彭高亮,男,漢族,1979年生,哈爾濱工業大學教授、博士生導師,機電控制及自動化系主任。
基本介紹
- 中文名:彭高亮
- 學位/學歷:博士
- 職業:教師
- 專業方向:特種機器人和特種車輛裝備技術研究
- 任職院校:哈爾濱工業大學
個人經歷,主講課程,研究方向,學術成果,榮譽獎項,
個人經歷
工作經歷
時間工作經歷
2007年8月—至今
哈工大 機電工程學院機電控制府戀料凶及自動化系 教師
2011年10月—2013年5月哈工大 機電工程學院機電控制及自動化系副主任章霉笑
2013年5月—2015年8月哈工大 機電工程學院 院長助理
2013年4月—至今哈工大機械電子工程學科 博士生導師
2014年12月—至今哈工大 機電工程學院機電控制及自動化系主 任
教育經歷
1997年9月— 2001年7月 哈爾濱工業大學 機械製造及其自動化專業 本科
2003年9月— 2007年3月 哈爾濱工業大學 航空宇航製造工程專業 博士
2007年9月— 2012年7月 哈爾濱工業大學 生物計算研究中心 博士後
主要任職
IEEE會員
中國宇航協會會員
主講課程
本科生專業基礎課《機電系統控制基礎》
本科生創新研修課《多機器人協作探索技術》
研究方向
主要從事特種祖捉朵機器人和特種車輛裝備技術研究,涉及新型高機動雷達裝備、新型多平台飛彈發射裝備、新型救援保障裝備、專用特種車載平台等領域。研究方向包括機器人技術、新型機構及控制技術、智慧型健康監測與狀態評估技術請欠拘、機械與機構動力學、振動理論及套用技術、智慧型控制與驅動技術、智慧型感測與監測技術等。
主要研究方向:
(1) 數位化設計與製造技術
(2) 機器人伺服控制技術
(3) 特種裝備新型機構及控制技術
(4) 特種裝備智慧型監測與狀態評估技術
學術成果
主持國家自然科學基金3項、國家863計畫和國家04專項各1項,承擔了30餘項國防領域的預研課題和型號產品研製。近年總經費約5000萬元。來共發表學術論文70多篇,其中SCI來源期刊30餘篇,總計引用1000餘次,單篇最高引辨嘗巴用193次,ESI高被引論文3篇(熱點論文1篇),申請發明專利23項,授權11項。
科研項目
作為第一負責人主持項目如下:
國家自然科學基金面上項目,面向複雜服役環境的大型雷達天線自動對接方法與關鍵技術研究,2019/01-2022/12,60萬元。
國家自然科學基金面上項目,深井極端工況下機械密封磨損過程的多尺度模擬仿真與預測,2013/01-2016/12,80萬元。
國家 "863"計畫,面向野外環境的四足仿生機器人實用技術研發,2015/01-2017/12,83萬元。
“高檔數控工具機與基礎製造裝備”專項,大型金屬殼段快速研製生產線,2016/01-2018/12 ,209.98萬元。
國家自然科學基金(青年),細觀尺度下大型構件碰撞損傷變形過程模擬及可視化方法研究,2010/01-2012/12,20萬元。
中國航天科技集團聯合創新項目,壓力測量裝置的可靠性研究,2010/01-2011/12,88萬元。
中電集團第三十八研究所,天線陣面自動對接驗證系統,2014/07-2014/12。
中電集團第三十八研究所,XXX天線快速自動折展系統,2015/03-2016/12。
中電集團第三十八研究所,XXX大型天線自動對接系統,2015/05-2016/12。
中電集團第三十八研究所XXX天線陣面自動展開系統,2016/03-2017/10。
中電集團第三十八研究所,XXX精密二維轉台 ,2017/03-2017/08。
航天一院18所,伺服機構大尺寸組件高可靠性裝配系統,2016/01-2017/12。
航天二院23所,大型雷達天線自動對整厚接系統研製,2018/01-2019/12。
航天一院15所,高可靠重載升降裝置技術研究,2015/01- 2015/12。
航天一院15所,車輛多特徵變形偽裝結構技術研究,2018/01- 2018/12。
航天一院15所,大型可擴展廂體技術研究,2018/01- 2018/12。
航天一院15所,基於動鉸點的發射裝置快速起豎技術研究,2018/12- 2019/12。
航天一院15所,DQFS平台野外遮障快速架撤機構技術研究,2018/12- 2019/12。
航天二院23所,XXX高機動雷勸微朵戶達研製,2018/12- 2019/12。
航天二院23所,高精密二級重載電動執行機構研製,2019/03- 2019/12。
航天一院519廠,40噸輪式裝備搶救搶修車研製,2019/04- 2019/10。
發表論文
A.學術論文:
2020年:
Chen Y, Peng G, Zhu Z, et al. A novel deep learning method based on attention mechanism for bearing remaining useful life prediction[J]. Applied Soft Computing, 2020, 86: 105919.
