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教育背景 1987-1990 上海交通大学 振动、冲击、噪声专业 博士 1984-1987 上海机械学院 振动、冲击、噪声专业 硕士 1978-1982 上海交通大学 船舶动力装置专业 学士 工作经历 1982.8-1984.8 沪东造船厂轮机车间 助理工程师 1990-1992 上海交通大学动力机械工程系动力装置研究所 讲师 1993-1995 上海交通大学动力机械工程系动力装置研究所 副教授 1998 上海交通大学动力机械与能源工程学院汽车发动机研究所 副教授 1999-2001 上海交通大学动力机械与能源工程学院振动、冲击、噪声研究所 教授、博士生导师 2002- 上海交通大学机械与动力工程学院振动、冲击、噪声研究所 教授、博士生导师 出访及挂职经历 1996~1997 日本国五十铃汽车有限公司车辆研究实验部 研究员 2011:英国南安普顿大学访问教授 科研项目 主持的国家自然科学基金: 2005 国家自然科学基金10474065),循环平稳声场的近场声全息理论研究 2007-2009,国家自然科学基金(10674096),循环平稳声场的非共形面近场声全息理论与实验研究 2011~2013,国家自然科学基金(11074170),弹性散射体散射声场分析的快速边界元方法研究 2013~2016,国家自然科学基金(11272208),末端敞开管桩的沉桩振动与水下声辐射的机理、算法及控制方法研究 2016-2019,国家自然科学基金(11574212),复杂气动噪声源的波束形成原理与方法研究 2019-2023,涡扇发动机宽带风扇噪声的声源反演与辐射声场重建理论与方法(重点项目51835008) 主持的其他纵向课题 2003-2005 上海市重大科技攻关项目(03dz12021),都市交通噪声控制关键技术研究 2004-2004 863高速磁浮交通技术重大专项,高速磁浮列车车内噪声源分析 2005-2006, 863高速磁浮交通技术重大专项(2005AA505010-505),高速磁浮交通噪声控制技术研究 2007-2010,国家高技术研究发展计划(2007AA04Z416),基于声成像的小型旋转机械故障诊断技术 2009-2010,国家重点实验室开放课题,基于快速多极子边界元法的复杂物体目标强度研究 2011~2012,机械系统与振动国家重点实验室课题(MSVMS201105),高速列车气动噪声声源及传播, 2010~2013,973,双层壳体结构多重声振耦合,专题负责人 2012~2013,北京市创新工程11-1项目,噪声地图动态更新算法研究 2015-2018,基于传声器阵列的旋翼复杂噪声测量原理与方法研究,某项目专题,中国空气动力学研究中心 负责的企业合作项目: 2004-2004 上海汇众汽车制造有限公司,XX中型客车的噪声振动特性分析与评价 2004-2005 上海园林科学设计研究院,绿化材料降噪特性研究 2005-2006 United Technologies Research Center,LtdElevator Slide Guide Noise and Vibration source Mode, 噪声负责人 2005-2006,长春轨道客车股份有限公司,城轨客车噪声预报与控制技术研究 2004~2005,上海汇众汽车制造有限公司,ISTANA商用车车内噪声优化 2005- 2007,上海日立电器有限公司,滚动转子式压缩机气流噪声研究 2005-2006,Daikin Air-conditioning and Environmental Laboratory Ltd. Japan,Clarification of Whistle Noise Generation Condition 2006-2007, 上海华普汽车有限公司,乘用车的车内噪声控制 2006-2006,上海轨道交通宝山线发展有限公司,轨道交通3号线噪声评价及改进措施研究 2006-2007,上海磁浮交通工程技术研究中心,高速磁浮列车的车内噪声控制技术研究 2008-2010,Beijing Embraco Snowflake Compressor Company Limited,Experimental Investigation Noise of Compressors & Refrigerators 2008-2008,马钢集团实业发展有限责任公司,风吹渣噪声控制关键技术研究与治理方案 2009-2009,上海宇航系统工程研究所,驱动机构运转响声监测技术研究 2008-2009,上海申通地铁集团有限公司,轨道交通噪声声源识别、仿真和集成控制研究 2010-2011,珠海格力节能环保制冷技术研究中心有限公司,压缩机振动噪声分析技术咨询 2011~2012,加西贝拉压缩机有限公司,压缩机和冰箱噪声分析与控制技术服务 2011~2012,北京恩布拉科雪花压缩机有限公司,低噪声压缩机壳体的优化 2011~2011,北京市劳动保护科学研究所,环境噪声无线监测系统的声源反演算法 2011~2011,港珠澳大桥岛隧工程第二工区项目经理部,中华白海豚繁衍区的打桩噪声分析与测试 2012~2013,加西贝拉压缩机有限公司,低噪声压缩机关键技术开发 2012~2013,上汽通用五菱汽车股份有限公司,车身NVH关键技术研究 2013~2015, 亚普汽车部件股份有限公司,燃油箱声学工程关键技术开发 2013~2013,苏州轨道交通有限公司,苏州轨道交通振动与风亭噪声特性分析与控制研究 2013~2014上海华电奉贤南桥新城能源中心余热锅炉噪声控制技术研究, 华电重工股份有限公司 2013.~2015 商乘车样车测试和整车NVH预研究,上汽通用五菱汽车股份有限公司 2015 ~2017 汽车发动机NVH检测技术研究,日立研究开发有限公司 2015 - 2018 百万平台NVH技术创新理论与应用研究,上汽通用五菱汽车股份有限公司 2015-2017,汽车发动机NVH检测技术研究,日立(中国)研究开发有限公司 2017, 水槽声学测试技术的仿真研究技术协议,708研究所 2017-2018,船舶低噪声设备内源反演方法研究,704研究所 2018-2020,大型电机变频驱动电磁激励特性分析研究,712研究所 2018, 破壁机减振降噪技术研究,浙江绍兴苏泊尔生活电器有限公司 2019-2020, 转子式压缩机排气噪声机理与降噪技术研究,南昌海立电器有限公司 2019-2021, 山东海阳核电一期工程主控室噪声分析和治理方案设计独立审查服务 2020-2021, 低噪声油烟机开发关键技术研究,广东美的制冷设备有限公司 2020-2022, 无取向硅钢高温高速下的强度安全研究及NVH模型研究,宝钢股份,负责NVH部分 