwa, and Y. Kanai, "Characteristics of evanescent waves in the nonstandard FDTD method," IEEE Trans. Magnetics, vol. 43, no. 4, pp. 1313-1316, April 2007.
[10] T. Ohtani, K. Taguchi, T. Kashiwa, and Y. Kanai, "Overlap algorithm for the nonstandard FDTD method using non-uniform mesh," IEEE Trans. Magnetics, vol. 43, no. 4, pp. 1317-1320, April 2007.
[11] T. Nomura, K. Sato, K. Taguchi, T. Kashiwa, and S. Nishiwaki, "Structual topology optimization for the design of broadband dielectric resonator antennas using the finite difference time domain technique," International Journal for Numerical Methods in Engineering, vol. 71, no. 11, pp. 1261-1296, Sept. 2007. (Published Online: 1 Feb 2007, DOI: 10.1002/nme.1974)
[12] 松崎明, 森下久, 野村壮史, 佐藤和夫, 田口健治, 柏達也, "電気材料装荷アンテナの小型化を目的としたトポロジー最適化," 日本計算工学会論文集, Published Online: Trans. on JSCES Paper No. 20070006, 公開日2007年2月23日.
[13] T. Ohtani, K. Taguchi, T. Kashiwa, Y. Kanai, and J. B. Cole, "Nonstandard FDTD method for multi-frequency analysis," IEEE Trans. Magnetics, vol. 44, no. 6, pp. 1390-1393, June. 2008.
[14] T. Ohtani, K. Taguchi, T. Kashiwa, Y. Kanai, and J. B. Cole, "Scattering analysis of large-scale coated cavity using the complex nonstandard FDTD method with surface impedance boundary condition," IEEE Trans. Magnetics, vol. 45, no. 3, pp. 1296-1299, March 2009.
[15] T. Ohtani, K. Taguchi, T. Kashiwa, Y. Kanai, and J. B. Cole, "Nonstandard FDTD method for wideband analysis," IEEE Trans. AP, vol. 57, no. 8, pp. 2386-2396, Aug. 2009.
[16] K. Taguchi, T. Kashiwa, K. Ohshima, and T. Kawamura, "Propagation Analysis of Electromagnetic Waves in 700 MHz Band at Intersection for Inter-Vehicle Communications Using the FDTD Method," IEICE Trans. Electron., vol. E94-C, no. 1, pp. 18-23, Jan. 2011.
[17] K. Taguchi, S. Imai, T. Kashiwa, K. Ohshima, and T. Kawamura, "FDTD Analysis of Radio Wave Propagation at Intersection Surrounded by Concrete Block Walls in Residential Area for Inter-Vehicle Communications Using 720 MHz Band," IEICE Trans. Electron., vol. E95-C, no. 1, pp. 79-85, Jan. 2012.
[18] T. Kawamura, T. Kashiwa, and K. Taguchi, "Vehicle navigation system using UHF RF-ID - Vehicle navigation in an aspect of lane support system," European Transport Research Review, vol. 5, no. 2, pp. 91-99, June 2013. (Published Online: 5 Mar. 2013, DOI: 10.1007/s12544-013-0092-2)
[19] 今井卓, 田口健治, 柏達也, 北澤敏秀, 加藤良幸, 瀬川智臣, 鈴木政浩, "マイクロ波加熱を用いたMOX燃料製造時の核燃料再処理溶液設置用スペーサーの溶液均一加熱に対する影響," 電気学会論文誌A, vol. 133, no. 5, pp. 271-272, May 2013. (レター)
[20] 今井卓, 田口健治, 柏達也, 栗林裕, 小松覚, "地上デジタル放送波における市街地道路上の電波伝搬特性," 電子情報通信学会論文誌C, vol. J96-C, no. 6, pp. 160-163, June 2013. (レター)
[21] K. Taguchi, S. Imai, T. Kashiwa, H. Kuribayashi, and S. Komatsu, "Distance dependence of electric field pattern for an antenna mounted on a car in UHF band," Microwave and Optical Technology Letters, vol. 55, no. 9, pp. 2182-2186, Sept. 2013. (Letter)(Published Online: 27 Jun. 2013, DOI: 10.1002/mop.27752)
[22] 坂本龍之介, 松田豊稔, 石橋孝昭, 下塩義文, 田口健治, "送電設備が中波放送送信アンテナの入力インピーダンスに及ぼす影響のスケールモデルによる考察," IEICE Trans. vol. J97-B, no. 2, pp. 143-150, Feb. 2014.
[23] 小松覚, 芹澤幸宏, 長尾朗, 今井卓, 田口健治, 柏達也, "FM放送波の多重波到来方向と伝搬遅延時間のMUSIC推定に関する実験的検討," 自動車技術会論文集, vol. 46, no. 2, pp. 565-570, Mar. 2015.
[24] 今井卓, 田口健治, 柏達也, 田畑隆司, 久保賢児, 佐藤永一, "ピラミッド型電波吸収体における形状及び入射角の吸収体内温度分布に対する影響," 電子情報通信学会論文誌C, vol. J98-C, no. 5, pp. 124-126, May 2015. (レター)
[25] S. Imai, K. Taguchi, T. Kashiwa, and S. Komatsu, "Estimation of the Incoming Wave Characteristics by MUSIC Method Using Virtual Array Antenna," SAE International Journal of Passenger Cars - Electronic and Electrical Systems, vol. 8, no. 1, pp. 146-155, May 2015.