Fengyu Xu, Fanchang Meng, Quansheng Jiang, Gaoliang Peng,Grappling claws for a robot to climb rough wall surfaces: Mechanical design, grasping algorithm, and experiments,Robotics and Autonomous Systems, 2020, 128:103501.
2019年:
Zhang Z, Wang W, Chen Y, et al. Prediction of Human Actions in Assembly Process by a Spatial-Temporal End-to-End Learning Model[R]. SAE Technical Paper, 2019.
Zhang L, Shan X, Liu Y, et al. Reducing the drag of underwater vehicle in the shape of a small boat by using piezoelectric transducers[C]//IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2019, 531(1): 012090.
Zhang C, Shan X, Peng G, et al. Modeling and simulation of the structural and electrical characteristics for a polarized piezoelectric sensor actuator[C]//IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2019, 531(1): 012053.
Wen S, Qi H, Niu Z, et al. Online estimation of boundary heat flux of participating media by an extented Kalman filtering technique[C]//Proceedings of the 9th International Symposium on Radiative Transfer, RAD-19. Begel House Inc., 2019.
Liu S, Peng G, Gao H. Dynamic modeling and terminal sliding mode control of a 3-DOF redundantly actuated parallel platform[J]. Mechatronics, 2019, 60: 26-33.
Zhu Z, Peng G, Chen Y, et al. A convolutional neural network based on a capsule network with strong generalization for bearing fault diagnosis[J]. Neurocomputing, 2019, 323: 62-75.【ESI高被引論文】
2018年:
Peng G, Sun Y, Xu S. Development of an Integrated Laser Sensors Based Measurement System for Large-Scale Components Automated Assembly Application[J]. IEEE Access, 2018, 6: 45646-45654.
Zhang W, Li C, Peng G, et al. A deep convolutional neural network with new training methods for bearing fault diagnosis under noisy environment and different working load[J]. Mechanical Systems and Signal Processing, 2018, 100: 439-453.[SCI]【ESI熱點論文】
[25]Chen Y, Peng G, Xie C, et al. ACDIN: Bridging the gap between artificial and real bearing damages for bearing fault diagnosis[J]. Neurocomputing, 2018, 294: 61-71.
2017年:
Zhang W, Peng G, Li C, et al. A New Deep Learning Model for Fault Diagnosis with Good Anti-Noise and Domain Adaptation Ability on Raw Vibration Signals[J]. Sensors, 2017, 17(2): 425.[SCI]【ESI高被引論文】
Li C, Zhang W, Peng G, et al. Bearing Fault Diagnosis Using Fully-Connected Winner-Take-All Autoencoder[J]. IEEE Access, 2017.[SCI]
Zhang W, Peng G, Li C. Bearings fault diagnosis based on convolutional neural networks with 2-D representation of vibration signals as input[C]//MATEC Web of Conferences. EDP Sciences, 2017, 95: 13001.
Zhang W, Peng G, Li C. Rolling element bearings fault intelligent diagnosis based on convolutional neural networks using raw sensing signal[M]//Advances in Intelligent Information Hiding and Multimedia Signal Processing. Springer, Cham, 2017: 77-84.