2020-2021, 杭州华电半山发电有限公司去工业化改造项目-电厂噪声控制技术与应用,华电重工股份 2020-2021, 机体表面声载荷预测技术,上海航发商用航空发动机有限责任公司 2020-2021, 燃油箱降噪的结构设计技术研究,亚普汽车部件股份有限公司 2020-2022, 风扇宽频噪声声源提取技术研究,中国航发商用航空发动机有限责任公司 2021-2022,空压机产品振动噪声能力建设,英格索兰技术研发(上海)有限公司 2021-2022, 电厂噪声控制技术研究与应用,华电重工股份有限公司 教学工作 1、课程名称: 弹性理论与有限元,授课对象:硕士生,学时数:54,学分:3 2、课程名称: 振动理论与声学基础,授课对象:硕士生,学时数:54,学分:3 3、课程名称: 振动与声学的计算方法,授课对象:博士生,学时数:36,学分:2 4、课程名称: 机械动力学与振动,授课对象:本科生,学时数:51,学分:3 5、课程名称: 声学原理及其计算方法,授课对象:硕士生,学时数:48,学分:3 6、课程名称: 材料力学,授课对象:本科生,学时数:48,学分:3 软件版权登记及专利 专利名称:一种防雨尘宽频带阻抗复合式声屏障, ZL00216247.4, 专利名称:一种防雨尘宽频带阻抗复合式双侧声屏障, ZL00216246.6 专利名称:道间吸声屏障,ZL00216248.2 专利名称:辨识声源特性的方法,ZL00116863.0 专利名称:采用近场声全息技术辨识非平稳声源的方法,ZL03129405.7 专利名称:采用偏相干技术辨识非平稳声源特性的方法,ZL03129404.9 专利名称:采用主成分分析技术辨识非平稳声源特性的方法,ZL03129406.5 专利名称:双面吸声啮合空腔无棉声屏障,ZL200510023452.2 专利名称:高速车辆浮置地板的等固有频率的非线性刚度隔振器,ZL200710044226.1 专利名称:采用边界元法辨识循环平稳声源特性的方法,ZL200810036142.8 专利名称:采用球面波叠加技术辨识循环平稳声源特性的方法, ZL200810036141.2 软件著作权:二维声学快速多极子边界元软件,2012SR040883 专利名称:近场声全息声像模式识故障检测装置及其检测方法,ZL201010214406.1 专利名称:非接触式旋转机械故障的诊断系统,ZL201010263896.4 专利名称:采用图像识别与声强扫描的噪声源快速定位系统和方法,ZL201210335227.2 专利名称:鉴于图像识别定位和声学传感器阵列测量的声场分析方法,ZL201210335212.6 软件著作权:三维声学快速多极子边界元软件,2015SR175279 专利名称:一种基于球函数基本解的近场声全息测试方法及装置,ZL201610424895.0 专利名称:阵列可变的旋转声学测量装置,01910214306.X 专利名称:融合渐开线阵列和FPGA的便携式噪声源检测装置,202010805017.X 荣誉奖励 2007,上海市优秀工程咨询成果二等奖(第一完成人),轨道交通3号线噪声评价及改进措施研究, 2007,上海市科技进步二等奖(第二完成人),城市轨道交通减振降噪关键技术研究与应用 2014,中国水运建设建设行业协会科学技术奖三等奖(第二完成人),中华白海豚繁衍区水下挤密砂桩施工控制技术研究 2016,上海市研究生优秀博士论文导师奖,上海市教育委员会,上海市学位委员会 2019,中国机械工业科学技术奖科技进步二等奖(第一完成人),强干扰环境下非平稳声源辨识的关键技术及其应用 2018,最受欢迎毕业生导师,上海交通大学机械与动力工程学院 2020,中国声学学会首届优秀博士论文提名奖(导师奖) 2020,上海市科技发明一等奖(第一完成人), 机电产品的非平稳噪声快速计算、精准测量及其降噪技术 2020,年度最受欢迎教师奖,上海交通大学机械与动力工程学院,

研究领域

声场可视化重建方法及其应用:近场声全息, 波束成形 高性能声学计算方法: 声学问题的快速多极子边界元方法,流声固耦合分析计算方法 机电产品噪声:各种车辆、飞行器、船舶的辐射噪声与舱内噪声,机电设备与家用电器噪声的分析与控制

近期论文

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1. 蒋伟康, 朱继梅. 正交各向异性板动力响应的边界元方法, 振动工程学报,1988, 1(1): 55-62 2. 蒋伟康, 骆振黄. 具有横向裂纹转子的刚度研究, 机械强度, 1990, 12(4):16-20 3. 蒋伟康, 骆振黄. 具有横向裂纹的直立转子过临界转速的瞬态振动, 振动与冲击, 1992, 41&42: 55-63 4. 蒋伟康, 骆振黄. 含横向裂纹转子的瞬态振动, 机械强度, 1992,14(4):1-7 5. Hiroshi Takata, Takuo Nishi, Weikang Jiang, Stuart Bolton. The use of near-field acoustical holography (NAH) and partial-field decomposition to identify and quantify the sources of exterior noise radiated from a vehicle. The Journal of the Acoustical Society of America. 1996,100(4):26-54. 6. JIANG Weikang. Acoustic Systems with Multiple Incoherent Sources and Its Applications in Studying Noises Radiated from Vehicle Engine. Journal of Shanghai Jiaotong University. 1998,E-3(1): 68-75 7. JIANG Weikang, Some Mechanisms of Drum Brake Oscillation and Squeal. Journal of Shanghai Jiaotong University, 1998,E-3(2): 18-24 8. 蒋伟康,西择男,高田博. 鼓式制动器振动与啸叫的研究. 机械强度, 1998.6,20(2):81-86, EI99024579943 9. 蒋伟康,高田博,西择男,声近场综合试验解析技术及其在车外噪声分析中的应用, 机械工程学报, 1998; 34(5):76-84, EI99014544457 10. 万泉, 蒋伟康. 物理源特性辨识的奇异值重置方法. 