杨军,男,毕业于南京大学,博士生导师,现任中国科学院声学研究所副所长。
教育背景
1993-09--1996-07 南京大学电子科学与工程系暨声学研究所 博士学位
1990-09--1993-07 哈尔滨工程大学 硕士学位
1986-09--1990-07 哈尔滨工程大学 工学学士
学历
南京大学 19930401--19960401 研究生毕业
学位
南京大学 19930401--19960401 博士
工作简历
2021-12~现在, 中国科学院大学电子电气与通信工程学院, 副院长
2020-04~现在, 中国科学院声学研究所, 副所长
2017-11~2020-04,中国科学院声学研究所, 所长助理
2011-01~2020-04,中科院噪声与振动重点实验室(声学所), 实验室主任
2008-03~2012-03,中国科学院声学研究所通信声学实验室, 实验室主任
2003-11~现在, 中科院声学研, 研究员,博士生导师
1998-09~1999-05,中科院声学研究所, 声学所副研究员
1996-05~1998-09,中科院声学研究所, 博士后
社会兼职
2020-06-20-今,中国声学学会, 常务副秘书长
2019-09-03-今,中国声学学会产业促进工作委员会, 主任委员
2018-01-01-今,中国声学学会声频工程分会, 主任委员
2016-06-09-今,国际声学与振动学会(IIAV), 会士
2014-09-24-今,中国声学学会, 常务理事
所获荣誉
(1) 中科院朱李月华优秀教师奖, 院级, 2020
(2) 北京市科学技术进步奖, 二等奖, 省级, 2020
(3) 国防科学技术进步奖, 二等奖, 部委级, 2019
(4) 国务院政府特殊津贴, 国家级, 2018
(5) 中科院优秀教师奖, , 院级, 2016
(6) 中国电子学会“优秀科技工作者”荣誉称号, , 其他, 2015
(7) 中科院朱李月华优秀教师奖, , 院级, 2014
(8) 中科院“****”终期评估“优秀”称号, , 专项, 2008
(9) 新加坡南洋理工大学举行的工程展金奖, , 其他, 2004
专利成果
[1] 李长涛, 万伊, 杨飞然, 杨军. 基于深度自注意力神经网络分类器的合成语音检测方法. 202210401440.2, 2022-04-18.
[2] 王劲夫, 杨飞然, 孙国华, 杨军. 一种多通道语音信号增强方法及系统. 2022103848638, 2022-04-13.
[3] 王泰辉, 杨飞然, 杨军. 一种低时延音频信号超定盲源分离方法及分离装置. 202210174605.7, 2022-02-24.
[4] 张哲, 杨飞然, 杨军. 一种车内抗干扰自适应路噪主动控制方法及控制系统. 202210132854X, 2022-02-14.
[5] 王泰辉, 杨飞然, 孙国华, 杨军. 基于频域卷积传递函数的多通道非负矩阵分解方法及系统. 202210031383.3, 2022-01-12.
[6] 张晗, 吴慧兰, 杨军, 程晓斌. 一种螺旋卷曲式水下吸声超表面结构. CN: CN113241052A, 2021-08-10.
[7] 孙雪聪, 贾晗, 杨军. 基于声学超材料的单通道多声源定位与分离装置及方法. CN: CN110703200B, 2021-07-30.
[8] 齐园蕾, 杨飞然, 杨军. 一种基于卡尔曼滤波的去混响方法及系统. CN: CN108172231B, 2021-07-30.
[9] 宋哲超, 余紫莹, 杨军. 一种用于声载波无线传输的自适应AC-DC转换装置及方法. CN: CN113114055A, 2021-07-13.
[10] 韩荣, 吴鸣, 杨军. 一种基于红外定位的有源头枕装置. CN: CN108710106B, 2021-04-09.
[11] 齐园蕾, 杨飞然, 杨军. 一种用于调节扬声器音量的多通道扩声系统及方法. CN: CN110830901B, 2021-03-16.
[12] 康坊, 杨飞然, 杨军. 一种低复杂度的频域盲分离方法及系统. CN: CN110010148B, 2021-03-16.