2016年:
Gaoliang Peng, Yu Sun, Rui Han, Chuanhao Li, Shaohui Liu. A measuring method for large antenna assembly using laser and vision guiding technology. Measurement, Volume 92, October 2016, pp. 400-412 [SCI]
Gaoliang Peng, Zhujun Zhang, Weiquan Li. Computer vision algorithm for measurement and inspection of O-rings. Measurement, Volume 94, December 2016,pp. 828-836[SCI]
Gaoliang Peng Yu Sun Rui Han Chuanhao Li , (2016),"An automated assembly technology for large mobile radar antenna", Assembly Automation, Vol.36 Iss 4 pp. 429-438[SCI]
2016年以前:
Peng Gaoliang, Wang Gongdong, Liu Wenjian, Yu Haiquan. A desktop virtual reality-based interactive modular fixture configuration design system. Computer-Aided Design. 2010, 42(5): 432-444. [SCI]
Peng Gaoliang Chen Guangfeng, Wu Chong, Xin Hou,Jiang Yang. Applying CBR and RBR to develop a VR based integrated system for machining fixture design, Expert Systems with Applications. 2011, 38 (1): 26-38. [SCI]
Peng Gaoliang, Xin Hou, Chong Wu, et al. Fast collision detection approach to facilitate interactive modular fixture assembly design in a virtual environment. International Journal of Advanced Manufacturing Technology. 2010, 46:315-328. [SCI]
Peng Gaoliang, Chen Guangfeng, Liu Xinhua. Using CBR to develop a VR based integrated system for machining fixture design, Assembly Automation. 2010 ,30 (3): 228-239 [SCI]
Peng Gaoliang, Yu Haiquan, Liu Xinhua. A desktop virtual reality-based integrated system for complex product maintainability design and verification, Assembly Automation. 2010, 30(4):333–344 [SCI]
Peng Gaoliang, Gao Jun, He Xu, Towards the development of a desktop virtual reality-based system for modular fixture configuration design, Assembly Automation. Vol.29, No.1, 2009:19–31 [SCI].
Peng Gaoliang, He Xu, Yu Haiquan, Precise manipulation approach to facilitate interactive modular fixture assembly design in VE, Assembly Automation. Vol.28, No.3, 2008: 216-224 [SCI]
Gaoliang Peng, Xin Hou, Jun Gao and Debin Cheng, A visualization system for integrating maintainability design and evaluation at product design stage. International Journal of Advanced Manufacturing Technology, 2012, 61(1-4), pp 269-284
Gaoliang Peng, Yang Jiang, Jie Xu, Xin Li. A collaborative manufacturing execution platform for space product development enterprise. International Journal of Advanced Manufacturing Technology. 2012, 62(5-8): 443-455
Peng Gaoliang, He Jun, Yang Shaopeng, Application of the fiber-optic distributed temperature sensing for monitoring the liquid level of producing oil wells, Measurement, 2014,58:130-137 [SCI IF: 1.526 ]
