明新國(guó)

長(zhǎng)聘教授

所在系所:工業(yè)工程與管理系

辦公電話:+86-13918034401, +86-021-34206528

電子郵件:xgming@sjtu.edu.cn

通訊地址:機(jī)械與動(dòng)力工程學(xué)院辦公大樓A樓7樓

個(gè)人主頁:http://bhcdo.cn/teacher_directory1/mingxinguo.html

個(gè)人簡(jiǎn)介
教學(xué)工作
科研工作
榮譽(yù)獎(jiǎng)勵(lì)

教育背景

1984年9月-1988年7月 華中科技大學(xué) 機(jī)械工程系 工學(xué)學(xué)士
1990年9月-1992年7月 上海交通大學(xué) 材料工程系 工學(xué)碩士
1992年9月-1995年6月 上海交通大學(xué) 機(jī)械工程系 工學(xué)博士

工作經(jīng)歷

1998年3月 - 2002年3月 新加坡制造技術(shù)研究院制造信息技術(shù)分院   Research Fellow
2002年4月 - 2005年6月 新加坡制造技術(shù)研究院產(chǎn)品設(shè)計(jì)與開發(fā)部   Research Scientist
2005年6月 - 上海交通大學(xué)機(jī)械與動(dòng)力工程學(xué)院   教師、教授、博導(dǎo)

研究方向

工業(yè)人工智能(Industrial Artificial Intelligence)
-人工智能的智慧來源:事實(shí)+數(shù)字=數(shù)據(jù)、數(shù)據(jù)+關(guān)系=信息、信息+行動(dòng)=知識(shí)、知識(shí)+決策=智慧;
-人工智能的知識(shí)管理:知識(shí)的發(fā)現(xiàn)、表達(dá)、集成、分享、學(xué)習(xí)、使用、創(chuàng)造;
-人工智能的能力層次:自感知、自認(rèn)知、自適應(yīng)、自控制、自學(xué)習(xí)、自組織、自決策、自主化;
-人工智能的執(zhí)行過程:動(dòng)態(tài)感知、實(shí)時(shí)分析、優(yōu)化決策、執(zhí)行控制
-人工智能的技術(shù)應(yīng)用:深度機(jī)器學(xué)習(xí)、大數(shù)據(jù)智能、自主智能、群體智能、跨界感知智能、人機(jī)共生智能;
-人工智能的產(chǎn)品應(yīng)用:智能產(chǎn)品系統(tǒng)、智能產(chǎn)品生態(tài)系統(tǒng);
-人工智能的服務(wù)應(yīng)用:智能服務(wù)系統(tǒng)、智能服務(wù)生態(tài)系統(tǒng);
-人工智能的制造應(yīng)用:智能生產(chǎn)系統(tǒng)、智能管理系統(tǒng);

-人工智能的創(chuàng)新方向:符號(hào)推理、空間智能、情感智能、智能體;

-人工智能的演化路徑:數(shù)智化、認(rèn)知化、自主化、演化化;

-人工智能大模型場(chǎng)景:工業(yè)智能大模型、研發(fā)設(shè)計(jì)大模型、生產(chǎn)管理大模型、產(chǎn)品服務(wù)大模型。


數(shù)據(jù)要素賦能價(jià)值共生

-數(shù)據(jù)價(jià)值釋放:一次價(jià)值釋放:業(yè)務(wù)貫通/協(xié)同優(yōu)化,二次價(jià)值釋放:復(fù)用增值,三次價(jià)值釋放:融合創(chuàng)新;

-數(shù)據(jù)基礎(chǔ)設(shè)施:數(shù)據(jù)互操作、數(shù)據(jù)流通、數(shù)據(jù)建模、數(shù)據(jù)產(chǎn)品服務(wù)

-數(shù)據(jù)流通深度:數(shù)據(jù)資源、數(shù)據(jù)資產(chǎn)、數(shù)據(jù)資本;

-數(shù)據(jù)流通廣度:價(jià)值創(chuàng)造(組織內(nèi))、價(jià)值共創(chuàng)(跨組織)、價(jià)值共生(全社會(huì));

-數(shù)據(jù)流通治理:法律-組織-業(yè)務(wù)-技術(shù)、參考模型-技術(shù)-工具-系統(tǒng)、數(shù)據(jù)全生命周期流程;

-技術(shù)驅(qū)動(dòng)模式:信息化(業(yè)務(wù)驅(qū)動(dòng))、數(shù)字化(數(shù)據(jù)驅(qū)動(dòng))、智能化(模型驅(qū)動(dòng))、生態(tài)化(價(jià)值驅(qū)動(dòng))


數(shù)據(jù)驅(qū)動(dòng)的工業(yè)價(jià)值創(chuàng)造

-數(shù)據(jù)分析技術(shù):描述性分析、診斷性分析、預(yù)測(cè)性分析、決策性分析、認(rèn)知性分析;

-數(shù)據(jù)價(jià)值密度:原始數(shù)據(jù)、精煉化數(shù)據(jù)、場(chǎng)景化數(shù)據(jù)、知識(shí)化數(shù)據(jù)、價(jià)值化數(shù)據(jù)

-數(shù)據(jù)價(jià)值領(lǐng)域:客戶價(jià)值共創(chuàng)、生產(chǎn)效率提升、經(jīng)營(yíng)鏈條拓展、商業(yè)模式轉(zhuǎn)型、管理科學(xué)決策、產(chǎn)業(yè)生態(tài)創(chuàng)新


產(chǎn)業(yè)數(shù)智化轉(zhuǎn)型

-轉(zhuǎn)型層次:數(shù)字化轉(zhuǎn)型、網(wǎng)絡(luò)化協(xié)同、智能化決策、平臺(tái)化賦能、生態(tài)化創(chuàng)新

-價(jià)值場(chǎng)景:客戶需求,創(chuàng)新鏈:研發(fā)設(shè)計(jì),管理鏈:運(yùn)營(yíng)管理,制造鏈:生產(chǎn)加工,服務(wù)鏈:工業(yè)服務(wù);

-群智生態(tài):鏈群規(guī)劃、態(tài)勢(shì)感知、供需交互、產(chǎn)消協(xié)同、社會(huì)眾創(chuàng)

-產(chǎn)業(yè)智聯(lián):感知-工業(yè)物聯(lián)網(wǎng)、連接-工業(yè)互聯(lián)網(wǎng)、業(yè)務(wù)-產(chǎn)業(yè)互聯(lián)網(wǎng)、價(jià)值-服務(wù)互聯(lián)網(wǎng)、智慧-知識(shí)互聯(lián)網(wǎng)。


智能產(chǎn)品創(chuàng)新生態(tài)系統(tǒng)(創(chuàng)新設(shè)計(jì))
-新產(chǎn)品開發(fā)、產(chǎn)品創(chuàng)新管理、產(chǎn)品型譜管理;
-全球化產(chǎn)品開發(fā)、協(xié)同產(chǎn)品開發(fā);
-模塊化產(chǎn)品開發(fā)、產(chǎn)品平臺(tái)與產(chǎn)品族設(shè)計(jì);
-產(chǎn)品生命周期管理、產(chǎn)品開發(fā)流程管理;
-個(gè)性化產(chǎn)品設(shè)計(jì)、產(chǎn)品生態(tài)系統(tǒng)設(shè)計(jì)、創(chuàng)新生態(tài)系統(tǒng)設(shè)計(jì);
-創(chuàng)新設(shè)計(jì)—基礎(chǔ)能力:標(biāo)準(zhǔn)化、模塊化、協(xié)同化、精益化、最優(yōu)化;
-創(chuàng)新設(shè)計(jì)—核心能力:知識(shí)化、系統(tǒng)化、智能化、生態(tài)化、個(gè)性化、服務(wù)化、體驗(yàn)化;
-智能產(chǎn)品創(chuàng)新生態(tài)系統(tǒng):生態(tài)共建、資源共享、系統(tǒng)共生、價(jià)值共創(chuàng)、創(chuàng)新共贏。