[13] 王冉, 王晓琳, 杨军. 有限元联合波叠加的浅海波导中散射声场分离方法及系统. CN: CN112415497A, 2021-02-26.
[14] 杨玉真, 毕亚峰, 贾晗, 杨军. 一种可调梯度声阻抗匹配层. CN: CN111447535B, 2021-02-09.
[15] 李楠, 杨飞然, 杨军. 一种无误差传声器的自适应主动降噪方法. CN: CN108428445B, 2021-02-09.
[16] 刘斌, 杨军, 田野, 马腾, 郑海荣. 一种用于聚焦声动力疗法的焦点位置实时监测方法. CN: CN112023284A, 2020-12-04.
[17] 阎兆立, 胡琳波, 杨军, 李清, 李夏喜, 马旭卿, 黄丽丽. 一种采用声注入的气体管道泄漏检测定位系统及方法. CN: CN110319357B, 2020-11-06.
[18] 高艳, 马一凡, 徐成, 杨军. 一种自适应相位谱时延估计方法. CN: CN110389007B, 2020-10-23.
[19] 彭锋, 尹铫, 李超, 杨婉雨, 张秀娟, 杨军, 程晓斌, 伍世桥. 水声材料三维几何形貌检测方法及系统. CN: CN111795661A, 2020-10-20.
[20] 尹铫, 彭锋, 李超, 杨婉雨, 张秀娟, 杨军, 程晓斌. 粘弹材料动态模量的测试系统和方法. CN: CN111751200A, 2020-10-09.
[21] 滕鹏晓, 吕君, 杨军, 张少杰, 韦方强. 一种土质滑坡次声信号识别与野外监测的装置及方法. CN: CN109470775B, 2020-09-08.
[22] 武帅兵, 孙国华, 杨军. 一种分布式应急广播的声场均匀化方法. CN: CN111628838A, 2020-09-04.
[23] 滕鹏晓, 吕君, 姬培锋, 杨军. 一种具有自校准功能的次声传感器. CN: CN211291720U, 2020-08-18.
[24] 滕鹏晓, 吕君, 姬培锋, 杨军. 一种次声传感器的便携式校准装置. CN: CN211291733U, 2020-08-18.
[25] 滕鹏晓, 吕君, 姬培锋, 杨军. 一种具备环境感知的数字式次声传感器. CN: CN211291574U, 2020-08-18.
[26] 滕鹏晓, 吕君, 姬培锋, 杨军. 一种动态组网的次声探测装置. CN: CN211294150U, 2020-08-18.
[27] 姬培锋, 滕鹏晓, 吕君, 杨军. 一种增强玫瑰型降风噪装置. CN: CN111458015A, 2020-07-28.
[28] 迟科勋, 吴鸣, 杨军, 贾尚帅, 韩铁礼. 一种基于遗传算法的指向性有源噪声控制系统及方法. CN: CN111445895A, 2020-07-24.
[29] 李清, 阎兆立, 陈文柳, 李夏喜, 胡琳波, 李胜国, 马旭卿, 王庆余, 江枫, 颜丹平, 黄丽丽, 杨军. 一种基于声回波信号解调的管道泄漏监测方法及系统. CN: CN108758358B, 2020-06-02.
[30] 张晗, 杨军, 毕宏振, 王目光. 一种基于轨道角动量复用技术的水声通信方法及系统. CN: CN108599871B, 2020-05-05.
[31] 高艳, 徐成, 马一凡, 崔希望, 杨军. 一种基于互相关的管道泄漏定位方法. CN: CN108332063B, 2020-04-24.
[32] 张晗, 毕宏振, 杨军, 王目光. 声学超构材料、声波振动能量收集器和电子设备. CN: CN108493330B, 2020-02-11.
[33] 韩欣宇, 吴鸣, 韩泽瑞, 杨军. 一种使用移动环形传声器阵列的声源定位方法及系统. CN: CN110596644A, 2019-12-20.
[34] 刘斌, 杨军. 一种用于振动声调制检测的最佳高频选取方法. CN: CN108828070B, 2019-12-17.
