汪峥

时间:2024-01-19 18:12:36编辑:影视君

汪峥的个人简介

汪峥?1973年生,东南大学自动化学院教授,博士生导师,IEEE高级会员(Senior Member)

基本介绍

姓名: 汪峥

任教专业: 工学-控制科学与工程

性别: 男

所在院系: 东南大学自动化学院

职称: 教授,博士生导师

个人简历

汪峥, 男, 1973年生,东南大学自动化研究所副教授, 硕士生导师;2001年11月至2003年12月于上海交通大学计算机集成制造研究所从事博士后研究;2001年10月于东南大学自动化研究所获得控制理论与控制工程专业工学博士学位;1998年3月于东南大学自动化研究所获得控制理论与控制工程专业工学硕士学位;1993年6月于长春光学精密机械学院获得机械工程专业工学学士学位。

教育背景

2001 东南大学,控制理论与控制工程,工学博士

1998 东南大学,控制理论与控制工程,工学硕士

1993 长春光学精密机械学院,机械工程,工学学士

工作经历

1993-1995 电子工业部第十四研究所,助理工程师

2001-2003上海交通大学机械与动力工程学院,博士后研究人员

2004.04 -2012.04

东南大学自动化学院,副教授

2012.04 -至今?

东南大学自动化学院,教授,博士生导师

2004.04 u2013 2004.07

香港大学工业与制造系统工程系,研究助理

2008.07 u2013 2008.09

香港科技大学工业工程与物流管理系,访问学者

2009.01 u2013 2010.01

麻省理工学院工程系统学部,访问副教授

2012.07 u2013 2012.08,?2014.07 u2013 2014.08

2015.07 u2013 2015.08,?2016.07 u2013 2016.08

香港理工大学工业及系统工程学系,访问学者

研究领域

库存及供应链系统的鲁棒控制;

制造系统分析与控制;

基于射频识别(RFID)技术的制造系统监控;

产品与工程系统设计过程分析与优化;

优化方法与最优控制;

离散事件系统(Discrete Event Systems)理论?

研究项目

2014-2017“克服库存不精确的鲁棒集成补货、生产控制及分销策略”.

国家自然科学基金面上项目,项目编号: 61374198.

项目负责人,?在研.

2014-2016“制造系统设计与控制中的鲁棒耦合优化方法”

教育部高等学校博士学科点专项科研基金博导类课题,?

项目编号:?20130092110024.

项目负责人,?在研.

2010-2012“基于RFID/EPC?技术的网络化单件生产实时监控”

国家自然科学基金面上项目,项目编号: 60974096.

项目负责人,?已结题.

2010-2013“知识化制造系统优化方法研究与应用”

国家自然科学基金重点项目,项目编号: 60934008.?

项目参加者(排名第三),?已结题.

2006-2008 “精益设计过程动力学宏观与微观综合分析”

国家自然科学基金青年基金项目,项目编号: 50505006.

项目负责人, 已结题.

[1] 国家自然科学基金项目“CIMS并行过程组织、过程建模与仿真的定量研究” (项目编号:69884001, 第二完成人, 1999-2001);

[2] 国家自然科学基金重点项目“虚拟制造的理论与技术基础” (项目编号:59889505, 参加者, 1999-2002);

[3] 国家自然科学基金项目“网络化制造系统的智能协同控制的研究” (项目编号:50375098, 参加申请和研究工作);

发表的期刊论文

!--[if !supportLists]--[1] !--[endif]--Ming Li, Zheng Wang and Haoxun Chen, 2016. A robust reorder-time/order-quantity policy under invisible stock loss. IEEE Transactions on Systems, Man, and Cybernetics: Systems, DOI: 10.1109/TSMC.2016.2560698. (第一作者为博士生,本人为通讯作者)

!--[if !supportLists]--[2] !--[endif]--Ming Li, Zheng Wang and Felix T. S. Chan, 2016. An inventory routing policy under replenishment lead time. IEEE Transactions on Systems, Man, and Cybernetics: Systems, DOI: 10.1109/TSMC.2016.2562561. (第一作者为博士生,本人为通讯作者)