服務(wù)型制造/產(chǎn)品服務(wù)系統(tǒng)(Product Service System)
-服務(wù)型制造體系結(jié)構(gòu)、服務(wù)型制造成熟度評(píng)價(jià);
-服務(wù)價(jià)值、服務(wù)價(jià)值鏈、服務(wù)價(jià)值合作網(wǎng);
-服務(wù)價(jià)值識(shí)別、服務(wù)價(jià)值主張、服務(wù)價(jià)值交付、服務(wù)價(jià)值評(píng)價(jià);
-服務(wù)戰(zhàn)略、服務(wù)營(yíng)銷、服務(wù)設(shè)計(jì)、服務(wù)供應(yīng)鏈、服務(wù)體驗(yàn)、服務(wù)實(shí)施;
-服務(wù)績(jī)效評(píng)價(jià)、服務(wù)能力評(píng)價(jià)、服務(wù)質(zhì)量管理、服務(wù)運(yùn)營(yíng)管理;

-服務(wù)生態(tài)系統(tǒng):服務(wù)價(jià)值創(chuàng)造、服務(wù)生態(tài)共創(chuàng)、服務(wù)價(jià)值共生;

-服務(wù)新質(zhì)生產(chǎn)力:專業(yè)化、網(wǎng)絡(luò)化、數(shù)智化、高端化、綠色化、體驗(yàn)化。


精益企業(yè)管理(Lean Enterprise Management)
-精益思想(Lean thinking)
-精益工具與方法(Lean Tools and Methodologies)
-精益自我評(píng)估(Lean Self-Assessment)
-價(jià)值流映射與分析(Value Stream Mapping and Analysis)
-精益轉(zhuǎn)變路線圖(Transition-to-Lean)
-精益設(shè)計(jì)與產(chǎn)品開發(fā)(Lean Design and Product Development)
-精益物流與供應(yīng)鏈(Lean Logistics and Supply Chain)
-精益工程與制造(Lean Engineering and Manufacturing)
-精益6西格瑪(Lean Six Sigma)
-豐田生產(chǎn)系統(tǒng)(Toyota Production System)

學(xué)術(shù)兼職

1、社會(huì)兼職
- 2007年 5月:江蘇省通州市科技顧問。
- 2009年12月:上海市信息化專家委員會(huì)委員。
- 2017年2月:中國(guó)服務(wù)型制造聯(lián)盟副理事長(zhǎng)、專家委員會(huì)副主任委員。
- 2017年5月:中國(guó)個(gè)性化定制聯(lián)盟專家組成員。
- 2017年8月:國(guó)家智能制造標(biāo)準(zhǔn)體系建設(shè)指南,修訂工作組專家。

2、學(xué)術(shù)會(huì)員
- 2006年: 中國(guó)機(jī)械工程學(xué)會(huì)(CMES),高級(jí)會(huì)員。
- 2006年: 中國(guó)機(jī)械工程學(xué)會(huì)機(jī)械工業(yè)自動(dòng)化分會(huì)委員會(huì)委員。
- 2006年: 中國(guó)自動(dòng)化學(xué)會(huì)制造技術(shù)專業(yè)委員會(huì)委員。
- 2008年: 上海市標(biāo)準(zhǔn)化協(xié)會(huì),理事

3、期刊兼職(包括曾經(jīng))
- 國(guó)際期刊《Concurrent Engineering: Research and Applications》,國(guó)際編委會(huì)委員
- 國(guó)際期刊《International Journal of Product Development》,國(guó)際編委會(huì)委員
- 國(guó)際期刊《Business Process Management Journal》,國(guó)際編委會(huì)委員
- 國(guó)際期刊“產(chǎn)品生命周期管理”專刊,客座編委,2006年-2007年。
- 國(guó)際期刊“知識(shí)驅(qū)動(dòng)的產(chǎn)品創(chuàng)新與企業(yè)管理”專刊,客座編委,2007年-2008年。

4、會(huì)議兼職

2016年12月,2016上海交通大學(xué)創(chuàng)新設(shè)計(jì)論壇——?jiǎng)?chuàng)新設(shè)計(jì)和智能設(shè)計(jì),主題演講:“工業(yè)產(chǎn)品服務(wù)價(jià)值創(chuàng)造”,2016年12月8-11日,中國(guó)上海(交通大學(xué))。
2016年11月,中國(guó)“互聯(lián)網(wǎng)+制造業(yè)”高峰論壇,主題演講:“中國(guó)智能制造的創(chuàng)新驅(qū)動(dòng)和服務(wù)轉(zhuǎn)型”,2016年11月9-10日,中國(guó)上海(龍之夢(mèng)大酒店)。
2016年09月,2016未來汽車大會(huì)——汽車智能制造專題論壇,主題演講:“汽車業(yè)服務(wù)型制造的轉(zhuǎn)型升級(jí)”,2016年09月22-23日,中國(guó)江蘇省昆山。
2016年07月,第七屆西門子工廠經(jīng)理會(huì)議(7th Siemens Plant Manager Conference),主旨演講:“工業(yè)4.0背景下的中國(guó)智能制造發(fā)展趨勢(shì)”,2016年07月20-21日,中國(guó)上海。
2016年05月,2016(第四屆)先進(jìn)制造業(yè)大會(huì)——服務(wù)型制造專題論壇,專題演講:“工業(yè)產(chǎn)品服務(wù)價(jià)值創(chuàng)造”,2016年5月25-27日,中國(guó)上海。
2015年11月, 第3屆法國(guó)-中國(guó)數(shù)字工廠和數(shù)字制造研討會(huì)——智能制造和未來工廠,主旨演講:“互聯(lián)網(wǎng)時(shí)代的智慧產(chǎn)品和服務(wù)生態(tài)系統(tǒng)展望”,2015年11月12-14日,中國(guó)北京。
2015年11月, 2015智能制造與工業(yè)4.0國(guó)際峰會(huì),專題演講:“智能制造模式創(chuàng)新與產(chǎn)業(yè)轉(zhuǎn)型升級(jí)”,2015年11月2-3日,中國(guó)上海。
2015年10月, PMI(中國(guó))項(xiàng)目管理大會(huì),專題演講: “互聯(lián)網(wǎng)時(shí)代的制造模式轉(zhuǎn)型與產(chǎn)品服務(wù)創(chuàng)新”, 2015年10月24-25日,中國(guó)上海(國(guó)際會(huì)議中心)。
2015年10月, 2015產(chǎn)品生命周期管理(PLM:Product Lifecycle Management)國(guó)際年會(huì),主旨演講: “中國(guó)產(chǎn)品生命周期管理的發(fā)展現(xiàn)狀和未來展望”,國(guó)際程序指導(dǎo)委員會(huì)委員,2015年10月18-21日,卡塔爾多哈市。
2015年9月, 2015全國(guó)都市農(nóng)業(yè)發(fā)展研討會(huì),專題報(bào)告:“農(nóng)業(yè)生產(chǎn)性服務(wù)業(yè)發(fā)展趨勢(shì)”,2015年9月17日,中國(guó)上海。
2012年9月, 2012年精益教育者研討會(huì),國(guó)際程序指導(dǎo)委員會(huì)委員。美國(guó)。
2012年5月,第9屆競(jìng)爭(zhēng)工程的工具與方法(TMCE)國(guó)際會(huì)議,設(shè)計(jì)、創(chuàng)新與開發(fā)分會(huì)聯(lián)合主席。2012年5月,德國(guó)。
2010年7月, 第7屆產(chǎn)品生命周期管理國(guó)際會(huì)議,程序委員會(huì)委員。2010年7月,德國(guó)。
2008年7月,第五屆產(chǎn)品生命周期管理國(guó)際會(huì)議,程序委員會(huì)委員。2008年7月,韓國(guó)首爾。
2007年3月, 第三屆企業(yè)軟件和應(yīng)用互操作國(guó)際會(huì)議,程序委員會(huì)委員。2007年3月26-30日,葡萄牙,Madeira Island。
2006年9月, 美國(guó)機(jī)械工程師協(xié)會(huì)(ASME)設(shè)計(jì)工程技術(shù)國(guó)際會(huì)議,產(chǎn)品信息語義表達(dá)分會(huì)聯(lián)合主席、設(shè)計(jì)綜合與優(yōu)化分會(huì)聯(lián)合主席。2006年9月10-13日,美國(guó)賓夕法尼亞州。
2006年8月, 中國(guó)機(jī)構(gòu)與機(jī)器科學(xué)學(xué)術(shù)會(huì)議(國(guó)際會(huì)議) (CCMMS2006),組織委員會(huì)委員,2006 年8 月14-17 日,中國(guó)?銀川。
2006年8月, 2006年IEEE 工業(yè)信息技術(shù)國(guó)際會(huì)議, 產(chǎn)品生命周期管理分會(huì)聯(lián)合主席,國(guó)際程序指導(dǎo)委員會(huì)委員,新加坡 。
2006年7月, 2006年7月,產(chǎn)品生命周期管理國(guó)際會(huì)議,國(guó)際程序指導(dǎo)委員會(huì)委員,印度。
2005年9月, 美國(guó)機(jī)械工程師協(xié)會(huì)(ASME)設(shè)計(jì)工程技術(shù)國(guó)際會(huì)議,工程本體結(jié)構(gòu)分會(huì)聯(lián)合主席,美國(guó)加里福尼亞州。
2005年8月, 2005年IEEE 服務(wù)運(yùn)籌物流與信息國(guó)際會(huì)議,國(guó)際程序指導(dǎo)委員會(huì)委員,中國(guó)北京  。
2005年7月, 并行工程研究與應(yīng)用國(guó)際會(huì)議, 國(guó)際程序指導(dǎo)委員會(huì)委員, 協(xié)同產(chǎn)品生命周期建模,集成及管理分會(huì)主席, 美國(guó)德克薩斯州達(dá)拉斯。
2005年5月, 2005年16屆精密工程國(guó)際展覽會(huì)議,主題演講, 面向持續(xù)進(jìn)步的協(xié)同產(chǎn)品生命周期管理,新加坡。
2004年7月, 并行工程研究與應(yīng)用國(guó)際會(huì)議, 國(guó)際程序指導(dǎo)委員會(huì)委員, 產(chǎn)品生命周期管理分會(huì)主席, 中國(guó)北京。
2004年6月, 協(xié)同產(chǎn)品生命周期建模集成和管理主題演講,喬治理工學(xué)院(Georgia Institute of Technology), 新加坡- 喬治理工學(xué)院制造技術(shù)學(xué)術(shù)研討會(huì),美國(guó)亞特蘭大。
2003年12月, 敏捷制造國(guó)際會(huì)議, 國(guó)際學(xué)術(shù)指導(dǎo)委員會(huì)委員, 及新產(chǎn)品設(shè)計(jì)與優(yōu)化分會(huì)主席, 中國(guó)北京。
2003年7月, 并行工程研究與應(yīng)用國(guó)際會(huì)議,產(chǎn)品生命周期管理分會(huì)聯(lián)合主席, 葡萄牙。