[35] 刘斌, 杨军. 一种基于多模态技术的杆状构件内部缺陷定位方法. CN: CN108802203B, 2019-12-17.
[36] 许勇, 杨军. 一种防范音频信息泄露的声学保护装置. 中国: CN209659319U, 2019-11-19.
[37] 张佳宁, 余紫莹, 许勇, 吴鸣, 杨军. 一种声波通信干扰装置及方法. CN: CN106877941B, 2019-11-19.
[38] 姬培锋, 滕鹏晓, 吕君, 杨军. 一种增强玫瑰型降风噪装置. CN: CN209525004U, 2019-10-22.
[39] 卢铃, 孙红灵, 程晓斌, 杨军. 一种电声互易装置的非互易补偿方法. CN: CN107436190B, 2019-10-22.
[40] 张晗, 杨军, 王目光, 毕宏振. 一种基于目标特性先验知识的声波检测方法及系统. CN: CN108226305B, 2019-09-24.
[41] 许勇, 杨军. 一种防范音频信息泄露的声学保护装置. CN: CN110048797A, 2019-07-23.
[42] 高艳, 崔希望, 靳伯骜, 徐成, 杨军. 一种基于声波反射的埋地管线探测装置及方法. CN: CN108333623B, 2019-07-09.
[43] 朱睿, 杨飞然, 杨军. 一种复数窄带干扰信号的频率估计及抑制装置及其方法. CN: CN106533999B, 2019-07-09.
[44] 孙红灵, 安峰岩, 程晓斌, 杨军. 一种基于双线圈单动磁体结构的惯性式激振器. CN: CN106475295B, 2019-06-18.
[45] 马龙华, 安峰岩, 孙红灵, 程晓斌, 杨军. 一种基于一体化双线圈结构的惯性式激振器. CN: CN106475294B, 2019-06-18.
[46] 安峰岩, 孙红灵, 马龙华, 程晓斌, 杨军. 一种基于风冷散热的双线圈单动磁体结构的惯性式激振器. CN: CN107029975B, 2019-05-17.
[47] 程晓斌, 孙红灵, 安峰岩, 杨军. 基于磁流体散热的双线圈单动磁体结构的惯性式激振器. CN: CN106475293B, 2019-05-17.
[48] 伍先俊, 杨军, 孙红灵. 一种水下管口外辐射噪声的测量装置和方法. CN: CN109682459A, 2019-04-26.
[49] 刘力, 蔡野锋, 吴鸣, 杨军. 一种用于抑制啸叫的扬声器阵列扩声系统及方法. CN: CN106162482B, 2019-04-02.
[50] 陈斌, 阎兆立, 程晓斌, 杨军. 一种基于金属裂纹监测的多路传感器的数据融合方法. CN: CN106198749B, 2019-03-15.
[51] 阎兆立, 田浩, 陈斌, 程晓斌, 杨军. 一种用于金属裂纹监测的声学信号识别方法. CN: CN106198765B, 2019-03-15.
[52] 彭锋, 王文彬, 石志强, 尹铫, 白国锋, 程晓斌, 杨军. 一种用于声阻抗管吸声测试的样品夹具. 中国: CN108535363A, 2018-09-14.
[53] 杨飞然, 朱睿, 朱乔茜, 杨军. 一种立体声音效增强系统. 中国: CN106572419B, 2018-08-03.
[54] 高艳, 徐成, 张双江, 杨军. 一种信号相关性应用中共振辨识和消除方法及装置. 中国: CN108344501A, 2018-07-31.
[55] 姬培锋, 胡文林, 杨军. 用于高指向性声频扬声器测量系统的声子晶体滤波装置. 中国: CN104683906B, 2018-06-05.
[56] 邓惠群, 杨军. 一种外耳声音信号传递函数的计算方法及应用. 中国: CN105323666B, 2018-05-22.
[57] 崔天昊, 程晓斌, 杨军, 吴鸣, 孙红灵, 安峰岩, 李新, 田静. 一种主动降噪系统及方法. 中国: CN105025419B, 2018-02-16.
