中国管理科学 ›› 2022, Vol. 30 ›› Issue (4): 132-143.doi: 10.16381/j.cnki.issn1003-207x.2020.0712cstr: 32146.14.j.cnki.issn1003-207x.2020.0712
丰景春1,2,3, 董灵莉1
收稿日期:2020-04-21
修回日期:2020-12-29
出版日期:2022-04-20
发布日期:2022-04-26
通讯作者:
丰景春(1963-),男(汉族),浙江金华人,河海大学商学院,博士,博士生导师,教授,研究方向:工程管理与项目管理,Email:feng.jingchun@163.com
E-mail:feng.jingchun@163.com
基金资助:FENG Jing-chun1,2,3, DONG Ling-li1
Received:2020-04-21
Revised:2020-12-29
Online:2022-04-20
Published:2022-04-26
Contact:
丰景春
E-mail:feng.jingchun@163.com
摘要: 现有工期压缩模型未考虑资源约束下多合同项目工期压缩所产生的局部效应与整体效应,针对这一局限性,通过引入子网络,分析了基于关键链法的项目群工期—费用优化机理,据此,对项目群初始网络计划进行工期优化。借助关键链,除去计划工期的冗余时间,动态调整存在资源冲突的合同项目开始时间。在此基础上,分析工期动态优化对关键链和非关键链合同项目压缩费用产生的不同影响以及对子网络自身和项目群的影响。基于此,研究并构建了多资源受限下单一子网络和项目群工期-费用优化模型。最后,结合算例,分析了优化模型的可行性和优势。研究结果表明:模型能够有效地解决资源约束下项目群计划调整和工期-费用优化问题,从而能够为业主科学安排项目群中各合同项目的起始时间和资源计划提供依据。
中图分类号:
丰景春,董灵莉. 多资源约束下基于关键链的项目群工期-费用优化[J]. 中国管理科学, 2022, 30(4): 132-143.
FENG Jing-chun,DONG Ling-li. Construction Period-Cost Optimization of Program Based on Critical Chain Method under Multi-Resource Constraints[J]. Chinese Journal of Management Science, 2022, 30(4): 132-143.
| [1] Gray R J. Alternative approaches to programme management[J]. International Journal of Project Management, 1997,15(1):5-9. [2] Ferns D C. Developments in programme management[J]. International Journal of Project Management, 1991,9(3):148-156. [3] Thiry M. Combining value and project management into an effective programme management model[J]. International Journal of Project Management, 2002,20(3):221-227. [4] Shehu Z, Akintoye A. Construction programme management theory and practice: Contextual and pragmatic approach[J]. International Journal of Project Management, 2009,27(7):703-716. [5] Rijke J, van Herk S, Zevenbergen C, et al. Adaptive programme management through a balanced performance/strategy oriented focus[J]. International Journal of Project Management, 2014,32(7):1197-1209. [6] Tavana M, Abtahi A, Khalili-Damghani K. A new multi-objective multi-mode model for solving preemptive time-cost-quality trade-off project scheduling problems[J]. Expert Systems with Applications, 2014,41(4, Part 2):1830-1846. [7] Kim K, Walewski J, Cho Y. Multiobjective construction schedule optimization using modified niched Pareto genetic algorithm[J]. Journal of Management in Engineering, 2015,32:4015038. [8] Altuwaim A, El-Rayes K. Optimizing the scheduling of repetitive construction to minimize interruption cost[J]. Journal of Construction Engineering and Management, 2018,144(7):4018051. [9] 何正文, 刘人境, 胡信布. 基于合同双方交互作用的项目调度优化[J]. 管理科学学报, 2014,17(8):48-59.He Zhengwen, Liu Renjing. Hu Xinbu, Project scheduling optimization based on interaction between two partiesof contracts[J]. Chinese Journal of Management Science, 2014,17(8):48-59. [10] 苏菊宁, 蒋昌盛, 刘晨光, 等. 基于奖惩机制的建筑供应链工期协调优化研究[J]. 中国管理科学, 2010,18(1):95-101.Su Juning, Iang Changsheng, Liu Chenguang,et al. Research on project duration coordination and optimization of construction supplychain based on bonus-penalty mechanism[J].Chinese Journal of Management Science, 2010,18(1):95-101. [11] 张静文, 徐渝, 何正文. 具有时间转换约束的离散时间-费用权衡问题研究[J]. 中国管理科学, 2006,14(2):58-64.Zhang Jingwen, Xu Yu, He Zhengwen. Discrete time/cost trade-offs in Project scheduling with time-switch constraints[J].Chinese Journal of Management Science, 2006,14(2):58-64. [12] 丰景春, 张跃, 丰慧, 等. 子网络视角下项目群合同项目工期延误诊断模型研究[J]. 中国管理科学, 2019,27(10):189-197.Feng Jingchun, Zhang Yue, Feng Hui, et al. Research on the schedule delay diagnosis model of the contract itemfor program from the perspective of sub-network[J].Chinese Journal of Management Science, 2019,27(10):189-197. [13] 郑传斌, 鹿倩倩, 黄洁仙, 等. 子网络视角下大型工程项目群工期压缩模型研究[J]. 