課程名稱:Lean Enterprise Management (英文講授)
授課對(duì)象:研究生(雙碩士學(xué)位:MBA+工程碩士)
學(xué)時(shí)數(shù):54,  
學(xué)分:3

課程名稱:Manufacturing System Analysis and Optimization (英文講授)
授課對(duì)象:研究生(雙碩士學(xué)位:MBA+工程碩士)
學(xué)時(shí)數(shù):54,  
學(xué)分:3

課程名稱:專業(yè)英語
授課對(duì)象:研究生(雙碩士學(xué)位:MBA+工程碩士)
學(xué)時(shí)數(shù):36,  
學(xué)分:2

課程名稱:物流與供應(yīng)鏈管理
授課對(duì)象:研究生
學(xué)時(shí)數(shù):36
學(xué)分:2

課程名稱:產(chǎn)品研發(fā)與技術(shù)創(chuàng)新管理
授課對(duì)象:研究生
學(xué)時(shí)數(shù):36
學(xué)分:2

課程名稱:創(chuàng)新思維與研發(fā)管理
授課對(duì)象:工程博士生
學(xué)時(shí)數(shù):36
學(xué)分:2

課程名稱:數(shù)字化轉(zhuǎn)型與服務(wù)化升級(jí)
授課對(duì)象:工程博士生
學(xué)時(shí)數(shù):36
學(xué)分:2

