教育背景:
2011年毕业于东南大学自动化学院并获得控制理论与控制工程博士学位;
2003年毕业于中国石油大学(华东)信息与控制工程学院并获得控制理论与控制工程硕士学位;
1998年毕业于东北石油大学石油勘探系并获得应用地球物理学士学位;
科研工作经历:
2015.11至今西安建筑科技大学信息与控制工程学院副教授。主要从事人工智能与系统优化理论研究及其在复杂制造系统和智能建筑系统等方面的应用研究工作;
2016.08-2017.08美国康涅狄格大学电气与计算机工程系访问学者,合作导师为PeterB.Luh教授。主要从事覆铜板制造企业的批调度优化理论及方法研究;
2013.10-2015.10至今西安建筑科技大学信息与控制工程学院讲师。主要从事复杂制造系统的建模、生产计划与调度优化以及智能计算等方面的研究工作;
2011.07-2013.09西安交通大学机械制造系统工程国家重点实验室博士后,合作导师为邢科义教授。主要从事分布式两阶段装配制造系统的建模与智能优化等方面的研究工作.
科研项目经历:
[1] 陕西省自然科学基础研究计划面上项目,2026-08至2028.07,在研,主持
[2] 绿色建筑全国重点实验室自主研究课题,2026-01至2027-12,在研,主持
[3] 国家自然科学基金面上项目, 2015-01至2018-12,结题,主持
[4] 陕西省自然科学基础研究计划面上项目,2023-01至2024.12,结题,主持
[5] 陕西省自然科学基础研究计划面上项目,2020-01至2021-12,结题,主持
[6] 陕西省自然科学基础研究计划面上项目,2015-01至2016-12,结题,主持
[7] 中国博士后基金面上项目,2012-10至2013-09,已结题,主持
[8] 陕西省教育厅专项科研项目,2017-06至2018-12,已结题,主持
[9] 西安交通大学制造系统国家重点实验室开放课题项目,2012-01至2014-12,结题,主持
代表性学术论文:
[1] Xiong, F. (熊福力)*, Shi, H., Xiang, C., & Wu, M. (2026). Enhanced branch-and-check for extended flexible job shop scheduling problem with arbitrary precedence graphs. International Journal of Production Research, 1–36. Online first. https://doi.org/10.1080/00207543.2026.2718454
[2] Xiong, F. (熊福力)*, Ping, A., Wu, M., & Hou, S. (2026). Prefabricated component production scheduling in a heterogeneous dual-shop system via logic-based Benders decomposition. Automation in Construction, 188, 107033. https://doi.org/10.1016/j.autcon.2026.107033
[3] Xiong, F. (熊福力)*, Wu, M., & Zhou, K. (2026). Adaptive fruit fly optimization-assisted logic-based benders decomposition for distributed parallel precast flowshop scheduling. Swarm and Evolutionary Computation, 105, 102403. https://doi.org/10.1016/j.swevo.2026.102403
[4] Xiong, F. (熊福力)*, Jing, L., Hou, S., & Han, Y. (2026). Lexicographic Bi-objective Scheduling under Budget Constraints in Distributed Production-Transportation-Assembly Systems. International Journal of Production Research, 64(14), 5970-6001, https://doi.org/10.1080/00207543.2026.2619571
[5] Xiong, F. (熊福力)*, & Liu, H. (2026). Logic-based Benders Decomposition Methods for the Distributed Flexible Job Shop Scheduling Problem. European Journal of Operational Research, 329(3), 778-797. https://doi.org/10.1016/j.ejor.2025.08.039
[6] Xiong, F. (熊福力)*, Ping, A., Wu, M., & Xiang, C. (2026). Logic-based Benders decomposition approaches for the distributed heterogeneous precast production scheduling problem with eligibility constraints and controllable processing times. Expert Systems with Applications, 297, 129234. https://doi.org/10.1016/j.eswa.2025.129234
[7] Xiong, F. (熊福力)*, Jing, L., Xiong, N., & Xiang, C. (2025). Enhanced Logic-based Benders decomposition methods for the distributed heterogeneous non-permutation flow shop scheduling problem. International Journal of Production Research, 63 (24), 10517-10554. https://doi.org/10.1080/00207543.2025.2553820
[8] Xiong, F. (熊福力)*, Zhou, K., Ping, A., & Jing, L. (2025). Scheduling distributed heterogenous parallel precast flowshop with shared resources via logic-based Benders decomposition. Advanced Engineering Informatics, 67, 103543, https://doi.org/10.1016/j.aei.2025.103543
[9] Xiong, F. (熊福力)*, Chen, X., Liu, H., Xiong, M., & Wu, M. (2025). The flow shop batch scheduling problem in a prefabricated component manufacturing system with two-dimensional bin packing constraints. International Journal of Production Research, 63(19), 7196-7237, https://doi.org/10.1080/00207543.2025.2496970
[10] Xiong, F. (熊福力)*, Jing, L., Xiang, C., & Han, Y. (2025). Order acceptance and scheduling under eligibility, availability, and budget constraints in distributed heterogeneous flow shop production. Expert Systems with Applications, 280, 127586. https://doi.org/10.1016/j.eswa.2025.127586
[11] Xiong, F. (熊福力)*, Shi, J., Jing, L., & Ping, An. (2025). Logic-based Benders decomposition methods for the distributed permutation flow shop scheduling problem with production and transportation cost. Computers & Operations Research, 179, 107044. https://doi.org/10.1016/j.cor.2025.107044
[12] Xiong, F. (熊福力)*, Chen, S., Xiong, N., & Jing, L. (2025). Scheduling distributed heterogeneous non-permutation flowshop to minimize the total weighted tardiness. Expert Systems with Applications, 272, 126713. https://doi.org/10.1016/j.eswa.2025.126713
[13] Xiong, F.(熊福力)*, Chen, S., Ma, Z., & Li, L. (2023). Approximate Model and Algorithms for Precast Supply Chain Scheduling Problem with Time-dependent Transportation Times. International Journal of Production Research, 61(7), 2047-2085. https://doi.org/10.1080/00207543.2022.2057254
[14] Xiong, F. (熊福力)*, Chu, M., Li, Z., Du, Y., Wang, L. (2021). Just-in-time scheduling for a distributed concrete precast flow shop system. Computers & Operations Research, 129, 105204. https://doi.org/10.1016/j.cor.2020.105204
[15] Xiong, F. (熊福力), Xing, K.*, & Wang, F. (2015). Scheduling a hybrid assembly-differentiation flowshop to minimize total flow time. European Journal of Operational Research, 240(2), 338-354.