软科学, 2018,32(10):124-129.Zheng Chuanbin, Lu Qianqian, Huang Jiexian, et al. Study on program’s duration compression model of large-scale projects from the perspective of sub-network[J].Soft Science, 2018,32(10):124-129. [14] Be瘙塂ikci U, Bilge , Ulusoy G. Multi-mode resource constrained multi-project scheduling and resource portfolio problem[J]. European Journal of Operational Research, 2015,240(1):22-31. [15] Be瘙塂ikci U, Bilge , Ulusoy G. Resource dedication problem in a multi-project environment[J]. Flexible Services and Manufacturing Journal, 2013,25(1):206-229. [16] Salemi Parizi M, Gocgun Y, Ghate A. Approximate policy iteration for dynamic resource-constrained project scheduling[J]. Operations Research Letters, 2017,45(5):442-447. [17] Heimerl C, Kolisch R. Scheduling and staffing multiple projects with a multi-skilled workforce[J]. OR Spectrum, 2010,32(2):343-368. [18] Vanhoucke M. Work continuity constraints in project scheduling[J]. Journal of Construction Engineering and Management, 2006,132(1):14-25. [19] Rebai A. A combinatorial particle swarm optimization for solving multi-mode resource-constrained project scheduling problems[J]. Applied Mathematics & Computation, 2008,195(1). [20] Asta S, Karapetyan D, Kheiri A, et al. Combining Monte-Carlo and hyper-heuristic methods for the multi-mode resource-constrained multi-project scheduling problem[J]. Information Sciences, 2016,373:476-498. [21] Kumar M, Mittal M L, Soni G, et al. A hybrid TLBO-TS algorithm for integrated selection and scheduling of projects[J]. Computers & Industrial Engineering, 2018,119:121-130. [22] Long L D, Ohsato A. Fuzzy critical chain method for project scheduling under resource constraints and uncertainty[J]. International Journal of Project Management, 2008,26(6):688-698. [23] 刘士新, 宋健海, 唐加福. 基于关键链的资源受限项目调度新方法[J]. 自动化学报, 2006(1):60-66.Liu Shixin, Song Jianhai, Tang Jiafu. Critical chain based approach for resource-constrained project scheduling[J].Acta Automatica Sinica, 2006(1):60-66. [24] 张琦, 廖良才, 王卫威. 基于改进遗传算法的关键链合同项目进度计划优化[J]. 计算机技术与发展, 2014,24(4):1-5.Zhang Qi, Liao Liangcai, Wang Weiwei. Critical chain project schedule optimization based on improved genetic algorithm[J]. Computer Technology and Development, 2014,24(4):1-5. [25] Wang Weixin, Wang Xu, Ge Xianlong, et al. Multi-objective optimization model for multi-project scheduling on critical chain[J]. Advances in Engineering Software, 2014,68:33-39. [26] Yang Shanlin, Fu Lei. 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. [27] Feng Jingchun, Li Lei, Yang Nan, et al. Critical chain construction with multi-resource constraints based on portfolio technology in South-to-North water diversion project[J]. Water Science and Engineering, 2011,4(2):225-236. [28] 万伟, 蔡晨, 王长峰. 在单资源约束项目中的关键链管理[J]. 中国管理科学, 2003,11(2):70-75.Wan Wei, Cai Chen, Wang Changfeng. Critical chain PM in single-resource constrained environment[J].Chinese Journal of Management Science, 2003,11(2):70-75. [29] 张沙清, 陈新度, 陈庆新, 等. 基于优化资源流约束的模具多项目反应调度算法[J]. 系统工程理论与实践, 2011,31(8):1571-1580.Zhang Shaqing, Chen Xindu, Chen Qingxin, et al. Reactive scheduling algorithm for multiple mould and die projects based on optimized resource flow constraints[J]. System Engineering Theory and Practice, 2011,31(8):1571-1580. [30] 仲刚, 乞建勋, 苏志雄. 基于模糊工期的关键链缓冲区设置方法研究[J]. 技术经济, 2009,28(7):48-50.Zhong Gang, Qi Jianxun, Su Zhixiong. Study on method for buffer placing in critical chain management with fuzzy duration[J]. Technology Economics, 2009,28(7):48-50. [31] 郑立平, 郝忠孝. 遗传算法理论综述[J]. 计算机工程与应用, 2003(21):50-53.Zheng Liping, Hao Zhongxiao. A review on the theory for the genetic algorithm[J]. Computer Engineering and Applications, 2003(21):50-53. [32] 廖良才, 张琦. 基于混合遗传算法和关键链的多资源多项目进度计划优化[J]. 科学技术与工程, 2014,14(6):190-195.Liao Liangcai, Zhang Qi. Multi-resource and multi-project schedule optimization based ona hybrid genetic algorithm and critical chain method[J]. Science Technology and Engineering, 2014,14(6):190-195. |
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