課程名稱:21世紀(jì)企業(yè)制造模式-精益生產(chǎn)
授課對(duì)象:本科生
學(xué)時(shí)數(shù):36
學(xué)分:2

科研項(xiàng)目

1998-2002 基于PDES/STEP國(guó)際標(biāo)準(zhǔn)的項(xiàng)目管理及CAD/CAPP/CAM和生產(chǎn)調(diào)度系統(tǒng)的并行集成,新加坡科技局,項(xiàng)目組組長(zhǎng);
2002-2003 以企業(yè)流程為中心的信息技術(shù)的開發(fā)與應(yīng)用,新加坡科技局,負(fù)責(zé)人;
2002-2004 虛擬企業(yè)中的智能工藝規(guī)劃關(guān)鍵技術(shù)和方法研究,新加坡科技局,負(fù)責(zé)人;
2003-2005 產(chǎn)品生命周期管理理論研究與技術(shù)開發(fā) ,新加坡科技局,負(fù)責(zé)人;
2005-2007 面向自主創(chuàng)新的產(chǎn)品生命周期管理體系結(jié)構(gòu)及其關(guān)鍵技術(shù),上海市科學(xué)技術(shù)委員會(huì)(浦江人才計(jì)劃)(05PJ14076),負(fù)責(zé)人;
2006-2007 面向自主創(chuàng)新的產(chǎn)品生命周期協(xié)同關(guān)鍵技術(shù)研究,上海市科學(xué)技術(shù)委員會(huì)(國(guó)際合作計(jì)劃) (05SN07116),負(fù)責(zé)人;
2006-2009 協(xié)同制造網(wǎng)格應(yīng)用示范, 國(guó)家自然科學(xué)基金重點(diǎn)項(xiàng)目(90612017),項(xiàng)目組成員;
2007-2010 研究所信息化系統(tǒng)頂層設(shè)計(jì)咨詢服務(wù),負(fù)責(zé)人;
2007-2009 企業(yè)主數(shù)據(jù)管理技術(shù)研究與應(yīng)用驗(yàn)證,負(fù)責(zé)人;
2007-2010 面向航天重點(diǎn)型號(hào)的企業(yè)群體協(xié)同工作平臺(tái)研發(fā)與示范應(yīng)用,國(guó)家863計(jì)劃 (2007AA04Z189E),子項(xiàng)負(fù)責(zé)人;
2008-2008 基于實(shí)際案例的PLM應(yīng)用演示,負(fù)責(zé)人;
2009-2009 上海電力企業(yè)大學(xué)總體架構(gòu)設(shè)計(jì),負(fù)責(zé)人;
2010-2012 現(xiàn)代城市配送網(wǎng)關(guān)鍵技術(shù)研究,負(fù)責(zé)人;
2010.1-2010.12 產(chǎn)品研發(fā)設(shè)計(jì)兩化融合綜合研究, 上海市經(jīng)濟(jì)與信息化委員會(huì), 課題責(zé)任人;
2010.3-2011.12 民用飛機(jī)產(chǎn)品單一數(shù)據(jù)源建設(shè), 中國(guó)航空商用飛機(jī)有限公司, 技術(shù)負(fù)責(zé)人;
2010.10-2011.3 現(xiàn)代化生產(chǎn)基地發(fā)展藍(lán)圖, 課題責(zé)任人;
2010.9-2011.6 新產(chǎn)品研制項(xiàng)目管理流程設(shè)計(jì), 中國(guó)有色(沈陽)機(jī)械有限公司, 課題責(zé)任人;
2011.1-2011.12 數(shù)字化工廠體系研究和典型案例分析, 上海市經(jīng)濟(jì)和信息化委員會(huì), 課題責(zé)任人;
2010.10-2012.10 民用飛機(jī)數(shù)字化服務(wù)平臺(tái), 上海市經(jīng)濟(jì)和信息化委員會(huì), 合作方課題責(zé)任人;
2010.7-2011.7 FMEA方法在核電項(xiàng)目在熱閥研制中的應(yīng)用研究, 課題責(zé)任人;
2011.6-2011.12 多元客戶環(huán)境下信息化體系研究,  課題責(zé)任人;
2011.3-2011.12 灌裝流水線設(shè)計(jì)服務(wù)與制造,  課題責(zé)任人;
2011.6-2011.12 食品(集團(tuán))有限公司信息化規(guī)劃, 課題責(zé)任人;
2011.9-2013.9 民用飛機(jī)全壽命維修服務(wù)模式與關(guān)鍵技術(shù)研究和應(yīng)用, 上海市科學(xué)技術(shù)委員會(huì), 課題合作方責(zé)任人;
2010.9-2013.6 “三網(wǎng)融合”裝備產(chǎn)品精益研發(fā)設(shè)計(jì)流程再造和信息化融合, 上海市經(jīng)濟(jì)和信息化委員會(huì), 課題合作方責(zé)任人;
2012.10-2014.09 信息技術(shù)支撐民用飛機(jī)服務(wù)業(yè)模式研究和應(yīng)用示范, 上海市科學(xué)技術(shù)委員會(huì), 課題合作方責(zé)任人;
2012.09-2015.03 基于MBD 的大型客機(jī)協(xié)同總裝工藝及工裝設(shè)計(jì)技術(shù)研究與系統(tǒng)應(yīng)用, 上海市科學(xué)技術(shù)委員會(huì), 課題合作方責(zé)任人;
2012.1-2014.12 商用航空發(fā)動(dòng)機(jī)協(xié)同研發(fā)信息化平臺(tái), 上海市經(jīng)濟(jì)和信息化委員會(huì), 課題合作方責(zé)任人;
2012.10-2014.9 大型海洋工程裝備協(xié)同研發(fā)與制造信息系統(tǒng), 上海市經(jīng)濟(jì)和信息化委員會(huì), 課題合作方責(zé)任人;
2012.1-2015.6 海洋工程裝備研發(fā)設(shè)計(jì)創(chuàng)新服務(wù)平臺(tái), 上海市發(fā)展與改革委員會(huì), 課題合作方責(zé)任人;
2012.1-2015.12 海上鉆井平臺(tái)裝備制造焊接智能化車間, 國(guó)家發(fā)展和改革委員會(huì)/國(guó)家工業(yè)和信息化部/財(cái)政部,智能制造專項(xiàng),信息化子課題責(zé)任人;
2013.1-2016.12 電梯維保創(chuàng)新服務(wù)平臺(tái),上海市發(fā)展和改革委員會(huì),課題合作方責(zé)任人
2013.1-2016.12 新能源裝備研發(fā)設(shè)計(jì)服務(wù)創(chuàng)新平臺(tái),上海市發(fā)展和改革委員會(huì),課題合作方責(zé)任人
2013.10-2015.09 基于物聯(lián)網(wǎng)的工程機(jī)械產(chǎn)品智能化服務(wù)云平臺(tái),上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方負(fù)責(zé)人
2013.10-2015.09 航天型號(hào)產(chǎn)品智能制造系統(tǒng)物聯(lián)與集成云平臺(tái),上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方負(fù)責(zé)人
2014.6-2016.12 大型裝備集團(tuán)供應(yīng)鏈協(xié)同O2O平臺(tái)建設(shè),上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方負(fù)責(zé)人
2014.6-2016.12 海洋工程裝備鋪管系統(tǒng)研發(fā)創(chuàng)新產(chǎn)學(xué)研技術(shù)應(yīng)用,上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方負(fù)責(zé)人
2015.6-2017.12 D系列空調(diào)壓縮機(jī)智能制造生產(chǎn)系統(tǒng),上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方負(fù)責(zé)人
2015.5-2017.12 海洋工程裝備智能制造綜合標(biāo)準(zhǔn)化試驗(yàn)驗(yàn)證,國(guó)家工業(yè)和信息化部/財(cái)政部,智能制造專項(xiàng),課題合作方負(fù)責(zé)人
2015.5-2017.12 上海生產(chǎn)性服務(wù)業(yè)發(fā)展綠皮書,上海市經(jīng)濟(jì)和信息化委員會(huì),課題負(fù)責(zé)人
2015.08-2018.12 民用飛機(jī)安全監(jiān)控大數(shù)據(jù)分析系統(tǒng),上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方負(fù)責(zé)人
2016.04-2018.12 大型客機(jī)故障診斷與健康管理智能服務(wù)平臺(tái),上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方負(fù)責(zé)人
2016.1-2018.12 空調(diào)壓縮機(jī)大規(guī)模定制生產(chǎn)智能制造新模式,國(guó)家工業(yè)和信息化部/財(cái)政部,智能制造專項(xiàng),課題合作方負(fù)責(zé)人
2016.4-2018.12 智慧工業(yè)大數(shù)據(jù)分析應(yīng)用技術(shù)研究,上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方負(fù)責(zé)人
2016.1-2018.12 海工核心裝備工業(yè)設(shè)計(jì)創(chuàng)新鏈多方法融合技術(shù)開發(fā)和示范應(yīng)用,上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方負(fù)責(zé)人
2016.1-2018.12 青島自動(dòng)化碼頭裝卸系統(tǒng)總承包,上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方負(fù)責(zé)人
2016.1-2018.12 智能化港口大型成套裝備綠色供應(yīng)鏈標(biāo)準(zhǔn)體系建設(shè)及示范應(yīng)用,國(guó)家工業(yè)和信息化部/財(cái)政部,綠色制造專項(xiàng),課題合作方負(fù)責(zé)人
2017.1-2019.6 大型民用飛機(jī)設(shè)計(jì)過程的質(zhì)量控制技術(shù)創(chuàng)新與應(yīng)用示范,上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方成員
2017.1-2019.6 基于工業(yè)互聯(lián)網(wǎng)的電梯產(chǎn)品服務(wù)生態(tài)系統(tǒng)開發(fā), 上海市經(jīng)濟(jì)和信息化委員會(huì),工業(yè)互聯(lián)網(wǎng)專項(xiàng),課題合作方負(fù)責(zé)人
2017.1-2019.6 商用車大規(guī)模個(gè)性化定制新模式應(yīng)用, 上海市經(jīng)濟(jì)和信息化委員會(huì),工業(yè)互聯(lián)網(wǎng)專項(xiàng),課題合作方負(fù)責(zé)人
2017.1-2019.6 化工行業(yè)工業(yè)大數(shù)據(jù)平臺(tái), 上海市經(jīng)濟(jì)和信息化委員會(huì),工業(yè)互聯(lián)網(wǎng)專項(xiàng),課題合作方負(fù)責(zé)人
2017.1-2019.12 大型海洋工程起重裝備智能制造新模式應(yīng)用, 國(guó)家工業(yè)和信息化部/財(cái)政部,智能制造專項(xiàng),課題合作方負(fù)責(zé)人
2017.1-2019.12 高新技術(shù)船舶動(dòng)力系統(tǒng)綠色設(shè)計(jì)平臺(tái)建設(shè), 國(guó)家工業(yè)和信息化部/財(cái)政部,綠色制造專項(xiàng),課題合作方負(fù)責(zé)人
2017.2-2019.1太陽能離網(wǎng)供電運(yùn)營(yíng)管理服務(wù)平臺(tái),上海市發(fā)展和改革委員會(huì),課題合作方責(zé)任人
2017.1-2019.12 基于工業(yè)互聯(lián)網(wǎng)的船舶動(dòng)力系統(tǒng)集成解決方案,上海市經(jīng)濟(jì)和信息化委員會(huì),工業(yè)互聯(lián)網(wǎng)專項(xiàng),課題合作方負(fù)責(zé)人
2018.6-2021.5 燃?xì)廨啓C(jī)自主研發(fā)體系理論方法和技術(shù)應(yīng)用研究,國(guó)家工業(yè)和信息化部/財(cái)政部,兩機(jī)專項(xiàng),課題合作方負(fù)責(zé)人
2018.1-2020.12 起重裝備遠(yuǎn)程監(jiān)測(cè)系統(tǒng)解決方案,上海市經(jīng)濟(jì)和信息化委員會(huì),服務(wù)型制造專項(xiàng),課題合作方負(fù)責(zé)人
2018.1-2018.12 上海市區(qū)塊鏈技術(shù)發(fā)展態(tài)勢(shì)及應(yīng)用前景研究,上海市決策咨詢委,課題負(fù)責(zé)人
2018.1-2020.12 基于企業(yè)互聯(lián)的節(jié)能環(huán)保空調(diào)壓縮機(jī)網(wǎng)絡(luò)化協(xié)同與應(yīng)用,上海市經(jīng)濟(jì)和信息化委員會(huì),工業(yè)互聯(lián)網(wǎng)專項(xiàng),課題合作方負(fù)責(zé)人
2018.1-2020.12 港口集裝箱起重機(jī)遠(yuǎn)程故障模式識(shí)別與預(yù)測(cè)性維護(hù)標(biāo)準(zhǔn)研究與試驗(yàn)驗(yàn)證,國(guó)家工業(yè)和信息化部/財(cái)政部,智能制造專項(xiàng),課題合作方負(fù)責(zé)人
2018.1-2018.12 上海發(fā)展服務(wù)型制造的重點(diǎn)模式與推進(jìn)方案研究,上海市經(jīng)濟(jì)和信息化委員會(huì),課題合作方負(fù)責(zé)人
2018.1-2021.12 基于集成化管理的建筑行業(yè)大數(shù)據(jù)決策服務(wù)平臺(tái),上海市發(fā)展和改革委員會(huì),課題合作方責(zé)任人
2019.1-2021.12 船舶氣態(tài)污染物排放智能監(jiān)測(cè)服務(wù)平臺(tái),上海市發(fā)展和改革委員會(huì),服務(wù)業(yè)引導(dǎo)專項(xiàng),課題合作方責(zé)任人
2019.2-2021.12 人工智能在3C行業(yè)檢測(cè)設(shè)備的融合創(chuàng)新應(yīng)用,上海市經(jīng)濟(jì)和信息化委員會(huì),人工智能專項(xiàng),課題合作方負(fù)責(zé)人
2019.2-2021.12 室外重載AGV無人駕駛技術(shù)創(chuàng)新與智能群控系統(tǒng),上海市經(jīng)濟(jì)和信息化委員會(huì),人工智能專項(xiàng),課題合作方負(fù)責(zé)人
2019.3-2021.12 面向家電行業(yè)基于標(biāo)識(shí)解析的應(yīng)用服務(wù)推廣,上海市經(jīng)濟(jì)和信息化委員會(huì),工業(yè)互聯(lián)網(wǎng)專項(xiàng),課題合作方負(fù)責(zé)人
2019.3-2020.12 汽車底盤工業(yè)互聯(lián)網(wǎng)網(wǎng)絡(luò)化智能協(xié)同集成創(chuàng)新應(yīng)用,上海市經(jīng)濟(jì)和信息化委員會(huì),工業(yè)互聯(lián)網(wǎng)專項(xiàng),課題合作方負(fù)責(zé)人
2019.3-2021.12 工業(yè)互聯(lián)網(wǎng)標(biāo)識(shí)解析二級(jí)節(jié)點(diǎn),國(guó)家工業(yè)和信息化部,工業(yè)互聯(lián)網(wǎng)專項(xiàng),項(xiàng)目組成員
2019.09-2020.12 山西裝備制造業(yè)高端化、智能化、綠色化發(fā)展建議,山西省委政策研究室,課題負(fù)責(zé)人
2019.9-2021.6 基于敏捷系統(tǒng)工程的飛機(jī)研制流程建模方法研究,中國(guó)商飛系統(tǒng)工程創(chuàng)新中心,課題負(fù)責(zé)人

