浙江仙居人,教授。1991年毕业于浙江师范大学物理系物理专业,留校任教至今(期间在清华大学学习一年,华东师范大学学习三年)。2008年受聘浙江师范大学“教学特聘岗位”,2009年入选浙江师范大学校中青年学科带头人。曾担任应用物理教研室主任、物理系主任、光电信息工程系主任等。主持或参与多项国家级项目、省厅级项目及横向项目;在Optics Express、Journal of Lightwave Technology、IEEE Sensors Journal、IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT、Optics Communication、IEEE Photonics Journal等国内外学术刊物上发表论文70余篇(第一作者或通讯作者),其中被SCI或EI收录50多篇;授权专利30多个(第一发明人)。曾主持开发了高校普通物理实验的系列产品,将产品推广应用到省内外近10所高校,产品受用户好评。 上过的理论课(主讲)有:模拟电路、光电技术、光电子学、程序设计、信息技术与物理教学、多媒体技术、程序设计及软件应用、计算机辅助教育、大学计算机基础等;上过的实验课有:音响技术、电工学、模拟电路、电视机等。教学受师生好评,在2000年校青年教师教学大赛中获"教学十佳"称号。 2003年-2004年在清华大学电子工程系高访(师从廖延彪教授),主要学习光纤传感技术及相关的光电检测技术和计算机控制技术。 (一)第一作者或通讯作者的论文:72. Hybrid Interferometer Sensor Based on the Enhanced Vernier Effect for the Simultaneous Measurement of Strain and Temperature, IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2024.10, 73(10):7008410. (SCI Q2, TOP) ;71. Fiber optic strain sensor based on enhanced harmonic Vernier effect, Optical Fiber Technology, 2024.6, 87(6):103878. (SCI Q3);70. Highly Sensitive Strain Sensor Based on theVernier Effect With High Extinction Ratio andLow-Temperature Cross-Sensitivityby Compact Double FPl, IEEE Sensors Journal, 2024.3, 24(6):7896-7904. (SCI Q2, TOP) ;69. High-Sensitivity Strain Sensor With Antiresonance Suppression Based on the Vernier Effect, IEEE Sensors Journal, 2024.1, 24(2):1464-1470. (SCI Q2, TOP) ;68. 基于 222 nm 紫外杀菌的空气净化器光腔优化设计, 浙江师范大学学报, 2024, 47(2):176-184.67. High Extinction Ratio and Low Temperature Cross-Sensitivity Strain Sensor Based on Vernier Effect Through Hybrid Cascaded Sagnac Loop,IEEE Sensors Journal,2023.4,23(7):6864 - 6871.(SCI Q2, TOP) ;66. High-sensitivity and high extinction ratio fiber strain sensor with temperature insensitivity by cascaded MZI and FPI,Optics Express,2023.2,31(5):7073-7089.(SCI Q2, TOP);65. Micro Displacement Sensor With Cascaded Micro Fiber Sagnac Ring Based on Vernier Effect, IEEE Sensors Journal,2023.1,23(1):374-380.(SCI Q2, TOP); 64. Micro displacement sensing based on fused taper fiber coupler,Optical Fiber Technology ,2022.2, 68: 102779. (SCI Q3);63. Loop-Fiber coated wit h graphene oxide incorporating a FBG to sense humidity and temperature simultaneously,Optics Communications,2022.1,508:127819.(SCI Q3); 62. Sagnac Ring Humidity Sensor With a Melting Cone Based on Graphene Properties,IEEE Sensors Journal,2021.7,21(14):16061 - 16065.(SCI Q3); 61. Three-parameter sensing of liquid level–refractive index–temperature (LRT) based on micro/nanofiber coupling ring (MFCR),Optical Fiber Technology,2021.7,21(14):16061-16065.(SCI Q4); 60. Fiber Core-Offset Humidity Sensor Based on Graphene Oxide Characteristics,IEEE Photonics Journal,2021.6,13(3):7100608.(SCI Q3); 59.微纳光纤耦合应变传感器,光学精密工程, 2021.5,29(5):958-966.(EI); 58. Liquid level and refractive index double-parameter sensor based on tapered photonic crystal fiber. Journal of Lightwave Technology, 2020.7, 38(14): 3717-3722. (SCI Q2, TOP); 57. High-Sensitivity Loop-Fiber Temperature Sensor Based on Distilled Water Cladding,IEEE Photonics Journal,2019,11(5): 6803011.