振动工程学报.2000;13(S):719-725 11. 蒋伟康,陈光冶. 偏奇异值分析在非自由声场声源解析中的应用. 振动工程学报. 2000;13(4):644-649 12. 陈光冶, 蒋伟康. 一种分析车内声传递特性的实验研究方法. 汽车工程.2000; 22(5):313-315, EI01025528607 13. 蒋伟康,陈光冶, 朱振江等. 轨道交通的声屏障技术研究. 噪声与振动控制. 2001; 21(1): 29-32 14. 蒋伟康,陈光冶, 张继萍. 轻轨交通新型声屏障技术. 上海交通大学学报. 2001; 35(12): 1869-72 15. J P Zhang,W K Jiang, R L Li. Theoretical and experimental investigations on coherence of traffic noise transmission through an open window into a rectangular room in high-rise buildings, The Journal of the Acoustical Society of America. 2002,October, V.112(4): 1482-1495, EI024271467847, SCI: 602BW 16. 万泉, 蒋伟康, 黄慧珠等. 分析小型水下圆柱壳结构冲击响应的一种近似方法. 振动与冲击. 2002.3,22(1):16-20. EI 02397110742. 17. 蒋伟康. 万泉, 黄慧珠等. 一种分析受爆炸冲击的水下圆柱壳结构强度的方法. 机械强度, 2002.9,24(3):355~358, EI 02467199524 18. 蔡旭东, 蒋伟康. 鼓式制动器噪声机理及对策研究. 汽车工程, 2002,24(5):391-394. EI 02507271665 19. 严莉, 张志谊, 蒋伟康等. 汽车电机噪声在线检测技术的研究. 汽车工程. 2003; 25(3): 269~271 EI 03327585248 20. 张伟, 蒋康. 基于心理声学分析的车内异常噪声辨识. 汽车工程. 2003; 25(6): 603~605 21. 万泉, 蒋伟康. 一种分析循环平稳声场的近场声全息方法. 振动工程学报. 2004; 17(S): 1003~1006 22. 黄璞,蒋伟康,辛兢泽等. 中型客车车内加速噪声特性的实验研究. 振动工程学报. 2004; 17(S): 1116~1118 23. 贾智骏, 蒋伟康. 客车主要噪声源识别的试验研究. 汽车工程. 2004; 26(4): 485~487 24. 黄兹思,蒋伟康,朱蓓丽等,压缩机消声器特性的数值分析与实验研究. 振动工程学报. 2004; 17(4):399~402. EI 05098865727 25. 蒋伟康,严莉. 基于神经网络的电机噪声性能在线检测技术研究. 振动与冲击. 2004; 24(4): 51~53. EI 05068829676 26. 黄兹思,蒋伟康,周易. 双转子压缩机振动的有限元数值分析与实验研究. 机械强度. 2004; 26(6):620~623. EI 05098865727 27. 蒋伟康,张伟. 基于掩蔽特性的噪声品质评估研究, 声学学报. 2005; 30(2):184-188. EI 05159039327 28. WAN Quan, JIANG Weikang, The near field acoustic holography technique for cyclostationary sound field and its experimental research. Chinese Journal of Acoustics (in English), 2005; 24(3): 263-270 29. Q Wan, W K Jiang, Z P Zhao. An Analysis about response of small structure suffered underwater explosion. Key Engineering Materials. 2005; Vols: 293-294, pp:685-692,SCI#BCS11 EI 072310637013 30. 万泉, 蒋伟康. 循环平稳声场近场声全息理论与实验研究. 声学学报. 2005; 30(4):379-384, EI 05319277945 31. 万泉, 蒋伟康. 用于循环平稳信号分析的偏相干方法. 机械工程学报. 2005; 41(7):174~179. EI 05349312270 32. Q Wan, W K Jiang. Near field acoustic holography (NAH) theory for cyclostationary sound field and its application. The Journal of Sound and Vibration. 2006; 290(3-5):956-967, SCI# 009VW, EI#06019624422 33. Wan Quan. Jiang W.K. Near field acoustic holography for cyclostationary sound field and its partial source decomposition procedure. Journal of Vibration and Acoustics, Transactions of the ASME, 2005; 127(6): 542-546. SCI# 992JY, EI#06029630185 34. 黄曌宇,蒋伟康. 计算二维矩形声腔传递矩阵及传递函数的声源模型探讨. 振动与冲击.2007,26(2): 98-101. EI#071710571542 35. 季强,蒋伟康,戚方好. 汽车喇叭膜片寿命的影响因素分析及其设计优化. 振动与冲击,2007,26(5):112-114 36. 刘全刚,万泉,蒋伟康. 磁悬浮双层窗隔声性能的预测和优化研究. 振动与冲击,2007,26(S):43-45 37. Z Y Huang, W K Jiang. An effective method calculating acoustic Green’s function for closed rectangular cavity using the Ewald’s summation technique. Acta Acustica united with Acustica,2007,93: 853~856. SCI#225GK; EI# 074610919317 38. Z Y Huang, W K Jiang. Analysis of source models for two-dimensional acoustic systems using the transfer matrix method. The Journal of Sound and Vibration. 