代表性論文專著

代表性論文:
1) Wu, Z. Y., Ming, X. G., He, L. N., etc., Product Development-Oriented Knowledge Service: Status Review, Framework, and Solutions[J]. IEEE Access, 2020, 8 pp 64442-64460.
2) Zhang X, Ming X (2020) An implementation for Smart Manufacturing Information System (SMIS) from an industrial practice survey. Computers & Industrial Engineering:106938. doi:https://doi.org/10.1016/j.cie.2020.106938. (accepted)
3) Zhang, X.; Ming, X.; Yin, D., Application of industrial big data for smart manufacturing in product service system based on system engineering using fuzzy DEMATEL. Journal of Cleaner Production 2020, 265.
4) Zhang, X.; Ming, X., Reference subsystems for Smart Manufacturing Collaborative System (SMCS) from multi-processes, multi-intersections and multi-operators. Enterprise Information Systems 2020, 14, (3), 282-307.
5) Yin, D.; Ming, X.; Zhang, X., Understanding data-driven cyber-physical-social system (D-CPSS) using a 7c framework in social manufacturing context. Sensors 2020, 20, (18), 1-19.
6) Yin, D.; Ming, X.; Zhang, X., Sustainable and smart product innovation ecosystem: An integrative status review and future perspectives. Journal of Cleaner Production 2020, 274.
7) Yin, D.; Ming, X.; Liu, Z.; Zhang, X., A fuzzy ANP-QFD methodology for determining stakeholders in product-service systems development from ecosystem perspective. Sustainability (Switzerland) 2020, 12, (8).
8) Wu, Z.; He, L.; Wang, Y.; Goh, M.; Ming, X., Knowledge recommendation for product development using integrated rough set-information entropy correction. Journal of Intelligent Manufacturing 2020, 31, (6), 1559-1578.
9) Song, W.; Li, J.; Li, H.; Ming, X., Human factors risk assessment: An integrated method for improving safety in clinical use of medical devices. Applied Soft Computing Journal 2020, 86.
10) Qu, Y.; Ming, X.; Qiu, S.; Liu, Z.; Zhang, X.; Hou, Z., Process optimization through closed-loop Kaizen with discrete event simulation: A case study in China. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 2020.
11) Qiu, S.; Ming, X., A fuzzy universal generating function-based method for the reliability evaluation of series systems with performance sharing between adjacent units under parametric uncertainty. Fuzzy Sets and Systems 2020.
12) Qiu, S.; Ming, X., An extended Birnbaum importance-based two-stage heuristic for component assignment problems under uncertainty. Reliability Engineering System Safety 2020, 204.
13) Qiu, S.; Ming, X., Explicit and implicit Bayesian Network-based methods for the risk assessment of systems subject to probabilistic common-cause failures. Computers In Industry 2020, 123.
14) Ming, X.; Xiao, N.; Yin, D.; Wang, X.; Wang, L.; Kong, F.; Wang, P.; Wu, Z.; Song, W.; Xu, Z.; Li, M.; He, L.; Li, X.; Zheng, M.; Liu, Z.; Qu, Y.; Zhang, X.; Chen, Z.; Qiu, S.; Xu, Z.; Zhang, Y.; Liu, X., Improving Innovative Design of Industries in an All-Round Way. In Springer Tracts in Mechanical Engineering, 2020; pp 61-85.
15) Liu, Z.; Ming, X.; Qiu, S.; Qu, Y.; Zhang, X., A framework with hybrid approach to analyse system requirements of smart PSS toward customer needs and co-creative value propositions. Computers and Industrial Engineering 2020, 139.
16) He, L.; Wu, Z.; Xiang, W.; Goh, M.; Xu, Z.; Song, W.; Ming, X.; Wu, X., A novel Kano-QFD-DEMATEL approach to optimise the risk resilience solution for sustainable supply chain. International Journal of Production Research 2020.
17) Han, T.; Dong, Z.; Li, Y.; Liu, X.; Ming, X.; Wen, B.; Xu, B.; Xin, X.; Xue, C.; Zhang, K.; Xu, Z.; Zhang, Y.; Xu, J., Strengthening the Basic Research of Innovative Design and the Construction of Common Key Technology Platform. In Springer Tracts in Mechanical Engineering, 2020; pp 141-159.
18) Chen, Z.; Ming, X.; Zhou, T.; Chang, Y.; Sun, Z., A hybrid framework integrating rough-fuzzy best-worst method to identify and evaluate user activity-oriented service requirement for smart product service system. Journal of Cleaner Production 2020, 253.
19) Chen, Z.; Ming, X.; Zhou, T.; Chang, Y., Sustainable supplier selection for smart supply chain considering internal and external uncertainty: An integrated rough-fuzzy approach. Applied Soft Computing Journal 2020, 87.
20) Chen, Z.; Ming, X.; Wang, R.; Bao, Y., Selection of design alternatives for smart product service system: A rough-fuzzy data envelopment analysis approach. Journal of Cleaner Production 2020, 273.
21) Chen, Z.; Ming, X.; Vareilles, E.; Battaia, O., Modularization of smart product service: A framework integrating smart product service blueprint and weighted complex network. Computers In Industry 2020, 123.
22) Chen, Z.; Ming, X., A rough–fuzzy approach integrating best–worst method and data envelopment analysis to multi-criteria selection of smart product service module. Applied Soft Computing Journal 2020, 94.
23) Chen, Z.; Lu, M.; Ming, X.; Zhang, X.; Zhou, T., Explore and evaluate innovative value propositions for smart product service system: A novel graphics-based rough-fuzzy DEMATEL method. Journal of Cleaner Production 2020, 243.
24) Zhang, X.; Ming, X.; Yin, D., Reference architecture of common service platform for Industrial Big Data (I-BD) based on multi-party co-construction. International Journal of Advanced Manufacturing Technology 2019, 105, (5-6), 1949-1965.
25) Zhang, X.; Ming, X.; Qu, Y., Top-level scenario planning and overall framework of smart manufacturing implementation system (SMIS) for enterprise. International Journal of Advanced Manufacturing Technology 2019, 104, (9-12), 3835-3848.
26) Zhang, X.; Ming, X.; Liu, Z.; Zheng, M.; Qu, Y., A new customization model for enterprises based on improved framework of customer to business: A case study in automobile industry. Adv. Mech. Eng. 2019, 11, (3).
27) Zhang, X.; Ming, X.; Liu, Z.; Yin, D.; Chen, Z.; Chang, Y., A reference framework and overall planning of industrial artificial intelligence (I-AI) for new application scenarios. International Journal of Advanced Manufacturing Technology 2019, 101, (9-12), 2367-2389.
28) Zhang, X.; Ming, X.; Liu, Z.; Yin, D.; Chen, Z., A reference system of smart manufacturing talent education (SMTE) in China. International Journal of Advanced Manufacturing Technology 2019, 100, (9-12), 2701-2714.
29) Zhang, X.; Ming, X.; Liu, Z.; Qu, Y.; Yin, D., State-of-the-art review of customer to business (C2B) model. Computers and Industrial Engineering 2019, 132, 207-222.
30) Zhang, X.; Ming, X.; Liu, Z.; Qu, Y.; Yin, D., An overall framework and subsystems for smart manufacturing integrated system (SMIS) from multi-layers based on multi-perspectives. International Journal of Advanced Manufacturing Technology 2019, 103, (1-4), 703-722.
31) Zhang, X.; Ming, X.; Liu, Z.; Qu, Y.; Yin, D., A framework and implementation of Customer Platform-connection manufactory to service (CPMS) model in product service system. Journal of Cleaner Production 2019, 230, 798-819.
32) Zhang, X.; Ming, X.; Liu, Z.; Qu, Y.; Yin, D., General reference model and overall frameworks for green manufacturing. Journal of Cleaner Production 2019, 237.
33) Qu, Y. J.; Ming, X. G.; Liu, Z. W.; Zhang, X. Y.; Hou, Z. T., Smart manufacturing systems: state of the art and future trends. International Journal of Advanced Manufacturing Technology 2019, 103, (9-12), 3751-3768.
34) Qu, Y.; Ming, X.; Qiu, S.; Zheng, M.; Hou, Z., An integrative framework for online prognostic and health management using internet of things and convolutional neural network. Sensors 2019, 19, (10).
35) Qu, Y.; Ming, X.; Ni, Y.; Li, X.; Liu, Z.; Zhang, X.; Xie, L., An integrated framework of enterprise information systems in smart manufacturing system via business process reengineering. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 2019, 233, (11), 2210-2224.
36) Liu, Z.; Ming, X.; Song, W., A framework integrating interval-valued hesitant fuzzy DEMATEL method to capture and evaluate co-creative value propositions for smart PSS. Journal of Cleaner Production 2019, 215, 611-625.
37) Liu, Z.; Ming, X., A methodological framework with rough-entropy-ELECTRE TRI to classify failure modes for co-implementation of smart PSS. Adv. Eng. Inf. 2019, 42.
