Systems Engineering and Electronics ›› 2022, Vol. 44 ›› Issue (9): 2858-2868.doi: 10.12305/j.issn.1001-506X.2022.09.20
• Systems Engineering • Previous Articles Next Articles
Yong ZHANG1, Changjiu LI2, Xichao SU1,*, Rongwei CUI2
Received:
2021-10-13
Online:
2022-09-01
Published:
2022-09-09
Contact:
Xichao SU
CLC Number:
Yong ZHANG, Changjiu LI, Xichao SU, Rongwei CUI. Maintenance task scheduling of carrier-based aircraft fleet in hangar based on HTLBO algorithm[J]. Systems Engineering and Electronics, 2022, 44(9): 2858-2868.
Table 1
Case task hangar power station and fleet parking space covering relations min"
停机位 | 供电站编号 | ||||||
S1 | S3 | S4 | S5 | S6 | S9 | S10 | |
G4 | J; 15 | - | - | - | - | - | - |
G9 | - | A; 2 | - | - | - | - | - |
G10 | - | - | B; 8 | - | - | - | - |
G11 | - | C; 0 | - | C; 0 | - | - | - |
G13 | - | - | - | D; 0 | - | - | - |
G14 | - | - | - | - | I; 3 | - | - |
G23 | - | - | - | - | - | E; 9 | - |
G24 | - | - | - | - | - | - | F; 16 |
G25 | - | - | - | - | - | G; 0 | - |
G26 | - | - | - | - | - | - | H; 0 |
Table 2
Regular maintenance operation hours demand of single aircraft min"
维修类型 | 工序编号 | |||||||||||||||||||
1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13 | 14 | 15 | 16 | 17 | 18 | 19 | 20 | |
1 | 0 | 0 | 0 | 0 | 24 | 0 | 0 | 0 | 0 | 44 | 0 | 0 | 0 | 0 | 0 | 12 | 0 | 0 | 0 | 0 |
2 | 0 | 0 | 0 | 0 | 19 | 0 | 0 | 0 | 0 | 53 | 0 | 0 | 0 | 0 | 0 | 22 | 0 | 0 | 0 | 0 |
3 | 0 | 0 | 0 | 0 | 26 | 0 | 0 | 0 | 0 | 47 | 0 | 0 | 0 | 0 | 0 | 17 | 0 | 0 | 0 | 0 |
4 | 0 | 18 | 30 | 8 | 6 | 8 | 10 | 6 | 8 | 15 | 20 | 0 | 16 | 18 | 0 | 3 | 10 | 8 | 6 | 0 |
5 | 0 | 25 | 45 | 8 | 8 | 8 | 12 | 6 | 8 | 30 | 30 | 26 | 26 | 28 | 16 | 8 | 18 | 10 | 10 | 0 |
6 | 0 | 34 | 66 | 10 | 12 | 10 | 15 | 10 | 12 | 48 | 40 | 45 | 33 | 44 | 46 | 16 | 26 | 18 | 14 | 0 |
Table 3
Regular maintenance operation set and resource demand of single aircraft"
工序号 | 维修技能(工序所需人数) | 所需保障设备/车间 | 所需工位空间 |
1 | - | - | - |
2 | 机械(1) | - | - |
3 | 机械(2) | - | - |
4 | 军械(1) | - | - |
5 | 军械(1) | 电源站/车 | 座舱 |
6 | 航电(1) | - | - |
7 | 航电(1) | 电源站/车 | 座舱 |
8 | 特设(1) | - | - |
9 | 特设(1) | 电源站/车 | 座舱 |
10 | 机械(1) | 航空机修车间 | - |
11 | 机械(1) | 油液探伤车间 | - |
12 | 机械(2) | 油液探伤车间 | - |
13 | 航电(2) | 电子设备检修车间 | - |
14 | 特设(2) | 电子设备检修车间 | - |
15 | 军械(2) | 军械检修车间 | - |
16 | 机械(1) | 电源站/车 | 座舱 |
17 | 航电(1) | 电源站/车 | 座舱 |
18 | 特设(1) | 电源站/车 | 座舱 |
19 | 军械(1) | 电源站/车 | 座舱 |
20 | - | - | - |
Table 5
Aircraft group support tasks"
保障任务 | 停机位 | ||||||||||||||
G4 | G5 | G7 | G9 | G10 | G11 | G13 | G14 | G18 | G19 | G23 | G24 | G25 | G26 | ||
任务1 | J; 15 | - | - | A; 2 | B; 8 | C; 0 | D; 0 | I; 3 | - | - | E; 9 | F; 16 | G; 0 | H; 0 | |
任务2 | J; 15 | - | K; 21 | A; 2 | B; 8 | C; 0 | D; 0 | I; 3 | L; 22 | - | E; 9 | F; 16 | G; 0 | H; 0 | |
任务3 | J; 15 | M; 27 | K; 21 | A; 2 | B; 8 | C; 0 | D; 0 | I; 3 | L; 22 | N; 29 | E; 9 | F; 16 | G; 0 | H; 0 |
1 | 曾斌, 陈媛媛, 李厚朴. 考虑保障装备可用度的舰载机作业调度优化[J]. 系统工程与电子技术, 2021, 43 (7): 1856- 1865. |
ZEND B , CHEN Y Y , LI H P . Launch scheduling optimization considering availability of maintenance equipment for carrier aircraft[J]. Systems Engineering and Electronics, 2021, 43 (7): 1856- 1865. | |
2 | 纪云飞, 马乃苍, 贾向军. 基于BPR理念的舰载机舰面维修流程优化研究[J]. 装备环境工程, 2014, 11 (5): 54- 57. |
JI Y F , MA N C , JIA X J . Study on the flow optimization of shipboard aviation maintenance based on BPR theory[J]. Equipment Environmental Engineering, 2014, 11 (5): 54- 57. | |
3 |
FENG Q , LI S J , SUN B J . A multi-agent based intelligent configuration method for aircraft fleet maintenance personnel[J]. Chinese Journal of Aeronautics, 2014, 27 (2): 280- 290.