[58] 许勇, 杨军. 一种防范手机录音和窃听的声学干扰装置. 中国: CN206962825U, 2018-02-02.
[59] 余紫莹, 吴鸣, 杨军. 一种用于主动噪声控制的声波通信系统与方法. 中国: CN107633839A, 2018-01-26.
[60] 程晓斌, 杨军, 吕亚东, 王文彬, 张纯, 巩杨军. 一种轴流散热风扇消声器. 中国: CN107435664A, 2017-12-05.
[61] 卢铃, 孙红灵, 程晓斌, 杨军. 一种用于水声低频声源测试的单端面互易装置. 中国: CN107340051A, 2017-11-10.
[62] 许勇, 杨军. 一种防范手机录音和窃听的声学干扰装置. 中国: CN107204823A, 2017-09-26.
[63] 蔡野锋, 吴鸣, 杨军. 基于均方误差最小准则的声能量对比控制方法及系统. 中国: CN103916733B, 2017-09-26.
[64] 卢铃, 孙红灵, 王文彬, 程晓斌, 杨军. 一种用于低频声源测试的双端面的力声互易装置和方法. 中国: CN106556459A, 2017-04-05.
[65] 杨军, 巩杨军, 张纯, 王文彬. 一种用于风机的进风口声源的消声装置. 中国: CN106438500A, 2017-02-22.
[66] 刘力, 蔡野锋, 吴鸣, 杨军. 一种产生均匀声场的扬声器阵列扩声系统及方法. 中国: CN106162430A, 2016.11.23.
[67] 卢铃, 孙红灵, 程晓斌, 杨军. 一种用于水声低频声源测试的单端面互易装置. 中国: CN205748625U, 2016-11-30.
[68] 田静, 程晓斌, 杨军, 王勋. 一种超声波液位探测仪和探测方法. 中国: CN105987737A, 2016-10-05.
[69] 卢铃, 孙红灵, 王文彬, 程晓斌, 杨军. 一种用于低频声源测试的双端面的力声互易装置. 中国: CN205066930U, 2016-03-02.
[70] 程晓斌, 孙红灵, 安峰岩, 杨军. 基于磁流体散热的双线圈单动磁体结构的惯性式激振器. 中国: CN205008212U, 2016-02-03.
[71] 安峰岩, 孙红灵, 马龙华, 程晓斌, 杨军. 一种基于风冷散热的双线圈单动磁体结构的惯性式激振器. 中国: CN205008213U, 2016-02-03.
[72] 马龙华, 安峰岩, 孙红灵, 程晓斌, 杨军. 一种基于一体化双线圈结构的惯性式激振器. 中国: CN204933924U, 2016-01-06.
[73] 孙红灵, 安峰岩, 程晓斌, 杨军. 一种基于双线圈单动磁体结构的惯性式激振器. 中国: CN204933923U, 2016-01-06.
[74] 孙红灵, 安峰岩, 吴鸣, 程晓斌, 杨军. 一种通风管路用主被动复合消声器. 中国: CN104165255A, 2014-11-26.
[75] 安峰岩, 孙红灵, 吴鸣, 程晓斌, 杨军. 一种用于通风管路系统的有源消声器. 中国: CN104165256A, 2014-11-26.
[76] 安峰岩, 孙红灵, 程晓斌, 杨军. 一种电动式水声发射换能器. 中国: CN104038862A, 2014-09-10.
[77] 蔡野锋, 吴鸣, 杨军. 一种能够改善音质的声场聚焦方法及系统. 中国: CN103916730A, 2014-07-09.
[78] 蔡野锋, 吴鸣, 杨军. 一种时域声能量对比控制方法和系统. 中国: CN103916810A, 2014-07-09.
[79] 张学森, 姬培锋, 许勇, 杨军. 一种在非消声水池中测量换能器阵列互辐射阻抗的方法及其系统. 中国: CN103869163A, 2014-06-18.
[80] 蒋斌, 杨军. 用于保护语言私密性的随机干扰声信号产生系统及其方法. 中国: CN102522080B, 2013.12.11.