[16] Xiong, F. (熊福力), Xing, K.*, Wang, F., Lei, H., & Han, L. (2014). Minimizing the total completion time in a distributed two stage assembly system with setup times. Computers & Operations Research, 47, 92-105.
[17] Xiong, F. (熊福力), & Xing, K.* (2014). Meta-heuristics for the distributed two-stage assembly scheduling problem with bi-criteria of makespan and mean completion time. International Journal of Production Research, 52(9), 2743-2766.
[18] Han, L., Xing, K., Chen, X., & Xiong, F.(熊福力) (2018). A Petri net-based particle swarm optimization approach for scheduling deadlock-prone flexible manufacturing systems. Journal of Intelligent Manufacturing, 29(5), 1083-1096.
[19] Lei, H., Xing, K., Gao, Z., & Xiong, F.(熊福力) (2016). A hybrid discrete differential evolution algorithm for deadlock-free scheduling with setup times of flexible manufacturing systems. Transactions of the Institute of Measurement and Control, 38(10), 1270-1280.
[20] Yan, H., Wan, X., & Xiong, F.(熊福力) (2015). Integrated production planning and scheduling for a mixed batch job-shop based on alternant iterative genetic algorithm. Journal of the Operational Research Society, 66(8), 1250-1258.
[21] Yan, H., Wan, X., & Xiong, F.(熊福力) (2014). A hybrid electromagnetism-like algorithm for two-stage assembly flow shop scheduling problem. International Journal of Production Research, 52(19), 5626-5639.
[22] Lei, H., Xing, K., Han, L., Xiong, F.(熊福力), & Ge, Z. (2014). Deadlock-free scheduling for flexible manufacturing systems using Petri nets and heuristic search. Computers & Industrial Engineering, 72, 297-305.
已授权发明专利:
[1] 熊福力, 储梦伶. 一种工期指派、订单接受与生产调度集成优化方法, 专利号:ZL 2020 1 0832501.1, 2023-09-05, 已授权
[2] 熊福力, 储梦伶. 一种预制构件流水车间订单接受与调度集成优化方法, 专利号:ZL 2020 1 0616005.2, 2023-11-07, 已授权
[3] 熊福力,张娟芝, 段中兴, 徐胜军, 孟月波, 李志. 一种基于自适应改进遗传算法的云数据中心调度方法, 专利号:ZL 2020 1 0038159.8, 2023-06-23,已授权.
[4] 熊福力, 李志, 储梦伶, 杜瑶, 汪琳婷, 张娟芝, 陈竑翰. 一种分布式混凝土预制构件流水车间生产调度方法, 专利号:ZL2020 1 0049409.8, 2023-04-07, 已授权.
[5] 熊福力, 张雨晨, 徐胜军, 孟月波, 刘光辉, 陈竑翰, 袁子阳. 一种集成交货期配置的置换流水车间能效优化调度方法[P]. 专利号:ZL 2020 1 015848.9, 2022-02-28, 已授权.
[6] 熊福力, 陈竑翰, 张文柱, 曹劲松, 张雨晨, 储梦伶, 张杏. 一种供应链环境下预制混凝土构件的双层调度方法[P]. 专利号:ZL 2020 1 015848.8, 2022-03-08, 已授权.
社会兼职:
国家自然科学基金项目通讯评议专家
教育部学位中心通讯评议专家
陕西省自然科学研究计划通讯评议专家
广东省自然科学研究计划通讯评议专家
IEEE会员、中国自动化学会会员、中国运筹学会会员
以下国际SCI期刊审稿人:
[1] European Journal of Operational Research
[2] Computers & Operations Research
[3] International Journal of Production Research
[4] IEEE Transactions on Evolutionary Computing
[5] IEEE Transactions on Emerging Topics in Intelligence Computing
[6] IEEE Transactions on Systems, Man and Cybernetics: Systems
[7] IEEE Transactions on Cybernetics
[8] IEEE Transactions on Industrial Informatics
[9] IEEE Transactions on Services Computing
[10]Industrial Information Integration
[11]Automation in Construction
[12]Computers & Industrial Engineering
[13]Expert Systems with Applications
[14]Engineering Applications of Artificial Intelligence
[15]International Journal of Computer Integrated Manufacturing
[16]International Journal of Advanced Manufacturing Technology
[17]Journal of Intelligent Manufacturing
[18]Memetic Computing
[19]Journal of Operational Research Society
[20]4OR – A Quarterly Journal of Operations Research
[21]Applied Soft Computing
[22]Advanced Engineering Informatics
[23]Journal of Cleaner Production
[24]Operations Research Perspectives
[25]Transportation Research Part E
[26]Annals of Operations Research
以下国内EI期刊审稿人:
[1] 自动化学报
[2] 系统工程理论与实践
[3] 工业工程与管理
