China Mechanical Engineering ›› 2014, Vol. 25 ›› Issue (7): 911-917.
Previous Articles Next Articles
Shen Lei;Guo Gang;Dong Yuanfa;Luo Yu
Online:
2014-04-10
Published:
2014-04-11
Supported by:
沈磊;郭钢;董元发;罗妤
基金资助:
CLC Number:
Shen Lei, Guo Gang, Dong Yuanfa, Luo Yu. Equipment Manufacturing Industry-oriented Respond Model of Cloud Manufacturing Service Requirements and Resources[J]. China Mechanical Engineering, 2014, 25(7): 911-917.
沈磊, 郭钢, 董元发, 罗妤. 面向装备制造行业的云制造服务需求与资源响应模型[J]. 中国机械工程, 2014, 25(7): 911-917.
[1]任磊,张霖,张雅彬,等. 云制造资源虚拟化研究[J]. 计算机集成制造系统, 2011,17(3):512-518. Ren Lei, Zhang Lin, Zhang Yabin, et al. Resource Virtualization in Cloud Manufacturing[J]. Computer Integrated Manufacturing Systems, 2011,17(3):512-518. [2]曹啸博,许承东,胡春生. 云制造环境中的虚拟制造单元[J]. 计算机集成制造系统,2012,18(7):1415-1425. Cao Xiaobo, Xu Chengdong, Hu Chunsheng. Virtual Manufacturing Unit in Cloud Manufacturing[J]. Computer Integrated Manufacturing Systems, 2012,18(7):1415-1425. [3]王正成,黄洋. 面向服务链构建的云制造资源集成共享技术研究[J]. 中国机械工程,2012,23(11):1324-1331. Wang Zhengcheng, Huang Yang. Research on Integration Sharing Technology of Cloud Manufacturing Resource Oriented to Service Chain Construction[J]. China Mechanical Engineering, 2012,23(11):1324-1331. [4]梁峰,江志斌 ,陶俐言. 基于元资源的制造资源建模方法研究[J]. 计算机集成制造系统,2008,14(12):2306-2311. Liang Feng, Jiang Zhibin, Tao Liyan. Model Building Approach of Manufacturing Resource Based on Meta-resource[J]. Computer Integrated Manufacturing Systems, 2008,14(12):2306-2311. [5]刘烨, 史明华. 基于OWL-DL的制造加工服务描述建模方法[J]. 计算机集成制造系统,2011,17(4):767-775. Liu Ye, Shi Minghua. Machining Services Description Modeling Based on OWL DL[J]. Computer Integrated Manufacturing Systems, 2011,17(4):767-775. [6]姚倡锋, 张定华, 卜昆. 基于物理制造单元的网络化制造资源建模及信息集成[J]. 计算机集成制造系统,2008,14(4):667-674. Yao Changfeng, Zhang Dinghua, Bu Kun, et al. Networked Manufacturing Resources Modeling and Information Integration Based on Physical Manufacturing Unit[J]. Computer Integrated Manufacturing Systems, 2008,14(4):667-674. [7]尹超,夏卿,黎振武. 基于OWL-S的云制造服务语义匹配方法[J]. 计算机集成制造系统, 2012, 18(7):1495-1502. Yin Chao,Xia Qing, Li Zhenwu. Semantic Matching Technique of Cloud Manufacturing Service Based on OWL-S[J]. Computer Integrated Manufacturing Systems, 2012, 18(7):1495-1502. [8]王时龙,宋文艳,康玲,等. 云制造环境下制造资源优化配置研究[J]. 计算机集成制造系统, 2012,18(7): 1396-1405. Wang Shilong, Song Wenyan, Kang Ling, et al. Manufacturing Resource Allocation Based on Cloud Manufacturing[J]. Computer Integrated Manufacturing Systems, 2012,18(7): 1396-1405. [9]高一聪,冯毅雄,谭建荣,等. 制造资源耦合映射与模糊匹配技术研究[J]. 计算机辅助设计与图形学学报, 2012, 24(3): 290-298. Gao Yicong, Feng Yixiong, Tan Jianrong. Research on Coupled Mapping and Service Matching Technology of Cloud Manufacturing Based on Fuzzy Integral[J]. Journal of Computer-Aided Design & Computer Graphics, 2012,24(3):290-298. [10]Agarwal S, Studer R. Automatic Matchmaking of Web Services[C]//Proceedings of International Conference on World Wide Web Services. New York: ACM Press, 2006:45-54. [11]尹胜, 尹超, 刘飞,等. 多任务外协加工资源优化配置模型及遗传算法求解[J]. 重庆大学学报,2010,33(3):49-55. Yin Sheng, Yin Chao, Liu Fei, et al. Optimal Allocation Model and Its Genetic Algorithms of Outsourcing Production Resources in Multi-task[J]. Journal of Chongqing University, 2010,33(3):49-55. [12]周珂, 吕民, 王刚,等. 制造任务分解与制造单元级资源配置协同优化[J]. 哈尔滨工业大学学报,2009,41(11):47-52. Zhou Ke, Lü Min, Wang Gang, et al. Collaborative Optimization of Manufacture Task Decomposition and Resource Deployment of Manufacturing Unit[J]. Journal of Harbin Institute of Technology, 2009,41(11):47-52. [13]张卫, 潘晓弘, 田景红,等. 基于灰色理论的制造任务分配服务研究[J]. 中国机械工程, 2012,21(14):1694-1703. Zhang Wei, Pan Xiaohong, Tian Jinghong, et al. Manufacture Task Allocation Service Based on Grey Theory[J]. China Mechanical Engineering, 2012,21(14):1694-1703. [14]Massimo P, Takhiro K, Terry R, et al. Semantic Matching of Web Service Capabilities[C]//Proceeding of the 1st International Semantic Web Conference. New York, N.Y., USA,Springer, 2002:34-43. [15]Li Mazhen, Yu Bin, Huang Chang, et al. Service Matching with Rough Sets[C]//Proceedings of the 6th IEEE International Symposium on Cluster Computing and the Grid. Washington, D.C., USA: IEEE,2006: 123-130. |