Li Xin, and Peng Gaoliang. Research on leakage prediction calculation method for static seal ring in underground equipments. Journal of Mechanical Science and Technology, 2016, 30 (6): 2635-2641
Li Xin, Peng Gaoliang, Li Zhe,Prediction of seal wear with thermal–structural coupled finite element method, Finite Elements in Analysis and Design, 2014,83: 10-21 [SCI IF: 1.595 ]
Zhang Xutang, Peng Gaoliang, Zhuang Ting, Hou Xin, knowledge reuse-based computer-aided fixture design framework, Assembly Automation, 2014 34(2):169-181 [SCI IF: 0.711 ]
Xinhua Liu, Gaoliang Peng, Xiumei Liu and Youfu Hou. Disassembly sequence planning approach for product virtual maintenance based on improved max–min ant system. International Journal of Advanced Manufacturing Technology, 59(5-8), pp 829-839, 2012 [SCI]
Xinhua Liu, Gaoliang Peng, Xiumei Liu. Development of a collaborative virtual maintenance environment with agent technology. Journal of Manufacturing Systems, 29(4), pp 173-181, 2010/10 [SCI]
Jiang Yang, Peng Gaoliang, Liu Wenjian. Research on ontology-based integration of product knowledge for collaborative manufacturing. International Journal of Advanced Manufacturing Technology. 2010, 49 (9-12): 1209-1221 [SCI]
Yu Haiquan, Peng Gaoliang, Liu Wenjian. A practical method for measuring product maintainability in a virtual environment. Assembly Automation, 31(1), pp 53-61, 2011 [SCI]
Xu He, Gao Xiaozhi, Peng Gaoliang. Optimization of Reconfigurable Mobile Robots Based on Modified Harmony Search Method. Bio-inspired Computing: Theory and Applications special issue for Transactions of the Institute of Measurement and Control. [SCI]
Bi Feng-Yang, Jin Tian-Guo, Peng Gaoliang, Liu Wen-Jian. A rapid design and design knowledge management system for mould of autoclave forming resin matrix composite components. Polymers and Polymer Composites, 20(1-2), pp 183-190, 2012 [SCI]
B. 發明專利:
[1] 彭高亮, 孫瑜, 薛淵. 一種用於雷達天線快速架設與撤收的支撐臂折展機構. 專利號: ZL 201510939297.2(授權日期:2018-04-03)
[2] 彭高亮, 孫瑜, 薛淵. 一種車載外輻射源雷達天線骨架折展機構. 專利號: ZL 201510939342.4(授權日期:2018-04-03)
[3] 彭高亮, 薛淵, 孫瑜. 一種可收攏式雷達天線骨架及其工作方法. 專利號: ZL 201510939318.0(授權日期:2018-05-22)
[4] 彭高亮, 韓銳, 薛淵, 孫瑜. 一種基於導軌滑塊組合的平面軸承機構. 專利號: ZL 201510939320.8(授權日期:2018-01-05)
[5] 彭高亮, 薛淵, 韓銳, 孫瑜. 一種適用於雷達天線邊塊的三自由度調姿裝置及調姿方法. 專利號: ZL 201510939299.1(授權日期:2018-07-03)
[6] 彭高亮, 薛淵, 邴宇涵, 孫瑜. 一種雷達天線陣面抗風穩定裝置. 專利號: ZL 201510960801.7(授權日期:2017-12-26)
[7] 彭高亮, 薛淵, 秦繼豪, 趙小力, 孟國軍. 一種機械自鎖式雷達天線舉升機構. 專利號: ZL 201510963114.0(授權日期:2018-02-02)
[8] 彭高亮, 薛淵, 何俊, 李鑫. 一種天線陣面自動對接調節平台. 專利號: ZL 201510967722.9(授權日期:2017-12-15)
[9] 彭高亮, 薛淵, 何俊, 李鑫. 一種水平方向及偏航調整的三自由度並聯調姿平台. 專利號: ZL 201510968081.9(授權日期:2017-09-12)
[10] 彭高亮, 薛淵, 劉世偉, 趙傑. 一種伸縮式雷達天線背架. 專利號: ZL 201510980695.9(授權日期:2018-04-03)
[11] 彭高亮, 薛淵, 何俊, 朱智宇. 一種用於雷達陣子旋轉鎖定的裝置及其工作方法. 專利號: ZL 201710535582.7(授權日期:2019-07-05)