2007(306):215~226; SCI#199TV; EI# 072910704904 39. Z Huang, W Jiang, C Liu, H Jin, and Y Zhou, Improvement on acoustic performance of the accumulator of double-cylinder rotary compressors. Proc. IMechE, Part C: Journal of Mechanical Engineering Science. 2007, 221(C11):1391-1396. SCI#242SN; EI#075110977402 40. 黄曌宇,蒋伟康,刘春慧等. 利用声波干涉抑制旋转式压缩机的辐射噪声. 应用力学学报. 2008, 25 (1):21-24. 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Haijun Wu, Weikang Jiang, Yilin Zhang, Wenbo Lu, A method to compute the radiated sound power based on mapped acoustic radiation modes, Journal of the Acoustical Society of America, 2014,135(2): 679-692 96. Siwei Pan, Weikang Jiang. A hybrid approach to reconstruct transient sound field based on the free-field time reversal method and interpolated time-domain equivalent source method, Journal of Sound and Vibration, 333(2014): 3625–3638 97. Siwei Pan, Weikang Jiang, Haibin Zhang, Shang Xiang, Modeling transient sound propagation over an absorbing plane by a half-space interpolated time-domain equivalent source method, Journal of the Acoustical Society of America, 2014, 136(4), 1744-1755 98. Siwei Pan, Weikang Jiang , Shang Xiang, Xiujuan Liu, An interpolated time-domain equivalent source method for modeling transient acoustic radiation over a mass-like plane based on the transient half-space Green’s function, Wave Motion, 2014, 51(8), 1273-1287 99. 唐虹云,蒋伟康,钟振茂,赵迎九. 燃机发电机组余热锅炉低频噪声机理研究,动力工程学报,2014,34(12): 978-984 100. 严小俊, 蒋伟康, 曹诚, 基于遗传模拟退火算法的汽车动力总成悬置系统优化设计, 振动与冲击, 2014, 33(23), 155-159 101. 费翔,蒋伟康,朱志勇, 杨文华. 燃油箱油液晃动声的测量技术研究,振动与冲击,2014, 33(24):187-191 102. 张海滨, 蒋伟康, 闫肖杰, 运行列车辐射噪声源定位与声级定量分析研究, 振动与冲击, 2015, 34(11), 88-92 103. 张一麟, 廖毅, 莫品西, 周江奇, 严莉, 蒋伟康, 基于车身模态和板块贡献分析的阻尼优化降噪方法研究, 振动与冲击, 2015, 34 (4), 153-157 104. Haijun Wu, Yijun Liu, Weikang Jiang, Wenbo Lu, A fast multipole boundary element method for three-dimensional half-space acoustic wave problems over an impedance plane, International Journal of Computational Methods, 2015, 12(1), 1350090:1-25 105. Siwei Pan, Weikang Jiang, Shang Xiang, Reconstruction of semi-free transient sound field under different reflection conditions using an extended interpolated time-domain equivalent source method, Part C: Journal of Mechanical Engineering Science, 2015, 229(5), 895-905 106. 吴海军, 张一麟, 蒋伟康, 水下圆柱壳结构表面振速插值方法及其辐射声场预测, 声学学报, 2015, 40(5), 631-638 107. Haijun Wu, Wenjing Ye, Weikang Jiang, Isogeometric Finite Element Analysis of Interior Acoustic Problems, Applied Acoustics, 2015, 9(10): 1-11 108. Shang Xiang, Weikang Jiang, Siwei Pan. Sound source identification in a noisy environment based on inverse patch transfer functions with evanescent Green's functions. Journal of Sound and Vibration, 2015, 359: 68–83 109. Haixin