!--[if !supportLists]--[3] !--[endif]--Ming Li, Zheng Wang and Felix T. S. Chan, 2016. A robust inventory routing policy under inventory inaccuracy and replenishment lead-time. Transportation Research Part E, Vol. 91, pp. 290u2013305. (第一作者为博士生,本人为通讯作者)

!--[if !supportLists]--[4] !--[endif]--Zheng Wang and Stanley B. Gershwin, 2015. Heuristic production and sale policy for a two-product-type manufacturing system with downward substitution. IEEE Transactions on Systems, Man, and Cybernetics: Systems, Vol. 45, No. 6, pp. 929-942. (本人为通讯作者,合作者为MIT教授)

!--[if !supportLists]--[5] !--[endif]--Zheng Wang and Felix T. S. Chan, 2015. A robust replenishment and production control policy for a single-stage production/inventory system with inventory inaccuracy. IEEE Transactions on Systems, Man and Cybernetics: Systems, Vol. 45, No. 2, pp. 326-337.?(本人为通讯作者,合作者为香港理工大学教授)

!--[if !supportLists]--[6] !--[endif]--Ming Li, Li Yao, Jin Yang and Zheng Wang, 2015. Due date assignment and dynamic scheduling of one-of-a-kind assembly production with uncertain processing time. International Journal of Computer Integrated Manufacturing, Vol. 28, No. 6, pp. 616-627. (第一作者为博士生,(本人为通讯作者)

!--[if !supportLists]--[7] !--[endif]--Felix T. S. Chan and Zheng Wang, 2014. Robust production control policy for a multiple machines and multiple product-types manufacturing system with inventory inaccuracy. International Journal of Production Research, Vol. 52, No. 16, pp. 4803-4819.

!--[if !supportLists]--[8] !--[endif]--Zheng Wang and Felix T. S. Chan, 2014. Independence of the hedging points in PHP control policy. Journal of the Operational Research Society, Vol. 65, No. 5, pp. 645-659. ((本人为通讯作者,合作者为香港理工大学教授))

!--[if !supportLists]--[9] !--[endif]--Zheng Wang and Christopher L. Magee, 2012. Convergence analysis and iteration estimation for a coupled design process with overlap in redesign. IEEE Transactions on Engineering Management, Vol. 59, No. 4, pp. 621-633.?(本人为通讯作者,合作者为MIT教授)

!--[if !supportLists]--[10]? !--[endif]--Zheng Wang and Yugang Yu, 2012. Robust production control policy for a single machine and single part-type manufacturing system with inaccurate observation of production surplus. IIE Transactions, Vol. 44, No. 12, pp. 1061-1082.?(本人为通讯作者,合作者为中国科学技术大学教授)

!--[if !supportLists]--[11]? !--[endif]--Ying Yan and Zheng Wang, 2012. A two-layer dynamic scheduling method for minimizing the earliness and tardiness of a reentrant production line. International Journal of Production Research, Vol. 50, No. 2, pp. 499-515. (第一作者为硕士生,本人为通讯作者)

!--[if !supportLists]--[12]? !--[endif]--Yugang Yu, Zheng Wang and Liang Liang, 2012. A vendor managed inventory supply chain with deteriorating raw materials and products. International Journal of Production Economics, Vol. 136, pp. 266-274.

!--[if !supportLists]--[13]? !--[endif]--Bin Wang, Zilong Cao, Ying Yan, Weiping Liu and Zheng Wang, 2011 Fundamental technology for RFID-based supervisory control of shop floor production system. International Journal of Advanced Manufacturing Technology, Vol. 57, pp. 1123u20131141. (第一作者为博士生,本人为通讯作者)

!--[if !supportLists]--[14]? !--[endif]--Zheng Wang, Zilong Cao, 2010. Time-synchronizing control of self-organizing shop floors for networked manufacturing. Journal of Intelligent Manufacturing, Vol. 21, No. 6, pp. 647-656. (本人为通讯作者,合作者为硕士生)

