[1] Goldratt E. M. Critical Chain[M]. Great Barrington, Mass., USA:The North River Press Publishing Corporation, 1997; [2] Hall N. G., Long D. Z., Sim M., et al. Managing Underperformance Risk in Project Portfolio Selection[J]. Operations Research, 2015,63(3):660-675; [3] Yang S. L., Fu L. Critical Chain and Evidence Reasoning Applied to Multi-project Resource Schedule in Automobile R&D Process[J]. International Journal of Project Management, 2014,32(1):166-177; [4] Hu X. J., Cui N. F., Demeulemeester E., et al. Incorporation of Activity Sensitivity Measures into Buffer Management to Manage Project Schedule Risk[J]. European Journal of Operational Research, 2016,249(2):717-727; [5] Leach L. P. Critical Chain Project Management[M]. Third Edition. Norwood:Artech House Incorporation, 2014; [6] Zhang J. G., Song X. W., Díaz E. Project Buffer Sizing of a Critical Chain Based on Comprehensive Resource Tightness[J]. European Journal of Operational Research, 2016,248(1):174-182; [7] 别黎,崔南方. 关键链动态缓冲监控方法研究[J]. 中国管理科学, 2010,18(6):97-103; [8] Zhang J. G., Jia S. K., Diaz E. Dynamic Monitoring and Control of a Critical Chain Project Based on Phase Buffer Allocation[J].Journal of the Operational Research Society, 2018,69(12):1966-1977; [9] 张俊光,万丹. 关键链项目实时滚动监控方法研究[J]. 中国管理科学, 2018,26(4):171-179; [10] Salari M., Khamooshi H. A Better Project Performance Prediction Model Using Fuzzy Time Series and Data Envelopment Analysis[J]. Journal of the Operational Research Society, 2016,67(10):1274-1287; [11] Zhang J. G., Shi R., Diaz E. Dynamic Monitoring and Control of Software Project Effort Based on an Effort Buffer[J]. Journal of the Operational Research Society, 2015,66(9):1555-1565; [12] Zhang J. G., Wan D. Integrated Buffer Monitoring and Control Based on Grey Neural Network[J]. Journal of the Operational Research Society, 2019,70(3):516-529; [13] 张俊光,冉文娟,贾赛可,等. 关键链项目缓冲设置研究述评与展望[J]. 管理评论, 2017,29(12):195-203; [14] 李南,戴育雷,杨莉. 基于缓冲区和挣值分析的项目成本与进度风险预警[J]. 工程管理学报, 2015,29(4):123-127; [15] 徐小峰,李想,刘家国. 项目关键链资源计划进度偏差预警控制模型[J]. 系统工程学报, 2014,29(6):845-851; [16] Martens A., Vanhoucke M. A Buffer Control Method for Top-Down Project Control[J]. European Journal of Operational Research, 2017,262(1):274-286; [17] 杜小智,齐勇,侯迪,等. 重配置与周期再生相结合的软件再生模型[J]. 西安交通大学学报, 2010,44(1):91-95; [18] 孟海宁,齐勇,侯迪. 基于非马尔可夫随机Petri网的软件再生建模与分析[J]. 计算机学报, 2007,30(12):2212-2217; [19] 赵旭峰,钱存华,Toshio N. 带有周期检测性的软件预防性再生策略[J]. 计算机科学, 2009,36(8):158-160; [20] 刘宏磊,杜小智,侯迪,等. 应用服务器资源动态重配置再生方法[J]. 计算机科学与探索, 2011,5(3):256-266; [21] 谢利子,王青,肖俊超. 风险驱动的软件项目缓冲分配方法[J]. 软件学报, 2010,21(12):3029-3041; [22] Tukel O. I., Rom W. O., Eksioglu S. D. An Investigation of Buffer Sizing Techniques in Critical Chain Scheduling[J]. European Journal of Operational Research, 2004,172(2):401-416; [23] 张俊光,李凯. 基于替代资源变异度的增量缓冲设定方法研究[J]. 管理评论, 2019,31(3):258-264 |