Dai, Weikang Jiang,Yuanyi Huang, Reseach on the optimal design of engine mounts by minimizing transfer power based on identifying excitation and admittance matrix, SAE International Journal of Passenger Cars - Mechanical Systems, 2015, 8(124), 904-909 110. Wenzheng Zhang, Weikang Jiang. An Improved Shock Factor to Evaluate the Shock Environment of Small-Sized Structures Subjected to Underwater Explosion. Shock and Vibration, Volume 2015, 451583.1-451583.11 111. Guoqing Yuan, Weikang Jiang, Hongxing Hua, Hydroacoustic analysis of open cavity subsonic flow based on multiple parameter numerical models, Journal of Hydrodynamics, 2015, 27(5), 668-678 112. Guoqing Yuan, Weikang Jiang, Vibration analysis of stiffened multi-plate structure based on a modified variational principle, Journal of Vibration and Control, 2015, 12:1-15 113. Qingpeng Deng, Weikang Jiang, Mingyi Tan, Jing Tang Xing, Modeling of offshore pile driving noise using a semi-analytical variational formulation, Applied Acoustics. 2016, 104:85-100 114. Haijun Wu, Weikang Jiang, Haibin Zhang, A mapping relationship based near-field acoustic holography with spherical fundamental solutions for Helmholtz equation, Journal of Sound and Vibration, 2016, 373(7):66-88 115. Siwei Pan, Haibin Zhang, Weikang Jiang. Theoretical and experimental study of transient sound field construction in semi-free field. Journal of Vibration and Control, 2016, 22(10): 2325–2336 116. Qingpeng Deng, Weikang Jiang, Wenzheng Zhang, Theoretical investigation of the effects of the cushion on reducing underwater noise from offshore pile driving, The Acoustical Society of America, 2016, 140 (4):2780–2793 117. Shang Xiang, Weikang Jiang, Hao Jiang, Jianzheng Gao, Reconstructing the normal velocities of acoustic sources in noisy environments using a rigid microphone array, The Journal of the Acoustical Society of America, 2016, 140(3):2082-2089 118. Hao Jiang, Weikang Jiang, Study of lateral–axial coupling vibration of propeller-shaft system excited by nonlinear friction, Archive of Applied Mechanics, 2016, 86(8), 1537–1550 119. Pinxi Mo, Weikang Jiang, A hybrid deconvolution approach to separate static and moving single-tone acoustic sources by phased microphone array measurements, Mechanical Systems and Signal Processing, 2017, 84(1):399-413 120. Haijun Wu, Weikang Jiang, Experimental study of the mapping relationship based near-field acoustic holography with spherical fundamental solutions, Journal of Sound and Vibration, 2017, 49(1):1-18 121. Yilin Zhang, Haijun Wu, Weikang Jiang, Nicole Kessissoglou, Acoustic topology optimization of sound power using mapped acoustic radiation modes, Wave Motion, 2017, 70(2017): 90-100 122. Liu Xiujuan, Wu Haijun, Jiang Weikang. Hybrid Approximation Hierarchical Boundary Element Methods for Accustic Problems. Journal of Computational Acoustics, 25(1750013):1-25 123. Xiujuan