[81] 安峰岩, 孙红灵, 吴鸣, 程晓斌, 杨军. 一种用于通风管路系统的有源消声器. 中国: CN203286198U, 2013-11-13.
[82] 孙红灵, 安峰岩, 吴鸣, 程晓斌, 杨军. 一种通风管路用主被动复合消声器. 中国: CN203286197U, 2013-11-13.
[83] 刘力, 王颖, 张鹏, 杨军. 一种基于Zigbee技术的数字无线多通道语音会议方法及装置. 中国: CN103209269A, 2013-07-17.
[84] 孙红灵, 程晓斌, 曹寅, 杨军, 田静. 一种惯性式执行器. 中国: CN103157592A, 2013-06-19.
[85] 吴鸣, 杨飞然, 杨军. 一种非平稳噪声环境下传声器阵列的语音增强方法. 中国: CN103165137A, 2013-06-19.
[86] 吴鸣, 杨军. 一种定向扬声器及其信号处理方法. 中国: CN103167376A, 2013-06-19.
[87] 马登永, 蔡野锋, 杨军. 一种数字化超指向性扬声器系统. 中国: CN103167380A, 2013-06-19.
[88] 蔡野锋, 马登永, 沐永生, 杨军. 基于四元码动态失配整形的数字扬声器驱动方法和装置. 中国: CN103152673A, 2013-06-12.
[89] 张鹏, 杨军. 无线麦克风(具备可拆卸颈环). 中国: CN302308391S, 2013-01-30.
[90] 张鹏, 杨军. 无线麦克风. 中国: CN302308394S, 2013-01-30.
[91] 杨飞然, 杨军. 一种基于时间反转的声反馈抑制方法. 中国: CN102740189A, 2012-10-17.
[92] 杨飞然, 吴鸣, 杨军. 一种基于反馈信号频谱估计的啸叫抑制方法. 中国: CN102740214A, 2012-10-17.
[93] 杨飞然, 吴鸣, 杨军. 基于回声频谱估计和语音存在概率的立体声回声抵消方法. 中国: CN102739886A, 2012-10-17.
[94] 杨飞然, 吴鸣, 杨军. 一种用于通信系统中的回声抵消方法. 中国: CN102739286A, 2012-10-17.
[95] 蒋斌, 杨军. 一种目标语音的隐私保护方法及其系统. 中国: CN102543066A, 2012-07-04.
[96] 吕亚东, 张倩, 杨军. 利用管腔耦合与管束穿孔板结合的耦合共振吸声装置. 中国: CN101650939B, 2011-11-09.
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[98] 匡正, 张维, 杨军. 一种定向声波发射阵列装置. 中国: CN102118663A, 2011-07-06.
[99] 蒋斌, 匡正, 杨军. 一种基于时间反转的声掩蔽信号产生方法. 中国: CN102110441A, 2011-06-29.
[100] 叶超, 匡正, 吴鸣, 杨军. 一种用于高指向性声频扬声器测量系统的声滤波装置. 中国: CN102075846A, 2011-05-25.
[101] 吕亚东, 张倩, 杨军. 具有复合结构的耦合共振吸声装置. 中国: CN201503698U, 2010.06.09.
[102] 张倩, 吕亚东, 杨军. 一种多腔复合吸声装置. 中国: CN201622837U, 2010-11-03.
[103] 张倩, 吕亚东, 杨军. 一种内置共振腔体的复合吸声装置. 中国: CN101727894A, 2010-06-09.
[104] 吕亚东, 张倩, 杨军. 一种具有网状结构的管束式穿孔板共振吸声装置. 中国: CN201503697U, 2010-06-09.
[105] 杨军, 张维, 吴鸣. 高声强定向声波发射的方法及其装置. 中国: CN101719368A, 2010-06-02.
[106] 吕亚东, 张 倩, 杨 军. 一种利用管腔耦合共振和管束间耦合共振的吸声装置. 中国: CN101673543, 2010-03-17.