[12] 劉世偉, 薛淵, 彭高亮, 蘇凱昕, 許世龍. 一種新型模擬重載雷達直線導軌副壽命對比試驗裝置. 專利號: ZL 201810019832.6(授權日期:2019-05-28)
[13] 薛淵, 毛道庸, 彭高亮, 孫瑜, 劉世偉. 一種折展天線支撐臂. 專利號: ZL 201810079889.5(授權日期:2019-10-18)
[14] 彭高亮, 薛淵, 何俊, 吉孟宇. 一種大行程可調平的抬升機構. 專利號: ZL 201710535617.7(申請日期:2017-07-04)
[15] 孫瑜, 彭高亮, 薛淵, 朱智宇. 一種雷達天線陣子旋轉機構. 專利號: ZL 201710535606.9(申請日期:2017-07-04)
[16] 彭高亮, 薛淵, 孫瑜, 劉世偉, 許世龍. 一種用於大型設備組裝的精確吊裝系統及工作方法. 專利號: ZL 201810079878.7(申請日期:2018-01-27)
[17] 高會軍, 彭高亮, 陳宏鈞, 劉世偉. 一種空間六自由度車載雷達天線位姿偏差測量及對接方法. 專利號: ZL 201811278195.0(申請日期:2018-10-30)
[18] 彭高亮, 高會軍, 薛淵, 劉世偉. 一種雷達天線陣面鎖緊裝置及鎖緊方法. 專利號: ZL 201811278069.5(申請日期:2018-10-30)
[19] 薛淵, 高會軍, 彭高亮, 劉世偉. 一種雷達天線陣面對接穩定裝置及方法. 專利號: ZL 201811279676.3(申請日期:2018-10-30)
[20] 彭高亮, 薛淵, 劉世偉, 高會軍. 一種雷達天線對接互鎖裝置及方法. 專利號: ZL 201811279842.X(申請日期:2018-10-30)
[21] 高會軍, 彭高亮, 許世龍, 劉世偉. 一種雷達天線陣面變形測量系統及方法. 專利號: ZL 201811278134.4(申請日期:2018-10-30)
[22] 薛淵, 高會軍, 劉世偉, 彭高亮, 許世龍. 一種雷達天線後擋器限位機構. 專利號: ZL 201811278120.2(申請日期:2018-10-30)
[23]段從繁, 彭高亮, 薛淵, 劉世偉. 一種大型起豎裝置用間隙自適應重載直線導軌副. 專利號: ZL 201910066734.2(申請日期:2019-01-24)
榮譽獎項
獲黑龍江省自然科學二等獎和科技進步二等獎各1項。
“高檔數控工具機與基礎製造裝備”專項,大型金屬殼段快速研製生產線,2016/01-2018/12 ,209.98萬元。
國家自然科學基金(青年),細觀尺度下大型構件碰撞損傷變形過程模擬及可視化方法研究,2010/01-2012/12,20萬元。
中國航天科技集團聯合創新項目,壓力測量裝置的可靠性研究,2010/01-2011/12,88萬元。
中電集團第三十八研究所,天線陣面自動對接驗證系統,2014/07-2014/12。
中電集團第三十八研究所,XXX天線快速自動折展系統,2015/03-2016/12。
中電集團第三十八研究所,XXX大型天線自動對接系統,2015/05-2016/12。
中電集團第三十八研究所XXX天線陣面自動展開系統,2016/03-2017/10。
中電集團第三十八研究所,XXX精密二維轉台 ,2017/03-2017/08。
航天一院18所,伺服機構大尺寸組件高可靠性裝配系統,2016/01-2017/12。
航天二院23所,大型雷達天線自動對接系統研製,2018/01-2019/12。
航天一院15所,高可靠重載升降裝置技術研究,2015/01- 2015/12。
航天一院15所,車輛多特徵變形偽裝結構技術研究,2018/01- 2018/12。
航天一院15所,大型可擴展廂體技術研究,2018/01- 2018/12。
航天一院15所,基於動鉸點的發射裝置快速起豎技術研究,2018/12- 2019/12。
航天一院15所,DQFS平台野外遮障快速架撤機構技術研究,2018/12- 2019/12。
航天二院23所,XXX高機動雷達研製,2018/12- 2019/12。
航天二院23所,高精密二級重載電動執行機構研製,2019/03- 2019/12。
航天一院519廠,40噸輪式裝備搶救搶修車研製,2019/04- 2019/10。
發表論文
A.學術論文:
2020年:
Chen Y, Peng G, Zhu Z, et al. A novel deep learning method based on attention mechanism for bearing remaining useful life prediction[J]. Applied Soft Computing, 2020, 86: 105919.
Fengyu Xu, Fanchang Meng, Quansheng Jiang, Gaoliang Peng,Grappling claws for a robot to climb rough wall surfaces: Mechanical design, grasping algorithm, and experiments,Robotics and Autonomous Systems, 2020, 128:103501.
2019年:
Zhang Z, Wang W, Chen Y, et al. Prediction of Human Actions in Assembly Process by a Spatial-Temporal End-to-End Learning Model[R]. SAE Technical Paper, 2019.
Zhang L, Shan X, Liu Y, et al. Reducing the drag of underwater vehicle in the shape of a small boat by using piezoelectric transducers[C]//IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2019, 531(1): 012090.