(SCI Q3); 56. Practical research on photonic crystal fiber micro-strain sensor,Optical Fiber Technology,2019,52:1-5. (SCI ); 55. Interference-Type High-Sensitivity Temperature Sensor Based on the Photosensitive Fiber Microsphere,IEEE SENSORS JOURNAL,2019:19(24):11941-11945.(SCI Q3); 54. Novel optical fiber refractive sensor fabricated with an alcohol-filled photonic crystal fiber based on a Mach–Zehnder interferometer,Optical Fiber Technology,2019,48:278-282.(SCI); 53. Large-range fiber microsphere micro-displacement sensor,Optical Fiber Technology,2019,48:173-178.(SCI); 52. Study on the Fluorescence Spectra of Melamine in Pure Milk,Journal of Optics,2017,46(2):183-186.(EI); 51. 光纤温度和应变特性研究实验仪的开发,物理通报,2018,2(2):69-73; 50. 基于物联网的寻杖与避障智能导盲佩戴系统,电子世界,2018,11:186-188; 49. 一种基于磁流体磁致折变效应的新型光纤Sagnac磁场传感器,光电子.激光,2017,28(12):1290-1295.(EI); 48. 基于SPR角度调制技术的溶液折射率检测系统,浙江师范大学学报,2018,41(2):40-45; 47. novel optical fiber magnetic field sensor based on Mach-Zehnder interferometer integrated with magnetic fluid,OPTIK,2018,174(8):252-258..(SCI); 46. Optical fiber F–P magnetic field sensor based on magnetostrictive effect of magnetic fluid,Optical Fiber Technology,2018,43(1):35-40.(SCI); 45. A Dual-Parameter Sensor Based on the Asymmetry of Alcohol Filling the Photonic Crystal Fiber in Sagnac Loop,IEEE SENSORS JOURNAL,2018,18(15):6188-6195.(SCI Q3); 44. A WIDE-RANGE DEMODULATION METHOD FOR FBG SENSOR,MICROWAVE AND OPTICAL TECHNOLOGY LETTERS,2016,58(10):2416-2419.(SCI); 43. 基于SPR的蔗糖溶液浓度的自动控制系统,浙江师范大学学报,2016,39(3):283-287; 42. A refractive index sensor based on the tapering theory, IEEE Sensors Journal, 2016, 16(4) : 954-957.(SCI Q3); 41. Magnetic-field fiber sensor based on magneto-birefringence effect of magnetic fluid,Optics Communication,2016,374(6):76-79.(SCI Q3); 40. An All-Fiber Magnetic Field Sensor Based on Dual-S-Shaped Optic Fiber Integrated with Magnetic Fluid, IEEE Sensors Journal, 2016, 16(4) : 958-964.(SCI Q3); 39. 一种新型的液晶填充SM_NC_SM结构光纤温度传感器,光电子激光,2015,26(12):2278-2282.(EI); 38. A novel strain sensor based on a dual-core photonic crystal fiber,Microwave & Optical Technology Letters, 2014, 56(12):2778–2780.(SCI); 37. Refractive index sensor based on Mach–Zehnder interferometer formed by two cascaded single mode fiber corners,Microwave & Optical Technology Letters, 2014, 56(11):2642-2645.(SCI); 36. A novel method for detecting melamine in pure milk,Proc SPIE,2014, 9142(1):18-19.(EI); 35. 简易教学光谱演示仪的制作与使用,物理通报, 2014, 5:129-129; 34. 磁光调制实验仪的改造与实现,光学仪器, 2014, 3:263-266; 33. Using Visible-Near Infrared Spectroscopy for Detecting Melamine in Pure Milk,Applied Mechanics & Materials, 2014, 531:136-140.(EI); 32. A Simple Red Tide Warning Device,Applied Mechanics & Materials, 2014,551:270-274.