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发表论文
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[244] 张倩, 吕亚东, 杨军. 梯形管束穿孔板吸声结构的设计与实验研究. 噪声与振动控制[J]. 2010, 29(3): http://159.226.59.140:8080/handle/311008/1816.
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[249] 张倩, 吕亚东, 杨军. 树状管束穿孔板吸声结构的设计与实验研究. 噪声与振动控制[J]. 2010, 29(2): http://ir.ioa.ac.cn/handle/311008/1592.
[250] 蔡野锋, 邱小军, 杨军. 基于时间反转的复杂声场拾声传声器阵列性能研究. 声学学报. 2010, 593-600, http://lib.cqvip.com/Qikan/Article/Detail?id=35889594.
[251] Ji, Peifeng, Gan, WoonSeng, Tan, EeLeng, Yang, Jun, IEEE. PERFORMANCE ANALYSIS ON RECURSIVE SINGLE-SIDEBAND AMPLITUDE MODULATION FOR PARAMETRIC LOUDSPEAKERS. 2010 IEEE INTERNATIONAL CONFERENCE ON MULTIMEDIA AND EXPO (ICME 2010)null. 2010, 748-753, [252] Ye, Chao, Wu, Ming, Wu, Shuaibin, Huang, Chenxi, Yang, Jun. Modeling of Parametric Loudspeakers by Gaussian-Beam Expansion Technique. JAPANESE JOURNAL OF APPLIED PHYSICS[J]. 2010, 49(7): https://www.webofscience.com/wos/woscc/full-record/WOS:000280383800076.
[253] 刘伟, 杨军. 一种简单和精确的计算高斯波束展开系数的方法. Chinese Physics Letters[J]. 2010, 27(12): http://ir.ioa.ac.cn/handle/311008/1813.
[254] 叶超, 杨军. 基于高斯束展开法的参量阵扬声器建模. Japanese Journal of Applied Physics[J]. 2010, 49(2): http://ir.ioa.ac.cn/handle/311008/1817.
[255] 张维, 匡正, 叶超, 吴鸣, 杨军. 高指向性声频声源中PVDF膜换能器的阻抗匹配. 电声技术. 2010, 30-32, http://lib.cqvip.com/Qikan/Article/Detail?id=33471509.
[256] 沐永生, 马登永, 蔡野锋, 杨军, 周建明, 柴国强. 压电扬声器的后腔设计与实验. 电声技术. 2010, 32-35, http://lib.cqvip.com/Qikan/Article/Detail?id=35889674.
[257] Mak, Cheuk Ming, Wu, Jia, Ye, Chao, Yang, Jun. Flow noise from spoilers in ducts. JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA[J]. 2009, 125(6): 3756-3765, https://www.webofscience.com/wos/woscc/full-record/WOS:000266667400033.
[258] Ji, Peifeng, Yang, Jun, Gan, WoonSeng. The Investigation of Localized Sound Generation Using Two Ultrasound Beams. IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL[J]. 2009, 56(6): 1282-1287, https://www.webofscience.com/wos/woscc/full-record/WOS:000266163800020.
[259] Ma, Dengyong, Yang, Jun. Optimal Time-Reversal Focusing by an Iterative Least-Squares Method. JAPANESE JOURNAL OF APPLIED PHYSICS[J]. 2009, 48(7): https://www.webofscience.com/wos/woscc/full-record/WOS:000268546200038.
[260] Qiu, Bo, Xu, Yong, Lu, Yadong, Yang, Jun. Estimation of Interchannel Time Difference in Frequency Subbands Based on Nonuniform Discrete Fourier Transform. EURASIP JOURNAL ON AUDIO SPEECH AND MUSIC PROCESSING[J]. 2008, https://www.webofscience.com/wos/woscc/full-record/WOS:000207770400001.
[261] Ye, Chao, Kuang, Zheng, Ji, Peifeng, Yang, Jun. Generation of Audible Sound from Two Ultrasonic Beams with Dummy Head. JAPANESE JOURNAL OF APPLIED PHYSICS[J]. 2008, 47(5): 4333-4335, https://www.webofscience.com/wos/woscc/full-record/WOS:000256462700116.