38) Liu, Z.; Ming, X., A framework with revised rough-DEMATEL to capture and evaluate requirements for smart industrial product-service system of systems. Int J Prod Res 2019, 57, (22), 7104-7122.
39) Chen, Z.; Ming, X.; Zhang, X.; Yin, D.; Sun, Z., A rough-fuzzy DEMATEL-ANP method for evaluating sustainable value requirement of product service system. Journal of Cleaner Production 2019, 228, 485-508.
40) Wang, P. P.; Ming, X. G., Value evaluation method of industrial product-service based on customer perception. Int. J. Serv. Oper. Inf. 2018, 9, (1), 15-39.
41) Lu, H.; Jiang, S.; Song, W.; Ming, X., A rough multi-criteria decision-making approach for sustainable supplier selection under vague environment. Sustainability (Switzerland) 2018, 10, (8).
42) Li, M., Ming, X. G., Zheng, M. K., etc., An integrated TRIZ approach for technological process and product innovation[J]. Proceedings of the Institution of Mechanical Engineers Part B-Journal of Engineering Manufacture, May, 2017, 231 (6),pp 1062-1077.
43) Zheng, M. K., Ming, X. G., Construction of cyber-physical system-integrated smart manufacturing workshops: A case study in automobile industry[J]. Advances in Mechanical Engineering, Oct, 2017, 9 (10).
44) Zheng M K, Ming X G*, Zhang X Y, et al. MapReduce Based Parallel Bayesian Network for Manufacturing Quality Control[J]. Chinese Journal of Mechanical Engineering, 2017, 30(5): 1216-1226.
45) He L, Ming X G, Li M, et al. Understanding customer requirements through quantitative analysis of an improved fuzzy Kano’s model[J]. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2017, 231(4): 699-712.
46) Song W, Ming X G, Liu H C. Identifying critical risk factors of sustainable supply chain management: A rough strength-relation analysis method[J]. Journal of Cleaner Production, 2017, 143: 100-115.
47) He L, Song W, Wu Z, Xu Z, Zheng M, Ming X G. Quantification and Integration of an Improved Kano Model into QFD based on Multi-population Adaptive Genetic Algorithm[J]. Computers & Industrial Engineering, 2017.
48) Zheng M, Ming X G, Li G. Dynamic Optimization for IPS2 Resource Allocation Based on Improved Fuzzy Multiple Linear Regression[J]. Mathematical Problems in Engineering, 2017: 1-10.
49) Song W, Ming X G, Liu H C. Identifying critical risk factors of sustainable supply chain management: A rough strength-relation analysis method[J]. Journal of Cleaner Production, 2016.
50) Li X, Ming X G*, Song W, et al. A fuzzy technique for order preference by similarity to an ideal solution–based quality function deployment for prioritizing technical attributes of new products[J]. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2016, 230(12): 2249-2263.
51) Li M, Ming X G, He L, et al. A TRIZ-based trimming method for patent design around[J]. Computer-Aided Design, 2015, 62: 20-30.
52) Li M, Ming X G*, Zheng M, et al. An integrated TRIZ approach for technological process and product innovation[J]. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2015: 0954405415583885.
53) Song W, Ming X G, Han Y, et al. An integrative framework for innovation management of product–service system[J]. International Journal of Production Research, 2015, 53(8): 2252-2268.
54) He L, Ming X G*, Ni Y, et al. Ontology-based information integration and sharing for collaborative part and tooling development[J]. Concurrent Engineering, 2015, 23(3): 199-212.
55) He L, Ming X G*, Li M, et al. Understanding customer requirements through quantitative analysis of an improved fuzzy Kano’s model[J]. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2017, 231(4): 699-712.
56) Zheng M, Ming X G*, Li M, et al. A framework for Industrial Product–Service Systems risk management[J]. Proceedings of the Institution of Mechanical Engineers, Part O: Journal of Risk and Reliability, 2015, 229(6): 501-516.
57) Li X, Ni Y, Ming X G*, et al. Module-based similarity measurement for commercial aircraft tooling design[J]. International Journal of Production Research, 2015, 53(17): 5382-5397.
58) Xu Z, Ming X G*, Zheng M, et al. Cross-trained workers scheduling for field service using improved NSGA-II[J]. International Journal of Production Research, 2015, 53(4): 1255-1272.
59) Xu Z, Elomri A, Pokharel S, Ming X G. Product-service supplier pre-evaluation with modified fuzzy ANP reducing decision information distortion[J]. International Journal of Computer Integrated Manufacturing, 2015: 1-17.
60) Xu Z, Ming X G*, Wu T, et al. Product Service Supply-Chain Design[M]//Handbook of Manufacturing Engineering and Technology. Springer London, 2015: 3219-3237.
61) Song W, Ming X G, Wu Z, et al. A rough TOPSIS approach for failure mode and effects analysis in uncertain environments[J]. Quality and Reliability Engineering International, 2014, 30(4): 473-486.
62) Song W, Ming X G, Han Y. Prioritising technical attributes in QFD under vague environment: a rough-grey relational analysis approach[J]. International journal of production research, 2014, 52(18): 5528-5545.
63) Xu Z, Ming X G, Song W, et al. Towards a new framework: Understanding and managing the supply chain for product-service systems[J]. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2014, 228(12): 1642-1652.
64) Xu Z, Ming X G, Song W, et al. Collaborative project management: a systemic approach to heavy equipment manufacturing project management[J]. Systemic Practice and Action Research, 2014, 27(2): 141-164.
65) He L, Ni Y, Ming X G, et al. Integration of bill of materials with unified bill of materials model for commercial aircraft design to manufacturing[J]. Concurrent Engineering, 2014, 22(3): 206-217.
66) Wang P P, Ming X G, Wu Z Y, et al. Research on industrial product–service configuration driven by value demands based on ontology modeling[J]. Computers in Industry, 2014, 65(2): 247-257.
67) Wu Z Y, Ming X G, He L N, et al. Knowledge integration and sharing for complex product development[J]. International Journal of Production Research, 2014, 52(21): 6296-6313.
68) Wu Z, Ming X G, Song W, et al. Nuclear Product Design Knowledge System Based on FMEA Method in New Product Development[J]. Arabian Journal for Science & Engineering (Springer Science & Business Media BV), 2014, 39(3).
69) Song W, Ming X G, Xu Z. Risk evaluation of customer integration in new product development under uncertainty[J]. Computers & Industrial Engineering, 2013, 65(3): 402-412.
70) Song W, Ming X G, Wu Z, et al. Failure modes and effects analysis using integrated weight-based fuzzy TOPSIS[J]. International Journal of Computer Integrated Manufacturing, 2013, 26(12): 1172-1186.
71) Song W, Ming X G, Wang P. Collaborative product innovation network: Status review, framework, and technology solutions[J]. Concurrent Engineering, 2013, 21(1): 55-64.
72) Song W, Ming X G, Han Y, et al. A rough set approach for evaluating vague customer requirement of industrial product-service system[J]. International Journal of Production Research, 2013, 51(22): 6681-6701.
73) Song W, Ming X G, Xu Z. Integrating Kano model and grey–Markov chain to predict customer requirement states[J]. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2013, 227(8): 1232-1244.
74) Li M, Ming X G, Zheng M, et al. A framework of product innovative design process based on TRIZ and Patent Circumvention[J]. Journal of Engineering Design, 2013, 24(12): 830-848.
75) Wang L, Ming X G, Kong F B. Optimizing Design Alternation through Balancing Customer Satisfaction and Risk[C]//Advanced Materials Research. Trans Tech Publications, 2013, 662: 648-652.
76) Xu Z, Ming X G, Zhou J, et al. Management optimisation based on dynamic SKU for RFID-enabled warehouse management in the steel supply chain[J]. International Journal of Production Research, 2013, 51(10): 2981-2996.
77) He L N, Ming X G, Kong F B, et al. Research on airplane BOM management based on single source of product data[C]//Applied Mechanics and Materials. Trans Tech Publications, 2012, 232: 184-188.
78) Wang X, Kong F, Ming X G, et al. A Buffered-State Front Line Approach in Multi-tier Supplier Collaborative Project Controlling[J]. Physics Procedia, 2012, 24: 580-586.