(EI); 31. Experimental Design for Characteristics of Fiber Temperature and Strain,Applied Mechanics & Materials, 2014, 551:257-263.(EI); 30. 一种简易光谱实验仪的设计与实现,光学仪器,2013,5: 80-84; 29. Study of a Novel Demodulation Method for FBG Sensor,Applied Mechanics & Materials, 2012, 214:898-902.(EI); 28. 基于阵列波导光纤温度特性的分布式光纤布喇格光栅解调法,光子学报, 2012, 41(7):836-840.(EI); 27.Study of a novel demodulation method for FBG sensor,GreenPower, Manufacturing Technology and Applications,2012.7.(EI); 26. A feasibility study of an easy way to measure melamine,Proc of SPIE, 2011, 8205(1):1869-1872.(EI); 25. The Development of Experimental Apparatus for Measurement of Magnetostrictive Coefficient,Springer Berlin Heidelberg, 2011, 97:993-999.(EI); 24. A building structure health monitoring system based on the characteristic of TFBG,Proc of SPIE,2010:95 - 98.(EI); 23. Novel detection system for micro-strain signal based on demodulation method of tilted fiber Bragg grating sensors,Proc of SPIE,2010, 7283:72833Z-72833Z-5.(EI); 22. Auto-monitoring and Controlling System of Opaque Film Thickness Based on Fiber Optic Michelson Interferometer,IEEE(IITA2010),2010.11.(EI); 21.Novel Detection System for the Micro-strain Signal Based on Demodulation Method of the Tilted Fiber Bragg Grating Sensors,Proc of SPIE,2008.7283(11):72833z-1~72833z-5.(EI); 20. Measurements of fibers' thermal-optic coefficient based on optical fiber Bragg grating sensor; 27TH INTERNATIONAL CONGRESS ON HIGH SPEED PHOTOGRAPHY AND PHOTONICS; ISSN:0277-786x.(EI); 19. Micro-vibration or displacement measurement based on a novel bragg grating pair ;SPIE,2008.(EI); 18. Two novel methods for liquid refractive index or concentration measurement using reflex fiber optic sensors,SPIE,2006,VOL.6034.(EI); 17.具有温度补偿的光纤光栅压力传感器研究,清华大学学报, 20 06,46(4):484-487.(EI); 16.测量光纤有效弹光系数的一种新方法,光学技术,2005,31(5):655-658(EI); 15.Tilt sensor with FBG technology and matched FBG demodulating method, IEEE Sensors Journal, 2006,6(1):63-66.(SCI Q3); 14.光纤水听器灵敏度测试的研究,光子学报,2005,34(11):1633-1638(EI); 13.Pressure sensor based on a free elastic cylinder and birefringence effect on an FBG with temperature-compensation,Measurement,2005.Vol.38,No.2: 176-180.(SCI Q3); 12.在-50oC—+150oC大温度范围下用FBG测材料的三维热膨胀系数,光子学报,2005,34(10):1501-1505.(EI); 11.干涉型光纤传感器的相位随机漂移及倍频问题的解决方法,光电子·激光, 2005,16(8):913-917.(EI); 10. High-accuracy measurement of low-water-content in liquid using NIR spectral absorption method,SPIE,2004, 5633:345-350.(EI); 9. Sensitive hydrogen peroxide content measurement technology using refractive-index-based optical device.SPIE,2004,5642:568-574.(EI); 8. 利用计算机接口技术,使MCAI课件与演示实验完美结合,中国电化教育,2003, 194:79-81; 7. 单缝衍射实验改造研究,浙江师范大学学报, 1999,22(4):37-40; 6. 自由落体运动实验改造研究,浙江师范大学学报,1998.11,21(4) :48-51; 5. 让计算机与普通物理实验结缘,实验室研究与探索,2001.10,20(5):37-40; 4. CCD渗入双棱镜实验--计算机辅助普通物理实验教学的尝试,大学物理,2001.9,20(9):34-41; 3. 基于VB的实验室仪器管理系统的开发与实现,实验技术与管理,ISSN 1002-4956,2001.10,18(增); 2. 谈MCAI课件素材的采集与链接,浙江师范大学学报, ISSN 1001-5051, 1999.9,22(增); 1. 