Liu, Haijun Wu, Weikang Jiang, A Boundary Element Method Based on the Hierarchical Matrices and Multipole Expansion Theory for Acoustic Problems, International Journal of Computational Methods, 2017, 1(5), 1-26 124. Wenzheng Zhang, Weikang Jiang. Research on the shock resistance optimal design of small-sized submerged vehicle subjected to non-contact underwater explosion, Proc IMechE Part M: J Engineering for the Maritime Environment, 2017, 2017, 1-9 125. Haijun Wu, Weikang Jiang. Experimental study of the mapping relationship based near-field acoustic holography with spherical fundamental solutions, Journal of Sound and Vibration, 2017, 394, 185-202 126. Yilin Zhang, Haijun Wu, Weikang Jiang, Nicole Kessissoglou, Acoustic topology optimization of sound power using mapped acoustic radiation modes, Wave Motion, 2017, 70(4): 90-100 127. Liu Xiujuan, Wu Haijun, Jiang Weikang. Hybrid Approximation Hierarchical Boundary Element Methods for Acoustic Problems. Journal of Computational Acoustics, 2017, 25(3):1750013:1-25 128. Xiujuan Liu, Haijun Wu, Weikang Jiang, A Boundary Element Method Based on the Hierarchical Matrices and Multipole Expansion Theory for Acoustic Problems, International Journal of Computational Methods, 2017, 1(5):1-26 129. Wenzheng Zhang, Weikang Jiang. Research on the shock resistance optimal design of small-sized submerged vehicle subjected to non-contact underwater explosion, Proc IMechE Part M: J Engineering for the Maritime Environment, 2017, 1-9 130. Yu Huang, Weikang Jiang. The effect of exposure duration on the subjective discomfort of aircraft cabin noise, Ergonomics, 2017, 1(60), 18-25 131. Pinxi Mo, Weikang Jiang. A hybrid deconvolution approach to separate acoustic sources in multiple motion modes. The Journal of the Acoustical Society of America, 2017, 142(1):277-285 132. Jinyuan Qian, Lin Wei, Ming Zhang, Fuqiang Chen, Lilong Chen, Weikang Jiang, Zhijiang Jin. Flow rate analysis of compressible superheated steam through pressure reducing values, Energy, 2017, 135(2017), 650-658 133. Liang Yu, Jerome Antoni, Quentin Leclere and Weikang Jiang. Acoustical source reconstruction from non-synchronous sequential measurements by Fast Iterative Shrinkage. Journal of Sound and Vibration, 2017,408(2017):351-367 134. 屠翔宇,蒋伟康,朱志勇等 乘用车油箱的燃油晃动噪声工况传递路径分析, 振动与冲击,2017,36(17):184-188 135. Cong-wei Hou, Jin-yuan Qian, Fu-qiang Chen, Wei-kang Jiang, Zhi-jiang Jin. Parametric analysis on throttling components of multi-stage high pressure reducing valve, Applied Thermal Engineering. 2017, 128(18):1238-1248 136. Haijun Wu, Wenjin Ye, Weikang Jiang. A collocation BEM for 3D acoustic problems based on a non-singular Burton–Miller formulation with linear continuous elements, Computer Methods in Applied Mechanics and Engineering, 2018, 332:191-216, 137. Baihua Yuan, Weikang Jiang, Heng Jiang, Meng Chen and Yu Liu, Underwater acoustic properties of graphene nanoplatelet-modified rubber, Journal of Reinforced Plastics and Composites, 2018, 37(9), 609–616 138. 