Zhang C, Shan X, Peng G, et al. Modeling and simulation of the structural and electrical characteristics for a polarized piezoelectric sensor actuator[C]//IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2019, 531(1): 012053.
Wen S, Qi H, Niu Z, et al. Online estimation of boundary heat flux of participating media by an extented Kalman filtering technique[C]//Proceedings of the 9th International Symposium on Radiative Transfer, RAD-19. Begel House Inc., 2019.
Liu S, Peng G, Gao H. Dynamic modeling and terminal sliding mode control of a 3-DOF redundantly actuated parallel platform[J]. Mechatronics, 2019, 60: 26-33.
Zhu Z, Peng G, Chen Y, et al. A convolutional neural network based on a capsule network with strong generalization for bearing fault diagnosis[J]. Neurocomputing, 2019, 323: 62-75.【ESI高被引論文】
2018年:
Peng G, Sun Y, Xu S. Development of an Integrated Laser Sensors Based Measurement System for Large-Scale Components Automated Assembly Application[J]. IEEE Access, 2018, 6: 45646-45654.
Zhang W, Li C, Peng G, et al. A deep convolutional neural network with new training methods for bearing fault diagnosis under noisy environment and different working load[J]. Mechanical Systems and Signal Processing, 2018, 100: 439-453.[SCI]【ESI熱點論文】
[25]Chen Y, Peng G, Xie C, et al. ACDIN: Bridging the gap between artificial and real bearing damages for bearing fault diagnosis[J]. Neurocomputing, 2018, 294: 61-71.
2017年:
Zhang W, Peng G, Li C, et al. A New Deep Learning Model for Fault Diagnosis with Good Anti-Noise and Domain Adaptation Ability on Raw Vibration Signals[J]. Sensors, 2017, 17(2): 425.[SCI]【ESI高被引論文】
Li C, Zhang W, Peng G, et al. Bearing Fault Diagnosis Using Fully-Connected Winner-Take-All Autoencoder[J]. IEEE Access, 2017.[SCI]
Zhang W, Peng G, Li C. Bearings fault diagnosis based on convolutional neural networks with 2-D representation of vibration signals as input[C]//MATEC Web of Conferences. EDP Sciences, 2017, 95: 13001.
Zhang W, Peng G, Li C. Rolling element bearings fault intelligent diagnosis based on convolutional neural networks using raw sensing signal[M]//Advances in Intelligent Information Hiding and Multimedia Signal Processing. Springer, Cham, 2017: 77-84.
2016年:
Gaoliang Peng, Yu Sun, Rui Han, Chuanhao Li, Shaohui Liu. A measuring method for large antenna assembly using laser and vision guiding technology. Measurement, Volume 92, October 2016, pp. 400-412 [SCI]
Gaoliang Peng, Zhujun Zhang, Weiquan Li. Computer vision algorithm for measurement and inspection of O-rings. Measurement, Volume 94, December 2016,pp. 828-836[SCI]
Gaoliang Peng Yu Sun Rui Han Chuanhao Li , (2016),"An automated assembly technology for large mobile radar antenna", Assembly Automation, Vol.36 Iss 4 pp. 429-438[SCI]
2016年以前:
Peng Gaoliang, Wang Gongdong, Liu Wenjian, Yu Haiquan. A desktop virtual reality-based interactive modular fixture configuration design system. Computer-Aided Design. 2010, 42(5): 432-444. [SCI]
Peng Gaoliang Chen Guangfeng, Wu Chong, Xin Hou,Jiang Yang. Applying CBR and RBR to develop a VR based integrated system for machining fixture design, Expert Systems with Applications. 2011, 38 (1): 26-38. [SCI]
Peng Gaoliang, Xin Hou, Chong Wu, et al. Fast collision detection approach to facilitate interactive modular fixture assembly design in a virtual environment. International Journal of Advanced Manufacturing Technology. 2010, 46:315-328. [SCI]
Peng Gaoliang, Chen Guangfeng, Liu Xinhua. Using CBR to develop a VR based integrated system for machining fixture design, Assembly Automation. 2010 ,30 (3): 228-239 [SCI]
Peng Gaoliang, Yu Haiquan, Liu Xinhua. A desktop virtual reality-based integrated system for complex product maintainability design and verification, Assembly Automation. 2010, 30(4):333–344 [SCI]
Peng Gaoliang, Gao Jun, He Xu, Towards the development of a desktop virtual reality-based system for modular fixture configuration design, Assembly Automation. Vol.29, No.1, 2009:19–31 [SCI].