[26] S. Komatsu, S. Imai, K. Taguchi, and T. Kashiwa, "Development of Tool for Evaluation of Automotive Conformity of FM Receivers Using Two-Stage Method," SAE International Journal of Passenger Cars - Electronic and Electrical Systems, vol. 8, no. 1, pp. 170-179, May 2015.
[27] S. Imai, K. Taguchi, T. Kawamura, and T. Kashiwa, "Numerical study on path loss characteristics considering antenna positions on car body at blind intersection in urban area for inter-vehicle communications using 700MHz band," IEICE Trans. Electron., vol. E99-C, no. 1, pp. 36-43, Jan. 2016.
[28] S. Komatsu, S. Imai, K. Taguchi, and T. Kashiwa, "Incoming Wave Estimation Characteristics by MUSIC Method Using a Virtual Array Antenna in Urban Reception Conditions," SAE International Journal of Passenger Cars - Electronic and Electrical Systems, vol. 9, no. 1, pp. 123-133, May 2016.
[29] S. Komatsu, Y. Karasawa, T. Kashiwa, K. Taguchi, and S. Imai, "Development and Application of FM Multipath Distortion Rate Measurement System Using a Fading Emulator Based on Two-Stage Method," SAE International Journal of Passenger Cars - Electronic and Electrical Systems, vol. 9, no. 1, pp. 160-170, May 2016.
[30] S. Imai, K. Taguchi, and T. Kashiwa, "Effect of transparent waves from building walls on path loss characteristics at blind intersection in urban area for 700 MHz band inter-vehicle communications," IEICE Trans. Electron., vol. E99-C, no. 7, pp. 813-816, July 2016. (Letter)
[31] S. Imai, K. Taguchi, and T. Kashiwa, "FDTD method as a counterpart of ray-tracing method to analyze radio wave propagation," IEICE Trans. Electron., vol. E100-C, no. 1, pp. 68-74, Jan. 2017.
[32] K. Kojima, A. Hirata, K. Hasegawa, S. Kodera, I. Laakso, D. Sasaki, T. Yamashita, R. Egawa, Y. Horie, N. Yazaki, S. Kowata, K. Taguchi, and T. Kashiwa, "Risk Management of Heat Stroke Based on Fast Computation of Temperature and Water Loss using Weather Data for Exposure to Ambient Heat and Solar Radiation," IEEE Access, vol. 6, pp. 3774-3785, Jan. 2018 (DOI: 10.1109/ACCESS.2018.2791962).
[33] 中西優大, 伊藤孝弘, 平田晃正, 田口健治, 柏達也, "サブグリッド法に基づくSPFD解析による一様磁界ばく露解析," IEICE Trans. vol. J101-C, no. 5, pp. 256-257, May 2018.(レター)
[34] K. Taguchi and T. Kashiwa, "Optimal Design of Dielectric Flat Lens Based on Topology Optimization Concept," IEICE Trans. Electron., vol. E101-C, no. 8, pp. 647-650, Aug. 2018. (Letter)
[35] K. Taguchi, I. Laakso, K. Aga, A. Hirata, Y. Diao, J. Chakarothai, and T. Kashiwa, "Relationship of External Field Strength with Local and Whole-body Averaged Specific Absorption Rates in Anatomical Human Models," IEEE Access, vol. 6, pp. 70186-70196, Nov. 2018 (DOI: 10.1109/ACCESS.2018.2880905).
[36] 尾崎龍之介, 日景隆, 田口健治, 柏達也, 井上都, 増田宏, 石竹達也, "60GHz帯電波に対する生体影響の熱閾値評価のための空間合成型ばく露装置開発," 電気学会論文誌A, vol. 142, no. 6, pp. 250-256, June 2022.
[37] K. Taguchi, S. Kodera A. Hirata, and T. Kashiwa, "Computation of Absorbed Power Densities in High-Resolution Head Models by Considering Skin Thickness in Quasi-Millimeter and Millimeter Wave Bands," IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology, vol. 6, no. 4, pp. 516-523, Dec. 2022 (DOI: 10.1109/JERM.2022.3203576).
[38] S. Kodera, N. Miura, Y. Diao, M. Inoue, T. Hikage, K. Taguchi, H. Masuda, and A. Hirata, "Whole-Body Exposure System Using Horn Antennas With Dielectric Lens at 28 GHz," IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology, vol. 7, no. 1, pp. 67-72, Mar. 2023 (DOI: 10.1109/JERM.2022.3218812).
[39] K. Li, S. Kodera, D. Poljak, Y. Diao, K. Sasaki, A. Šušnjara, A. Prokop, K. Taguchi, J. Xi, S. Zhang, M. Yao, G. Sacco, M. Zhadobov, W. E. Hajj, and A. Hirata, "Calculated Epithelial/Absorbed Power Density for Exposure From Antennas at 10–90 GHz: Intercomparison Study Using a Planar Skin Model," IEEE Access, vol. 11, pp. 7420-7435, Jan. 2023 (DOI: 10.1109/ACCESS.2023.3238582).
[40] S. Kodera, K. Taguchi, Y. Diao, T. Kashiwa and A. Hirata, "Computation of Whole-Body Average SAR in Realistic Human Models from 1 to 100 GHz," IEEE Trans. Microwave Theory Tech., vol. 72, no. 1, pp. 91-100, Jan. 2024 (DOI: 10.1109/TMTT.2023.3289562).
[41] Kun Li, T. Hikage, H. Masuda, E. Ijima, A. Nagai, and K. Taguchi, "Parameter variation effects on millimeter wave dosimetry based on precise skin thickness in real rats," Scientific Reports, vol. 13, pp. 1-11, Article number: 17397, Oct. 2023.