余亮,吴海军,蒋伟康, 结合波束形成和GAN网络的多通道语音增强研究, 噪声与振动控制,2018,38(S2), 591-596 139. 黄时春,张焕强,蒋伟康.基于小型三维阵列的瞬态声源快速被动定位方法[J].数字海洋与水下攻防. 2018,1(03):12-17, 27 140. Liang Yu, Haijun Wu, Jerome Antoni, Weikang Jiang, Extraction and imaging of aerodynamically generated sound field of rotor blades in the wind tunnel test, Mechanical Systems and Signal Processing, 2019, Volume 116,1017-1028 141. 张焕强,黄时春,蒋伟康. 基于传声器阵列的汽车鸣笛声定位算法及实现, 噪声与振动控制,2018,38 (3):10-14 142. Liang Yu, Jerome Antoni, Haijun Wu, Weikang Jiang. Reconstruction of cyclostationary sound source based on a back-propagating cyclic wiener filter, Journal of Sound and Vibration, 2019, 442:787-799 143. Yu Huang, Weikang Jiang. Identification of perceived sound discomfort contributed from partially correlated vibration and noise sources in vehicles, The Journal of the Acoustical Society of America,2019,145(3):1898-1898 144. Hao Jiang, Haijun Wu, Liang Yu, and Weikang Jiang. Force Identification Based on the Reconstruction of Distributed Response with an Optimized Sensor Placement, Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2019, 233:108-119 145. Haijun Wu, Liang Yu, Weikang Jiang. A coupling FEM/BEM method with linear continuous elements for acoustic-structural interaction problems, Applied Acoustics, 2019,150:44-54. 146. 陆翔,蒋伟康, 异步电机静偏心状态电磁激励力的建模分析与实验研究, 噪声与振动控制, 2019, 39 (4):20-25 147. Liang Yu, Jerome Antoni, Haijun Wu, Quentin Leclere, Weikang Jiang. Fast iteration algorithms for implementing the acoustic beamforming of non-synchronous measurements, Mechanical Systems and Signal Processing, 2019, Volume 134,106309 148. Xingjian Pan, Haijun Wu, Weikang Jiang. Multipole orthogonal beamforming combined with an inverse method for coexisting multipoles with various radiation patterns. Journal of Sound and Vibration, 2019, 463:787-799 149. Liang Yu, Wei Dai, Shichun Huang, Weikang Jiang, Sparse Time–Frequency Representation for the Transient Signal Based on Low-Rank and Sparse Decomposition, Journal of Acoustics, 2019,1:e190003 150. Jianzheng Gao, Haijun Wu, Weikang Jiang. Dipole-based beamforming method for locating dipole sources with unknown orientations in three-dimensional domains, The Journal of the Acoustical Society of America. 2020, 147(1):125-136 151. Haijun Wu, Xinyue Wei, Yang Zha, and Weikang Jiang. Acoustic spatial patterns recognition based on convolutional neural network and acoustic visualization. The Journal of the Acoustical Society of America. 2020, 147(1):459–468 152. Xingjian Pan, Haijun Wu, and Weikang Jiang. Beamforming correction for the singular problem in identifying rotating sources with non-uniform directivity. The Journal of the Acoustical Society of America. 