[262] Qiu, Bo, Xu, Yong, Lu, Yadong, Yang, Jun. Estimation of Interchannel Time Difference in Frequency Subbands Based on Nonuniform Discrete Fourier Transform. EURASIP JOURNAL ON AUDIO SPEECH AND MUSIC PROCESSING[J]. 2008, https://doaj.org/article/08f9641b1954408489f130a3fab13591.
[263] Ji, Peifeng, Yang, Jun, Tian, Jing. A Fast Calculation Method for the Scattered Sound Fields from Two Sound Beams Using the Gaussian-Beam Expansion Technique. JAPANESE JOURNAL OF APPLIED PHYSICS[J]. 2008, 47(5): 4253-4256, https://www.webofscience.com/wos/woscc/full-record/WOS:000256462700098.
[264] Jun Yang. Rapid calculations of the scattered sound fields generated by two sound beams. Japanese Journal of Applied Physics. 2007, [265] 马登永, 杨克虎, 杨军. 利用无线传感器网络实现运动声源的定位与跟踪. 声学技术[J]. 2007, 26(5): 1024-1025, http://lib.cqvip.com/Qikan/Article/Detail?id=25896095.
[266] 李晓东, 杨军, 李双田, 邱小军, 沈勇, 吴玺宏, 谢菠荪, 田静. 通信声学:过去、现在和未来. 声学技术[J]. 2007, 26(5): 967-, http://lib.cqvip.com/Qikan/Article/Detail?id=25896046.
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发表著作
(1) 声学学科现状以及未来发展趋势, 科学出版社, 2021-06, 第 3 作者
科研活动
科研项目
( 1 ) 某项目, 主持, 国家级, 2011-06--2013-12
( 2 ) 数字无线音频传输系统技术开发, 主持, 研究所(学校), 2011-11--2012-12
( 3 ) 智能扬声器技术开发, 主持, 研究所(学校), 2013-01--2014-12
( 4 ) 噪声与振动, 主持, 国家级, 2013-01--2013-12
( 5 ) 音频通信和声学感知 1, 参与, 市地级, 2011-07--2015-12
( 6 ) 新型压电结构作动器技术, 参与, 国家级, 2012-01--2015-12
( 7 ) 有源控制元器件技术, 参与, 国家级, 2011-01--2015-12
( 8 ) 有源控制技术研究, 参与, 部委级, 2011-07--2015-12
( 9 ) 基于F0型DSP平台的音效增强技术, 主持, 研究所(学校), 2014-10--2015-06
( 10 ) 海信院减振降噪技术, 主持, 部委级, 2016-01--2017-12
( 11 ) 智能系统集成研究, 主持, 部委级, 2016-01--2017-12
( 12 ) 定向式应急警报分发技术及装备, 主持, 国家级, 2017-07--2020-12
( 13 ) 机场驱鸟系统技术研究, 主持, 部委级, 2019-01--2021-12
( 14 ) CPS融合的工控异常检测技术与系统, 主持, 部委级, 2019-01--2023-12
参与会议
(1)Tracking analysis and improvement of broadband Kalman filter using the two-echo-path model as a rapid tunnel 2018-09-17
(2)A fast affine projection algorithm based on a modified Toeplitz matrix 2017-12-12
(3)A Frequency-Domain Adaptive Feedback Cancellation Algorithm Based on Convex Combination 2017-12-12
(4)Robust Feature Extraction for Face Recognition Based on Ultrasonic Sensing 2017-12-04
(5)A preliminary experimental study of parameters' effects on parametric loudspeaker 2017-11-07
(6)鲁棒性个人音频技术的研究进展 2017电声技术国际研讨会 2017-11-04
(7)Penetration-free acoustic data transmission 2017-08-29
(8)Intelligibilities of Mandarin Chinese Sentences with Spectral “Holes” 2017-08-23
(9)AN ULTRASONIC WIRELESS DATA FEEDTHROUGH SYSTEM BASED ON FIELD PROGRAMMABLE GATE ARRAY 2017-07-25
(10)Variable Step-Size Matrix for the Improved Multiband-Structured Subband Adaptive Filter 2016-11-07
(11)Intelligibilities of Filtered Chinese Mandarin Sentences 2016-11-07
(12)Compressed sensing based multi-zone sound field reproduction 2016-08-21
(13)A five-microphone method to measure the reflection coefficients of headsets 2016-08-21
(14)Robust personal audio reproduction based on acoustic transfer function modelling 2016-07-18
(15)扬声器空间辐射特性测量技术 第五届电声技术国际研讨会(ISEAT2015) 2015-11-14