!--[if !supportLists]--[15]? !--[endif]--Haiyan Huang and Zheng Wang, 2010. Solving coupled task assignment and capacity planning problems for a job shop by using a concurrent genetic algorithm. International Journal of Production Research, Vol. 48, No. 24, pp. 7507-7522. (第一作者为硕士生,本人为通讯作者)

!--[if !supportLists]--[16]? !--[endif]--Zheng Wang, Qi Chen, Jia Hu and Haiyan Huang, 2010. A proportionalu2013integral control policy of two coupled concurrent design optimization processes. Concurrent Engineering: Research and Applications, Vol. 18, No. 1, pp. 55-63.?(本人为通讯作者,合作者为硕士生)

!--[if !supportLists]--[17]? !--[endif]--Hong-Sen Yan, Bin Wang, Duo Xu and Zheng Wang, 2010. Computing completion time and optimal scheduling of design activities in concurrent product development process. IEEE Transactions on Systems, Man, and Cybernetics―Part A: Systems and Humans, Vol. 40, No. 1, pp. 76-89.

!--[if !supportLists]--[18]? !--[endif]--Felix T. S. Chan, Zheng Wang, Jie Zhang and S. Wadhwa, 2008. Two-level hedging point control of a manufacturing system with multiple product-types and uncertain demands. International Journal of Production Research, Vol.46, No.12, pp. 3259-3295.

!--[if !supportLists]--[19]? !--[endif]--Felix T. S. Chan, Zheng Wang and Jie Zhang, 2007. A two-level hedging point policy for controlling a manufacturing system with time-delay, demand uncertainty and extra capacity. European Journal of Operational Research, Vol. 176, pp. 1528u20131558.

!--[if !supportLists]--[20]? !--[endif]--Zheng Wang and Hong-Sen Yan, 2005. Optimizing the concurrency for a group of design activities. IEEE Transactions on Engineering Management, Vol. 52, No. 1, pp. 102-118.

!--[if !supportLists]--[21]? !--[endif]--Zheng Wang, Jie Zhang and Felix T. S. Chan, 2005. A hybrid Petri nets model of networked manufacturing systems and its control system architecture. Journal of Manufacturing Technology Management, Vol. 16, No. 1, pp. 36-52.

!--[if !supportLists]--[22]? !--[endif]--Hong-Sen Yan, Zheng Wang and Xiao-Cheng Jiao, 2003. Modeling, scheduling and simulation of product development process by extended stochastic high-level evaluation Petri nets. Robotics and Computer Integrated Manufacturing, Vol. 19, No. 4, pp. 329-342.

!--[if !supportLists]--[23]? !--[endif]--Zheng Wang, Hong-Sen Yan and Xu-Dong Ma, 2003. A quantitative approach to the organization of cross-functional teams in concurrent engineering. International Journal of Advanced Manufacturing Technology, Vol. 21, No. 21, pp. 879-888.

!--[if !supportLists]--[24]? !--[endif]--Hong-Sen Yan, Zheng Wang and Min Jiang, 2002. A quantitative approach to the process modeling and planning in concurrent engineering. Concurrent Engineering: Research and Applications, Vol. 10, No. 2, pp. 97-111.

发表的会议论文

!--[if !supportLists]--[25]? !--[endif]--Minhu Lyu, Zheng Wang and Felix T. S. Chan, 2015. Mixed integer programming model and heuristic algorithm for production planning of continuous casting and hot rolling. The 11th IEEE International Conference on Automation Science and Engineering (IEEE CASE 2015), August 24u201328, 2015, Gothenburg, Sweden, pp. 1503-1508. (?第一作者为硕士生)

!--[if !supportLists]--[26]? !--[endif]--Xue Qiao, Zheng Wang, Haoxun Chen and Ming Li, 2015. Robust replenishment control policies for a production/inventory system with invisible stock loss. The 15th IFAC Symposium on Information Control Problems in Manufacturing, May 11-13, 2015, Ottawa, Canada, pp. 1807-1812.(第一作者为博士生)