Peng Gaoliang, He Xu, Yu Haiquan, Precise manipulation approach to facilitate interactive modular fixture assembly design in VE, Assembly Automation. Vol.28, No.3, 2008: 216-224 [SCI]
Gaoliang Peng, Xin Hou, Jun Gao and Debin Cheng, A visualization system for integrating maintainability design and evaluation at product design stage. International Journal of Advanced Manufacturing Technology, 2012, 61(1-4), pp 269-284
Gaoliang Peng, Yang Jiang, Jie Xu, Xin Li. A collaborative manufacturing execution platform for space product development enterprise. International Journal of Advanced Manufacturing Technology. 2012, 62(5-8): 443-455
Peng Gaoliang, He Jun, Yang Shaopeng, Application of the fiber-optic distributed temperature sensing for monitoring the liquid level of producing oil wells, Measurement, 2014,58:130-137 [SCI IF: 1.526 ]
Li Xin, and Peng Gaoliang. Research on leakage prediction calculation method for static seal ring in underground equipments. Journal of Mechanical Science and Technology, 2016, 30 (6): 2635-2641
Li Xin, Peng Gaoliang, Li Zhe,Prediction of seal wear with thermal–structural coupled finite element method, Finite Elements in Analysis and Design, 2014,83: 10-21 [SCI IF: 1.595 ]
Zhang Xutang, Peng Gaoliang, Zhuang Ting, Hou Xin, knowledge reuse-based computer-aided fixture design framework, Assembly Automation, 2014 34(2):169-181 [SCI IF: 0.711 ]
Xinhua Liu, Gaoliang Peng, Xiumei Liu and Youfu Hou. Disassembly sequence planning approach for product virtual maintenance based on improved max–min ant system. International Journal of Advanced Manufacturing Technology, 59(5-8), pp 829-839, 2012 [SCI]
Xinhua Liu, Gaoliang Peng, Xiumei Liu. Development of a collaborative virtual maintenance environment with agent technology. Journal of Manufacturing Systems, 29(4), pp 173-181, 2010/10 [SCI]
Jiang Yang, Peng Gaoliang, Liu Wenjian. Research on ontology-based integration of product knowledge for collaborative manufacturing. International Journal of Advanced Manufacturing Technology. 2010, 49 (9-12): 1209-1221 [SCI]
Yu Haiquan, Peng Gaoliang, Liu Wenjian. A practical method for measuring product maintainability in a virtual environment. Assembly Automation, 31(1), pp 53-61, 2011 [SCI]