(16)Acoustic data transmission in air using transducer array 2015-07-15
(17)Aerial acoustic communication for long-range applications based on single-carrier frequency domain equalization 2015-07-14
(18)Robust time-domain acoustic contrast control design under uncertainties in the frequency response of the loudspeakers Cai Yefeng,Liu Li,Wu Ming,Yang Jun, 2014-11-17
(19)Efficient implementation of the decoder for tail biting convolutional Li Dongdong Yang Jun 2014-08-08
(20)A variable coefficients adaptive iir notch filter for bass enhancement Zhu Rui,Yang Feiran,Yang Jun, 2014-07-15
(21)Simultaneous detection and analysis of reed vibration and sound of sheng pipes Kuang Wei,Leistner Philip,Angster Judit,Dubovski Zlatko,Miklos Andras,Yang Jun 2014-07-15
(22)Sound reinforcement technology based on sound field reconstruction with energy contrast control Liu Li,Cai Yefeng,Wu Ming,Yang Jun, 2014-07-15
(23)An investigation of parametric array loudspeakers for active noise control in a L-shaped duct Wu Shuaibing,Wu Ming,Yang Jun 2014-07-15
(24)A novel method for measuring acoustic radiation fields of subwoofers based on non-free-field aspheric measurements Zhang Peng,Kuang Zheng,Wu Ming,Jun Y 2014-07-15
(25)Loudness effect of the different tones on the timbre subjective perception experiment of erhu Zhu Siyu,Ji Peifeng,Kuang Wei,Yang Jun 2014-07-15
(26)A robust variable step-size frequency-domain adaptive filter algorithm for acoustic echo cancellation Yang Feiran,Wu Ming,Ji Peifeng,Yang Jun 2014-07-15
(27)Parametric acoustic array in air:from theory to application Yang Jun,Tian Jing,Gan Woon Seng 2014-07-15
(28)A model of acoustical right-angle bend (with metamaterials) Bi Yafeng,Hu Wenlin,Yang Jun, 2014-07-15
(29)Simulating External-Ear Transfer Functions Deng Huiqun,Yang Jun 2014-07-15
(30)The Research of Controlling Loudness in the Timbre Subjective Perception Experiment of Sheng Zhu S,Ji P,Kuang W,Yang J 2014-07-08
(31)Multipoint linearization of parametric loudspeakers using volterra filters Mu Yongsheng,Ji Peifeng,Ji Wei,Wu Ming,Yang Jun, 2014-04-03
(32)Microperforation for sound absorption and noise reduction 杨军 2013-04-23
(33)The upper bound of step size for FDPANC algorithm 吴鸣 2012-08-19
(34)Actively Created Quiet Zones by Parametric Loudspeaker as Control Sources in the Sound Field 叶超 2012-05-21
(35)Realization of Sound Reproduction in a Specified Region Based on Transfer Function Interpolation. Jie Cao 2011-06-21
(36)Coherence Analysis of Difference Frequency Sounds Generated by Multiple Pair Primary Waves Dengyong Ma 2009-11-01
(37)Deverlopment of a simple and accurate approximation method for the gaussian beam expansion technique Wei Liu 2008-06-27
(38)Study of the nonlinear acoustic field produced by two uniform pistons Peifeng Ji 2007-08-05
(39)IEEE International Conference on Multimedia and Expo Peifeng Ji 2007-07-02
(40)Target oriented acoustic radiation generation techniques for the sound reproduction Jun Yang 2007-06-01