理想成像系统调制度传递函数的简要分析,浙江师范大学学报,1996,19(2):39-43. (二)、主持的代表性科研项目(课题) 1.浙江省自然科学基金项目,LGG22A040001,基于紫外清除新冠病毒的新型空气净化器研发,2022/01-2024/01,10万,进行中,主持。2.浙江省自然科学基金项目,Y15F050012,基于磁流体与光子晶体光纤光栅的传感器件及其应用的研究,2015/01-2017/12,8万元,已结题,主持。3.浙江省科技计划项目,2005C31011,乳品厂牛奶成分快速监测与控制系统的开发(基于光纤传感技术),2011/08-2013/08,15万,已结题,主持;4.杭州明约光电科技有限公司(横向项目),KJH2010049,光学基础课实验系统研发,2010/06-2013/06,6.5万元,已结题,主持;5.金华信光教仪科技有限公司(横向项目),KYH06K11011,大学物理实验系统开发,2010/07-2012/07,2万元,已结题,主持;6.浙江省自然科学基金项目,Y105072、光纤光栅对的传感新特性及其应用的研究,2006/01-2007/12) ,5万元,已结题,主持;7.胜利油田(横向项目),20060606104241259、岩石模块井眼内壁图像信息采集与处理,2006/03-2006/07,4.9万元,已结题,主持;8.浙江省科技计划项目,2005C31011,真空蒸镀法制备非晶薄膜及其巨磁阻抗效应的研究,2005/01-2006/12,14万元,已结题,主持。9.普通物理实验技术改造的研究,浙江省教委,1997-1999,通过会议鉴定,主持。 (三)、授权专利(第一发明人) 1.一种空气净化装置、空气净化器以及空气净化方法,ZL202010944297.2,发明专利,2021-7-232.基于SPR传感器的溶液浓度检测系统及SPR传感器的制备方法,ZL201710893394.1,发明专利,2020-2-213.一种智能太阳能热水器管理系统,ZL201410700742.5,发明专利,2016-08-314.真空蒸镀法制备巨磁阻抗薄膜的方法,ZL200810120431.6,发明专利,2013.115.一种导热系数测定实验系统,ZL201721388674.9,实用新型,2018-05-045.基于SPR传感器的溶液浓度检测系统, ZL201721253618.4,实用新型,2018-05-04 6.一种光波检测装置,ZL201721253617.X,实用新型,2018-05-04 7.一种基于石墨烯的甲烷检测装置,ZL201721253550.X,实用新型,2018-04-208.一种电流方向指示实验的演示教具,ZL201620397509.9,实用新型,2017-03-01 9.一种植物呼吸作用过程及产物的演示教具,ZL201620397510.1,实用新型,2017-03-01 10.一种涡流热效应演示教具, ZL201620397508.4,实用新型,2017-03-01 11.一种平抛运动留迹实验的演示教具,ZL201620397512.0,实用新型,2017-03-01 12.一种利用计算机辅助的转动惯量测定装置,ZL201621314447.7,实用新型,2017-07-14 13.一种Sagnac磁场检测系统,ZL201720672210.4,实用新型,2017-12-19 14.基于表面离子体共振原理的实时牛奶含水量监控系统,ZL201620334181.6,实用新型,2016.915.一种微弱磁场检测系统,ZL201620182488.9,实用新型,2016-07-27 16.一种实时监测牛奶中三聚氰胺含量的系统,201320600707.7,实用新型,2013-09-2717.一种新型便携式地沟油检测的装置,ZL201420150567.2,实用新型18.一种新型的赤潮预警装置,ZL201320887869.3,实用新型19.一种用于变电站的分布式全光压强传感器检测系统,ZL201220231292.6,实用新型,2013.120.一种用于生产乳制品的牛奶含量自动控制系统,ZL201320359475.0,实用新型,2013.1121.一种简易光谱实验仪,ZL201320321643.7,实用新型,2013.1222.真空蒸镀机加磁基片固定装置,ZL200820163668.8,实用新型,2012.723.基于回音壁模式光学微腔的分布式FBG解调装置, L201220231288.X,实用新型,2012.1224.基于阵列波导光栅特性的分布式监测仪,ZL201120386980.5,实用新型,2012.725.利用光栅常数测定光波波长实验仪,ZL201020144635.6,实用新型,2011.1026.基于近红外光谱分析技术的牛奶水分快速监测装置,ZL201020144645.X,实用新型,2011.527.低成本光纤传感实验仪,ZL201020144688.8,实用新型,2011.528.光的衍射实验仪,ZL201020144666.1,实用新型,2011,829.RLC电路暂态过程测试仪, ZL201020144726.X,实用新型,2011.830.变力做功演示实验仪,中国,ZL201020144677.X,实用新型,2011.731.热敏电阻实验仪,ZL201020144669.5,实用新型,2011.832.液体沾滞系数的测量实验仪, ZL201020144717.0,实用新型,2011.8 (四)、代表性获奖: 1. 第十二届“郑晓沧奖”,2021.9;2.省“高校优秀共产党员”称号,2019.7;3.省“师德先进个人”称号,2017.09;4.获“睿达教学突出奉献奖”,2016.12;5. 省高校“三育人先进个人”称号,2010.09;6. 校“2008-2009实验技术成果奖”一等奖,2010.1;7.清华大学“优秀访问学者”称号, 2004.6;8. 校青年教师“教学十佳”称号,1999.12.(五)、书1. 虞献文,彭保进.最新家用电器使用与维修999,电子工业出版社,ISBN7-5053-1977-9/TN.590,130万字,1992 2. 虞献文,彭保进(副主编).家用电器百科(上册、下册),高等教育出版社出版,ISBN7-04-011427-5,210万字,2003
Baojin Peng
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Gender:Male
Education Level:Graduate class graduation
Alma Mater:华东师范大学
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