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学术论文

教材:

[1]   《信号检测与估值理论》(第二作者)
[2]   《信号检测与估值理论(第二版)》(第二作者)
[3]   《信号检测与估值理论—学习指导与习题解答》(第一作者)
[4]   《射频电路基础》(国家”十一五“规划教材)(第一作者)
[5]   《射频电路基础(第二版)》(国家”十一五“规划教材,高等学校电子信息类专业”十三五“规划教材)(第一作者)
[6]   《射频电路基础(第二版)学习指导》(国家”十一五“规划教材,高等学校电子信息类专业”十三五“规划教材)(第一作者)
[7]   《模拟电子电路与技术基础》(国家”十一五“规划教材)(第三作者)
[8]   《模拟电子电路与技术基础—学习指导与习题解答》(第三作者)
[9]   《模拟电子电路与技术基础(第二版)》(国家”十一五“规划教材)(第二作者)
[10] 《模拟电子电路与技术基础(第三版)》(国家”十一五“规划教材)(第二作者)
[11] 《模拟电子电路简明教程》(第二作者)

 

第一作者代表性学术论文:

[1] J. X. Zhao and G. X. Zhao, “Using a coned cable to simplify the accurate numerical dosimetry of a resonant exposure setup operating at 1710.2-1989.8 MHz,” IEEE Trans. Microwave Theory Tech., Early access article, 2020.
[2] J. X. Zhao, “Using an inclined waveguide cavity to improve the resonant exposure on cultured cells,” IEEE Trans. Microwave Theory Tech., vol. 66, pp. 2522-2534 , 2018.
[3]  J. X. Zhao, “An extrapolation method for efficient and accurate numerical dosimetry of resonant exposure setups,” IEEE Trans. Microwave Theory Tech., vol. 66, pp. 774-783, 2018.
[4] J. Zhao and H. Lu “Reduction of exposure inhomogeneity for millimeter-wave experiments on cells in vitro,”IEEE Trans. Microwave Theory Tech., vol. 63, pp. 533-545, 2015.
[5] J. Zhao, H. Lu, and J. Deng “Application of the planar-scanning technique to the near-field dosimetry of millimeter-wave radiators,”Bioelectromagnetics, vol. 36, pp. 108-117, 2015.
[6]  J.X. Zhao and H.M. Lu “Meniscus effect on the in vitro dosimetry of the T25 flask under 2.45 and 5.25 GHz exposures,” IEEE Microw. Wireless Compon. Lett., vol. 23, pp. 105-107, 2013.
[7]  J.X. Zhao, “In vitro dosimetry and temperature evaluations of a typical millimeter-wave aperture-field exposure setup,” IEEE Trans. Microwave Theory Tech., vol. 60, pp. 3608-3622, 2012.
[8]  J.X. Zhao, H.M. Lu, and J. Deng, “Dosimetry and temperature evaluations of a 1800 MHz TEM cell for in vitro exposure with standing waves,” Progr. Electromagn. Res., vol. 124, pp. 487-510, 2012.
[9]  J.X. Zhao, “Numerical dosimetry for cells under millimetre-wave irradiation using Petri dish exposure set-ups,” Phys. Med. Biol., vol. 50, pp. 3405-3421, 2005.
[10] J.X. Zhao and Z.G. Wei, “Numerical modeling and dosimetry of the 35 mm Petri dish under 46 GHz millimeter wave exposure,” Bioelectromagnetics, vol. 26, pp. 481-488, 2005.

 


指导研究生发表的学术论文:

[1]  Z. Ren, J.X. Zhao, H.M. Lu, J.N. Zhang, and W. Wang, “SAR and temperature evaluations of a 900 MHz TEM chamber for cell exposure,” Applied Mechanics and Materials, vol. 195-196, pp. 90-95, 2012.
[2]  W. Wang, J.X. Zhao, H.M. Lu, Z. Ren, and J.N. Zhang, “Dosimetry and temperature evaluation of TEM chamber for cell exposure at 1800 MHz,” Applied Mechanics and Materials, vol. 195-196, pp. 879-884, 2012.
[3]  J.N. Zhang, J.X. Zhao, H.M. Lu, W. Wang, and Z. Ren, “Analysis of exposure uniformity on cells in vitro with 900 MHz TEM chamber,” The 2nd International Conference on Biomedical Engineering and Computer Science, pp. 341-344, Aug. 23-24, 2011, Wuhan, China.
[4]  Y.Y. Deng, J.X. Zhao, and H.M. Lu, “PID control of the temperature environment for cells under 900 MHz high power exposure,” 6th International EMF Seminar in China: Electromagnetic Fields and Biological Effects, pp. 18, Oct. 20-23, 2011, Chongqing, China.
[5]  Y.F. Du, J.X. Zhao, and H.M. Lu, “A comparative study of millimeter wave dosimetry in vitro and in vivo near-field exposure setups,” 6th International EMF Seminar in China: Electromagnetic Fields and Biological Effects, pp. 24, Oct. 20-23, 2011, Chongqing, China.
[6]  Z.J. Gao, J.X. Zhao, and H.M. Lu, “In vitro dosimetry of isolated electric field and magnetic field exposures in a 900 MHz TEM cell,” 6th International EMF Seminar in China: Electromagnetic Fields and Biological Effects, pp. 28-29, Oct. 20-23, 2011, Chongqing, China.
[7]  L. Chen, J.X. Zhao, and H.M. Lu, “Numerical establishment of the meniscus on the liquid surface for dosimetry analysis,” 6th International EMF Seminar in China: Electromagnetic Fields and Biological Effects, pp. 43, Oct. 20-23, 2011, Chongqing, China.
[8]  X.L. Pang, J.X. Zhao, and H.M. Lu, “Dosimetric effect of the meniscus in T25 flask with 900 MHz and 1800 MHz exposures,” 6th International EMF Seminar in China: Electromagnetic Fields and Biological Effects, pp. 59-60, Oct. 20-23, 2011, Chongqing, China.
[9]  X. Shao, J.X. Zhao, and H.M. Lu, “Temperature rise in the human eye exposed to 400 MHz handset transceivers,” 6th International EMF Seminar in China: Electromagnetic Fields and Biological Effects, pp. 63, Oct. 20-23, 2011, Chongqing, China.
[10] D.W. Shi, J.X. Zhao, and H.M. Lu, “Field measurement in the vicinity of the radiator using the plane wave expansion,” 6th International EMF Seminar in China: Electromagnetic Fields and Biological Effects, pp. 65, Oct. 20-23, 2011, Chongqing, China.
[11] M.Z. Zhang, J.X. Zhao, and H.M. Lu, “Quasi-optical setups for the millimeter wave exposure on cells in vitro,” 6th International EMF Seminar in China: Electromagnetic Fields and Biological Effects, pp. 93, Oct. 20-23, 2011, Chongqing, China.
[12] H.M. Fang, J.X. Zhao, H.M. Lu, J.N. Zhang, and H.W. Li, “SAR and temperature evaluations of a 1800 MHz waveguide chamber for in vitro cell exposure,” 2010 First International Conference on Cellular, Molecular Biology, Biophysics and Bioengineering, pp. 482-485, Dec. 25-26, 2010, Qiqihar, China.
[13] H.M. Fang, J.X. Zhao, H.M. Lu, J.N. Zhang, and Z.B. Yu, “Irradiation dosimetry of active UHF RFID antennas on the human body,” 2010 First International Conference on Cellular, Molecular Biology, Biophysics and Bioengineering, pp. 486-488, Dec. 25-26, 2010, Qiqihar, China.