[1] | LI Rongqi, YAN Tao, HE Zhicheng, MI Dong, JIANG Chao, ZHENG Jing. A Topology Optimized Design Method for High-performance Structures with Fluid-thermal-mechanics Coupling [J]. China Mechanical Engineering, 2024, 35(03): 487-497. |
[2] | MEI Jie, QIN Jiarui, CHEN Dingfang, CHEN Kun, . SLAM-based Underwater Image Enhanced Visual 3D Reconstruction Method [J]. China Mechanical Engineering, 2024, 35(02): 268-279. |
[3] | XIAO Gang, GU Hairui, DONG Jinjin, WANG Qibing, LU Jiawei. Simulation Data-driven Migration Diagnosis Method for Guide Rail Faults in Long-term Service Elevators [J]. China Mechanical Engineering, 2024, 35(01): 125-135. |
[4] | LIU Xiaobao, YAN Qingxiu, YI Bin, YAO Tingqiang, GU Wenjuan. Optimization of Process Parameters in Process Manufacturing Based on Ensemble Learning and Improved Particle Swarm Optimization Algorithm [J]. China Mechanical Engineering, 2023, 34(23): 2842-2853. |
[5] | GUO Jutao, LYU Youlong, DAI Zheng, ZHANG Jie, GUO Yu. Compound Rules and Reinforcement Learning Based Scheduling Method for Mixed Model Assembly Lines [J]. China Mechanical Engineering, 2023, 34(21): 2600-2606,2614. |
[6] | WU Dianjian, ZHANG Sanqiang, YANG Guangyou, . Optimal Layout Method of 2D Irregular Parts under Complex Cutting Process Constraints [J]. China Mechanical Engineering, 2023, 34(21): 2615-2621. |
[7] | JIANG Shikuo, WANG Xiaoping, WANG Kai, JIN Jiang. Fixed-angle Method for Examines Automatic Fiber Placement Based on Point Cloud Surfaces [J]. China Mechanical Engineering, 2023, 34(21): 2629-2636,2645. |
[8] | WANG Wei, JI Xiaogang, FANG Chuang, NIU Guofa. Fatigue Life Prediction of Flexible Lattice Structures Prepared by Digital Light Process [J]. China Mechanical Engineering, 2023, 34(21): 2637-2645. |
[9] | ZHANG Yuhang, SUN Yuwen, XU Jinting. Hybrid Algorithm of Machining Feature Segmentation and Recognition for Aero-engine Casings [J]. China Mechanical Engineering, 2023, 34(20): 2475-2481. |
[10] | XUE Kai, GUO Runlan, HUANG Huiyang, HUANG Hua. Structural Optimization Method of Additive Manufacturing Model Based on Point Cloud Data [J]. China Mechanical Engineering, 2023, 34(20): 2482-2488. |
[11] | XU Meijiao, XUE Shanliang, ZHANG Hui, ZHOU Guoqing, LU Honggen. Manufacturing Readiness Level Assessment Method of Complex Product Assembly Based on BP-AdaBoost Algorithm [J]. China Mechanical Engineering, 2023, 34(20): 2513-2519. |
[12] | TWANG Wei, MA Qianlun, BAI Zhenhua, WANG Ziang. Mechanics Property Prediction of Cold Rolled High Strength Steel Coils Based on GBD#br# [J]. China Mechanical Engineering, 2023, 34(18): 2222-2229. |
[13] | WANG Liting, TANG Zhao, LI Rong, GU Zheng, HU Yuwei, LI Yuehong, ZHANG Jiye. Collaborative Visualization Analysis of Train Dynamics by Cloud Simulation-driven [J]. China Mechanical Engineering, 2023, 34(18): 2248-2256. |
[14] | ZHU Sipei, FU Guoqiang, ZHENG Yue, LI Zhengtang, YANG Jixiang. Universal Surface Texture Modeling Method for Five-axis Surface Milling [J]. China Mechanical Engineering, 2023, 34(16): 1946-1957. |
[15] | SUN Hao, YUAN Ye, ZHANG Qi, ZHANG Xiaobei. Path Planning Method of Aviation Cables Based on Improved A* Algorithm [J]. China Mechanical Engineering, 2023, 34(16): 1958-1964,1974. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||