Xu He, Gao Xiaozhi, Peng Gaoliang. Optimization of Reconfigurable Mobile Robots Based on Modified Harmony Search Method. Bio-inspired Computing: Theory and Applications special issue for Transactions of the Institute of Measurement and Control. [SCI]
Bi Feng-Yang, Jin Tian-Guo, Peng Gaoliang, Liu Wen-Jian. A rapid design and design knowledge management system for mould of autoclave forming resin matrix composite components. Polymers and Polymer Composites, 20(1-2), pp 183-190, 2012 [SCI]
B. 發明專利:
[1] 彭高亮, 孫瑜, 薛淵. 一種用於雷達天線快速架設與撤收的支撐臂折展機構. 專利號: ZL 201510939297.2(授權日期:2018-04-03)
[2] 彭高亮, 孫瑜, 薛淵. 一種車載外輻射源雷達天線骨架折展機構. 專利號: ZL 201510939342.4(授權日期:2018-04-03)
[3] 彭高亮, 薛淵, 孫瑜. 一種可收攏式雷達天線骨架及其工作方法. 專利號: ZL 201510939318.0(授權日期:2018-05-22)
[4] 彭高亮, 韓銳, 薛淵, 孫瑜. 一種基於導軌滑塊組合的平面軸承機構. 專利號: ZL 201510939320.8(授權日期:2018-01-05)
[5] 彭高亮, 薛淵, 韓銳, 孫瑜. 一種適用於雷達天線邊塊的三自由度調姿裝置及調姿方法. 專利號: ZL 201510939299.1(授權日期:2018-07-03)
[6] 彭高亮, 薛淵, 邴宇涵, 孫瑜. 一種雷達天線陣面抗風穩定裝置. 專利號: ZL 201510960801.7(授權日期:2017-12-26)
[7] 彭高亮, 薛淵, 秦繼豪, 趙小力, 孟國軍. 一種機械自鎖式雷達天線舉升機構. 專利號: ZL 201510963114.0(授權日期:2018-02-02)
[8] 彭高亮, 薛淵, 何俊, 李鑫. 一種天線陣面自動對接調節平台. 專利號: ZL 201510967722.9(授權日期:2017-12-15)
[9] 彭高亮, 薛淵, 何俊, 李鑫. 一種水平方向及偏航調整的三自由度並聯調姿平台. 專利號: ZL 201510968081.9(授權日期:2017-09-12)
[10] 彭高亮, 薛淵, 劉世偉, 趙傑. 一種伸縮式雷達天線背架. 專利號: ZL 201510980695.9(授權日期:2018-04-03)
[11] 彭高亮, 薛淵, 何俊, 朱智宇. 一種用於雷達陣子旋轉鎖定的裝置及其工作方法. 專利號: ZL 201710535582.7(授權日期:2019-07-05)
[12] 劉世偉, 薛淵, 彭高亮, 蘇凱昕, 許世龍. 一種新型模擬重載雷達直線導軌副壽命對比試驗裝置. 專利號: ZL 201810019832.6(授權日期:2019-05-28)
[13] 薛淵, 毛道庸, 彭高亮, 孫瑜, 劉世偉. 一種折展天線支撐臂. 專利號: ZL 201810079889.5(授權日期:2019-10-18)
[14] 彭高亮, 薛淵, 何俊, 吉孟宇. 一種大行程可調平的抬升機構. 專利號: ZL 201710535617.7(申請日期:2017-07-04)
[15] 孫瑜, 彭高亮, 薛淵, 朱智宇. 一種雷達天線陣子旋轉機構. 專利號: ZL 201710535606.9(申請日期:2017-07-04)
[16] 彭高亮, 薛淵, 孫瑜, 劉世偉, 許世龍. 一種用於大型設備組裝的精確吊裝系統及工作方法. 專利號: ZL 201810079878.7(申請日期:2018-01-27)
[17] 高會軍, 彭高亮, 陳宏鈞, 劉世偉. 一種空間六自由度車載雷達天線位姿偏差測量及對接方法. 專利號: ZL 201811278195.0(申請日期:2018-10-30)
[18] 彭高亮, 高會軍, 薛淵, 劉世偉. 一種雷達天線陣面鎖緊裝置及鎖緊方法. 專利號: ZL 201811278069.5(申請日期:2018-10-30)
[19] 薛淵, 高會軍, 彭高亮, 劉世偉. 一種雷達天線陣面對接穩定裝置及方法. 專利號: ZL 201811279676.3(申請日期:2018-10-30)
[20] 彭高亮, 薛淵, 劉世偉, 高會軍. 一種雷達天線對接互鎖裝置及方法. 專利號: ZL 201811279842.X(申請日期:2018-10-30)
[21] 高會軍, 彭高亮, 許世龍, 劉世偉. 一種雷達天線陣面變形測量系統及方法. 專利號: ZL 201811278134.4(申請日期:2018-10-30)
[22] 薛淵, 高會軍, 劉世偉, 彭高亮, 許世龍. 一種雷達天線後擋器限位機構. 專利號: ZL 201811278120.2(申請日期:2018-10-30)
[23]段從繁, 彭高亮, 薛淵, 劉世偉. 一種大型起豎裝置用間隙自適應重載直線導軌副. 專利號: ZL 201910066734.2(申請日期:2019-01-24)
榮譽獎項
獲黑龍江省自然科學二等獎和科技進步二等獎各1項。