2020, 147(5):3151–3159 153. Shichun Huang, Liang Yu, Weikang Jiang, Water entry sound detection in strong noise by using the spectrogram matrix decomposition method, Applied Acoustics,2020,161:107171 154. Chenguang Wang, Weikang Jiang. A novel transmissibility matrix method for identifying partially coherent noise sources on vehicles. Applied Acoustics, 2020, 165:107318. 155. Dou Li, Haijun Wu and Weikang Jiang, An inverse patch transfer functions method based on a free field Green's function, Journal of Sound and Vibration, 2020,479:115364. 156. Augustus R. Okoyenta, Haijun Wu, Xueliang Liu and Weikang Jiang, A Short Survey on Green’s Function for Acoustic Problems, Journal of Theoretical and Computational Acoustics, 2020,28(2):1950025. 157. R Wang, F Liu, F Hou, W Jiang, Q Hou and L Yu. A Non-Contact Fault Diagnosis Method for Rolling Bearings Based on Acoustic Imaging and Convolutional Neural Networks, IEEE Access,2020, 8(8):132761-132774. 158. 周鹤峰,赵云,田章福,曾新吾,蒋伟康,运动流体介质和剪切层共同作用下平面近场声全息技术改进,国防科技大学学报, 2020,42(5):52-59, 73. 159. 王延年,黄煜,张玲,时海波,蒋伟康. 膜迷路积水对豚鼠听觉外周系统振动特性的影响. 声学学报,2020,45(3): 425-432 160. Liang Yu, Jerome Antoni, Han Zhao, Qixin Guo, Rui Wang and Weikang Jiang. The acoustic inverse problem in the framework of alternating direction method of multipliers, Mechanical Systems and Signal Processing, 2021,149:107220 161. Dou Li, Haijun Wu, Yang Zha, Weikang Jiang. A sound source reconstruction approach based on the machine vision and inverse patch transfer functions method, Applied Acoustics, 2021,181:108180. 162. 余亮,潘铮,陈正武,蒋伟康. 传声器阵列特征值滤波去噪方法, 声学学报, 2021, 46(3):335-343. 163. 屈仁浩,蒋伟康. 电机定子铁芯振动特性分析的一种解析方法. 振动与冲击, 2021, 40(3): 81-86. 164. Xueliang Liu, Haijun Wu, Weikang Jiang, Ruihua Sun. A fast multipole boundary element method for three-dimensional acoustic problems in a subsonic uniform flow, International Journal for Numerical Methods in Fluids. 2021,6(93):1669-1689 165. 肖阳,宋金元, 屈仁浩,,蒋伟康, 变频谐波对电机振动噪声特性的影响规律, 电工技术学报,2021,36(12):2607-2615. 166. 李天宇,蒋伟康,王海军, 滚动转子压缩机排气流噪声数值计算与机理分析, 流体机械,2021,49(6):15-21. 167. 高建正,吴海军,蒋伟康. 旋转叶片高频涡脱落噪声源的双阵列声成像试验研究. 振动与冲击, 2021,40(7):148-153. 168. Penglin Zhang, Yu Huang, Zhiyong Yang, Cheng Yang, Weikang Jiang, Effect of source direction on liner impedance eduction with consideration of shear flow, Applied Acoustics,2021,183:108297. 169. 高建正,陈正武,莫品西,蒋伟康, 旋转运动声源的频率波动修正波束形成方法, 声学学报, 2021, 46(04):576-583 170. Liang Yu,Jerome Antoni,Jiayu Deng,Cong Li,Weikang Jiang. Low-rank Gaussian mixture modeling of space-snapshot representation of microphone array measurements for acoustic imaging in a complex noisy environment, Mechanical Systems and Signal Processing.2022, 165(4-5):108294. DOI: 10.1016/j.ymssp.2021.108294

学术兼职

1995― 《机械强度》杂志编委委员 2002― 《振动与冲击》杂志编委委员 2012― 《振动工程学报》杂志编委委员 2008― 《噪声与振动控制》杂志编委委员 2008―2020:中国振动工程学会噪声与振动控制专业委员会副主任 2020- 中国振动工程声学计算声学分会主任 2006- 中国声学技术标准化委员会委员 2010- 中国声学学会理事 2011- 中国振动工程学会理事 2020-《Acoustics Australia》杂志编委

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