!--[if !supportLists]--[27]? !--[endif]--Wenliang Chen, Zheng Wang and Felix T. S. Chan, 2015. Robust production capacity planning of a wafer fabrication system with uncertain wafer lots transfer probabilities. The 15th IFAC Symposium on Information Control Problems in Manufacturing, May 11-13, 2015, Ottawa, Canada, pp. 1631-1636. (?第一作者为博士生)

!--[if !supportLists]--[28]? !--[endif]--Zheng Wang, Xue Qiao and Haoxun Chen, 2015. Integrated ordering and pricing policy for perishable products under inventory inaccuracy. The 26th Annual Conference of Production and Operations Society, May 8-11, 2015, Washington DC, U.S.A.

!--[if !supportLists]--[29]? !--[endif]--Ming Li, Zheng Wang, Haoxun Chen and Wenliang Chen, 2015. A robust distribution policy under inaccurate inventory records. The 26th Annual Conference of Production and Operations Society, May 8-11, 2015, Washington DC, U.S.A. (第一作者为博士生)

!--[if !supportLists]--[30]? !--[endif]--Ming Li, Felix T. S. Chan and Zheng Wang, 2014. A Robust (r, Q) policy for a simple VMI system with inventory inaccuracy and time-delay. The 10th IEEE International Conference on Automation Science and Engineering (IEEE CASE 2014), August 18u201321, 2014, Taipei, Taiwan, pp. 652-657. (?第一作者为博士生)

!--[if !supportLists]--[31]? !--[endif]--Zheng Wang, Hualing Mu and Jia You, 2014. Analysis of a serial production line with single part-type and multiple parallel-machine workstations. The 12th IFAC-IEEE International Workshop on Discrete Event Systems (IFAC WODES 2014), May 14u201316, 2014, ENS de Cachan, Cachan, France.

!--[if !supportLists]--[32]? !--[endif]--Zheng Wang and Felix T. S. Chan, 2013. A Robust production control policy for a multiple-stage production system with inventory inaccuracy and time-delay. The 9th IEEE International Conference on Automation Science and Engineering (IEEE CASE 2013), August 17u201321, 2013, Madison, Wisconsin, U. S. A., pp. 77-82.

!--[if !supportLists]--[33]? !--[endif]--Zheng Wang and Stanley B. Gershwin, 2011. Heuristic production control policy for a two-product-type manufacturing system with down-grade sale. The 8th Conference on Stochastic Models of Manufacturing and Service Operation (SMMSO 2011), May 28 u2013 June 2, 2011, Kusadasi, Turkey.

[34]?Zheng Wang and Christopher L. Magee, 2010. Sufficiency condition for stability of a fully coupled design process. The 12th International Dependency and Structure Modelling Conference, DSMu201910, July 22 u2013 23, 2010, Cambridge, U. K.

[1] Zheng Wang and Hong-Sen Yan, 2005. Optimizing the concurrency for a group of design activities. IEEE Transactions on Engineering Management, Vol.52, No.1, pp.102-118.(SCI, EI收录)

[2] Zheng Wang, Jie Zhang and Felix T. S. Chan, 2005. A hybrid Petri nets model of networked manufacturing systems and its control system architecture. Journal of Manufacturing Technology Management, Vol.16, No.1, pp.36-52. (EI收录)

[3] Hong-Sen Yan, Zheng Wang and Xiao-Cheng Jiao, 2003. Modeling, scheduling and simulation of product development process by extended stochastic high-level evaluation Petri nets. Robotics and Computer Integrated Manufacturing, Vol.19, No.4, pp. 329-342. (SCI, EI收录)

[4] Zheng Wang, Hong-Sen Yan and Xu-Dong Ma, 2003. A quantitative approach to the organization of cross-functional teams in concurrent engineering. International Journal of Advanced Manufacturing Technology, Vol.21, No.21, pp.879-888. (SCI, EI收录)

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