79) Kong F B, Ming X G, Wang L, et al. Framework of a representation model for modular product development[J]. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2012, 226(5): 941-949.
80) Wu Z Y, Ming X G, Song W Y, et al. The Design and Realization of E-Learning System for Organizational Learning[C]//Advanced Materials Research. Trans Tech Publications, 2012, 422: 482-485.
81) Song W Y, Ming X G, Wu Z Y, et al. A Risk Management Framework for Users’ Integratation in Product Innovation[C]//Advanced Materials Research. Trans Tech Publications, 2012, 415: 106-111.
82) Xu Z T, Ming X G, Wu Z Y, et al. The Evaluation of Multi-Supplier Quality Competitiveness Based on TFN-AHP Method[C]//Advanced Materials Research. Trans Tech Publications, 2012, 421: 595-600.
83) Kong F, Ming X G, Wang L, et al. An integrated modularity approach for green product development[J]. International Journal of Environmental Technology and Management, 2011, 14(5-6): 397-416.
84) Wang P, Ming X G, Li D, et al. Achieving sustainability through product-service life cycle management[J]. International Journal of Environmental Technology and Management, 2011, 14(5-6): 516-530.
85) Wang P P, Ming X G, Zhang D, et al. Inventory Control Policy of Service Parts under the Background of Service-Embedded Manufacturing[C]//Advanced Materials Research. Trans Tech Publications, 2011, 201: 2509-2512.
86) Wang P P, Ming X G, Li D, et al. Status review and research strategies on product-service systems[J]. International Journal of Production Research, 2011, 49(22): 6863-6883.
87) Wang P P, Ming X G, Li D, et al. Modular development of product service systems[J]. Concurrent engineering, 2011: 1063293X11403508.
88) Wu Z Y, Ming X G, Song W Y, et al. Research on Large Steam Butterfly Valve for Steam Turbine DFMEA Tool System Based on Knowledge Management[C]//Advanced Materials Research. Trans Tech Publications, 2011, 291: 2961-2964.
89) Wang L, Ming X G, Kong F B, et al. Focus on implementation: a framework for lean product development[J]. Journal of Manufacturing Technology Management, 2011, 23(1): 4-24.
90) Wang L, Ming X G, You J, et al. An Approach for Lean Product Innovation Management[C]//Applied Mechanics and Materials. Trans Tech Publications, 2011, 55: 2075-2079.
91) Song W Y, Ming X G, Wu Z Y, et al. A Bayesian Network Based Approach to Defect Prediction in New Product Development[C]//Advanced Materials Research. Trans Tech Publications, 2011, 328: 241-245.
92) Zhao C L, Ming X G, Wang X H. Supplier Involved Collaborative Project Management in Complex Product Development[C]//Advanced Materials Research. Trans Tech Publications, 2011, 255: 3022-3026.
93) Kong F B, Ming X G, Wang L, et al. Development of Product Options for Modular Product Development[C]//Applied Mechanics and Materials. Trans Tech Publications, 2011, 55: 2147-2152.
94) Wang L, Ming X G, You J, et al. A new design methodology for metadata of master data management system[J]. International Journal of Innovative Computing, Information and Control. v6 i7, 2010: 3219-3228.
95) Wang X H, Fu L W, Ming X G, et al. Supplier-involved collaborative product development in PLM[J]. International Journal of Computer Applications in Technology, 2010, 37(3-4): 244-256.
96) Lin Y, Ming X G. Multi-level contextual product development knowledge management in PLM[J]. International Journal of Computer Applications in Technology, 2010, 37(3-4): 279-286.
97) Zhang Q, Ming X G, Lu C. Reliability evaluation of conceptual colour design based on rough sets[J]. International Journal of Computer Applications in Technology, 2010, 37(3-4): 204-209.
98) Zhang Q, Kang W, Zhao C, Ming X G. Aesthetic coloring for complex layout using genetic algorithm[C]//Intelligent Systems, 2009. GCIS'09. WRI Global Congress on. IEEE, 2009, 3: 406-410.
99) Kong F B, Ming X G, Wang L, et al. On modular products development[J]. Concurrent Engineering, 2009, 17(4): 291-300.
100) Wang X H, Ming X G, Kong F B, et al. Collaborative project management with supplier involvement[J]. Concurrent Engineering, 2008, 16(4): 253-261.
101) Ming X G, Yan J Q, Wang X H, et al. Collaborative manufacturing process planning for distributed integration in tooling industry[J]. International Journal of Manufacturing Technology and Management, 2008, 14(1-2): 17-34.
102) Ming X G, Yan J Q, Wang X H, et al. Collaborative process planning and manufacturing in product lifecycle management[J]. Computers in Industry, 2008, 59(2): 154-166.
103) Yan J Q, Ming X G, Lu W F, et al. Special issue on: New research advances in product lifecycle management[J]. Concurrent Engineering, 2008, 16(4): 241-241.
104) Ming X G, Yan J Q, Lu W F, et al. Mass production of tooling product families via modular feature-based design to manufacturing collaboration in PLM[J]. Journal of Intelligent Manufacturing, 2007, 18(1): 185-195.
105) Wang X H, Ming X G, Yan J Q, et al. Collaborative design and manufacturing process planning in tooling industry[J]. International Journal of Computer Applications in Technology, 2007, 30(3): 221-234.
106) Ni Q, Lu W F, Yarlagadda P K D V, Ming X G. Business information modeling for process integration in the mold making industry[J]. Robotics and Computer-Integrated Manufacturing, 2007, 23(2): 195-207.
107) Ni Q, Lu W F, Yarlagadda P K D V, Ming X G. A collaborative engine for enterprise application integration[J]. Computers in Industry, 2006, 57(7): 640-652.
108) He W, Ming X G, Ni Q F, et al. A unified product structure management for enterprise business process integration throughout the product lifecycle[J]. International journal of production research, 2006, 44(09): 1757-1776.
109) Ming X G, Yan J Q, Lu W F, et al. Technology solutions for collaborative product lifecycle management–status review and future trend[J]. Concurrent Engineering, 2005, 13(4): 311-319.
110) Ming, X. G., Yan, J. Q., Lu, W. F., Ma, D. Z., Process-Oriented Product Lifecycle Management for Customer-Centric Virtual Enterprise, International Journal of Agile Manufacturing, Vol. 7, No. 2, 2004, pp.1-9.
111) Ming, X. G., Ong, S. K., Lu, W. F., Nee, A. Y. C., 2004, A Framework for an Integrated Collaborative Manufacturing System for the Tooling Industry, International Journal of Agile Manufacturing, Vol. 7, No. 1, pp.9-21.
112) Ming, X. G. et al., 2001, Intelligent approaches to tolerance allocation and manufacturing operations selection in process planning, Journal of Materials Processing Technology, Vol. 117, 75-83.
113) Ming, X. G. et al, 2000, Intelligent setup planning in manufacturing by the neural networks based approach, Journal of Intelligent Manufacturing, Vol. 11, No. 3, 311-331.
114) Ming, X. G. et al, 2000, A Hybrid-Genetic-Hopfield based approach to optimal process plan selection, International Journal of Production Research, Vol. 38, No. 8, 1823-1839.
115) Ming, X. G. et al, 1999, Efficiency of applying Hopfield neural networks with simulated annealing and genetic algorithms for getting optimal solution to m-partite graph problem, International Journal of Computer Applications in Technology, Vol. 12, No. 6, 339-348.
116) Ming, X. G., Yan, J. Q. et al, 1999, A hybrid intelligent inference model for process planning in manufacturing, Integrated Manufacturing Systems, Vol. 10, No. 6, 343-53.
117) Ming, X. G. et al, 1998, Efficiency of applying Hopfield neural networks with simulated annealing and genetic algorithms for getting optimal solution to m-partite graph problem, International Journal of Materials and Product Technology, Vol. 13, No. 3-6, 195-213.
118) Ming, X. G., Yan, J. Q. et al, 1998, A PDES/STEP-based information model for computer-aided process planning, Robotics and Computer-Integrated Manufacturing, Vol. 14, No. 5-6, 347-361.
119) Chan, F. T. S., Mak, K. L, Luong, L. H. S, Ming, X. G., 1998, Machine-component grouping using genetic algorithms. Robotics & Computer-Integrated Manufacturing, Vol.14, No.5-6, 339-346.
120) Ming, X. G., Yan, J. Q., Ma, D. Z., Zhang, H. Q. et al, 1997, A hybrid-expert-neural based function model for CAPP, International Journal of Computer Integrated Manufacturing, 10(1-4), 105-116.

代表性著作:
1) 明新國(guó), 孔凡斌, 何麗娜. 面向客戶選項(xiàng)的模塊化產(chǎn)品開發(fā)[M]. 北京:機(jī)械工業(yè)出版社, 2017.
2) 明新國(guó), 余鋒, 李淼. 工業(yè)企業(yè)產(chǎn)品創(chuàng)新[M]. 北京:機(jī)械工業(yè)出版社, 2016.
3) 明新國(guó), 王鵬鵬, 徐志濤. 工業(yè)產(chǎn)品服務(wù)價(jià)值創(chuàng)造[M]. 北京:機(jī)械工業(yè)出版社, 2015.
4) 明新國(guó), 余鋒, 王鵬鵬. 服務(wù)型制造業(yè)體系構(gòu)建與案例分析[M]. 上海:上海交通大學(xué)出版社, 2011.

軟件版權(quán)登記及專利

發(fā)明專利名稱 專利號(hào) 授權(quán)公告日
產(chǎn)品服務(wù)供應(yīng)鏈優(yōu)化設(shè)計(jì)方法 201420131352.0 2017.02.15
一種實(shí)現(xiàn)FMEA數(shù)據(jù)多維處理系統(tǒng)及處理方法 201210180245.8 2016.08.17
 
實(shí)用新型專利 專利號(hào) 授權(quán)公告日 排序
一種實(shí)現(xiàn)FMEA數(shù)據(jù)多維處理系統(tǒng) 201220259095.5 2013.04.17

2005年,上海市浦江人才計(jì)劃。

2025年9月,美國(guó)國(guó)家人工智能科學(xué)院(NAAI),院士

封开县| 招远市| 林周县| 隆化县| 阳原县| 萝北县| 揭东县| 宁津县| 遵义市| 巴林左旗| 上虞市| 巩义市| 武穴市| 西藏| 林甸县| 天镇县| 昌图县| 崇明县| 南投市| 深圳市| 武平县| 全州县| 江油市| 都安| 手游| 依安县| 天台县| 吉木萨尔县| 武胜县| 通化县| 彩票| 大宁县| 嘉定区| 新宁县| 江永县| 若尔盖县| 辽源市| 阳东县| 板桥市| 新余市| 富宁县|