doi: 10.1016/j.cja.2014.02.016 |
4 | 昝翔, 陈春良, 张仕新, 等. 考虑时间不确定性的战时装备维修任务调度方法[J]. 机械工程学报, 2018, 54 (24): 226- 232. |
ZAN X , CHEN C L , ZHANG S X , et al. Task scheduling method for wartime equipment maintenance considering time uncertainty[J]. Journal of Mechanical Engineering, 2018, 54 (24): 226- 232. | |
5 | 曾斌, 姚路, 胡炜, 等. 考虑不确定因素影响的保障任务调度算法[J]. 系统工程与电子技术, 2016, 38 (3): 595- 601. |
ZENG B , YAO L , HU W , et al. Scheduling algorithm for maintenance task under uncertainty[J]. Systems Engineering and Electronics, 2016, 38 (3): 595- 601. | |
6 |
万明, 张凤鸣, 樊晓光. 战时装备维修任务调度的两种新算法[J]. 系统工程与电子技术, 2012, 34 (1): 107- 110.
doi: 10.3969/j.issn.1001-506X.2012.01.20 |
WAN M , ZHANG F M , FAN X G . Two novel algorithms for equipment maintenance task scheduling in wartime[J]. Systems Engineering and Electronics, 2012, 34 (1): 107- 110.
doi: 10.3969/j.issn.1001-506X.2012.01.20 |
|
7 |
SAFAEI N , BANJEVIC D , JARDINE A K . Workforce constrained maintenance scheduling for military aircraft fleet: a case study[J]. Annals of Operations Research, 2011, 186 (1): 295- 316.
doi: 10.1007/s10479-011-0885-4 |
8 |
LIN L , WANG F , LUO B . An optimization algorithm inspired by propagation of yeast for fleet maintenance decision making problem involving fatigue structures[J]. Applied Soft Computing, 2019, 85, 105755.
doi: 10.1016/j.asoc.2019.105755 |
9 |
DE BRUECKER P , VAN DEN BERGH J , BELIËN J , et al. A model enhancement heuristic for building robust aircraft maintenance personnel rosters with stochastic constraints[J]. European Journal of Operational Research, 2015, 246 (2): 661- 673.
doi: 10.1016/j.ejor.2015.05.008 |
10 | 陈伟龙, 陈春良, 史宪铭, 等. 基于变体GA的进攻作战抢修任务动态调度[J]. 系统工程与电子技术, 2017, 39 (3): 577- 583. |
CHEN W L , CHEN C L , SHI X M , et al. Dynamic scheduling of battlefield rush-repair tasks in the offensive operation based on variant GA[J]. Systems Engineering and Electronics, 2017, 39 (3): 577- 583. | |
11 |
吕学志, 陈乐, 尹健, 等. 考虑休息的维修任务调度模型及其求解算法[J]. 兵工学报, 2014, 35 (12): 2116- 2123.
doi: 10.3969/j.issn.1000-1093.2014.12.027 |
LYU X Z , CHEN L , YIN J , et al. Maintenance task scheduling model considering rest time and its solving algorithm[J]. Acta Armamentarii, 2014, 35 (12): 2116- 2123.
doi: 10.3969/j.issn.1000-1093.2014.12.027 |
|
12 | 朱昱, 宋建社, 曹继平, 等. 一种考虑装备维修流程的多维修任务调度[J]. 系统工程与电子技术, 2008, 30 (7): 1366- 1369. |
ZHU Y , SONG J S , CAO J P , et al. Maintenance task scheduling model of multiunit considering armament maintenance process[J]. Systems Engineering and Electronics, 2008, 30 (7): 1366- 1369. | |
13 |
LIN J , ZHU L , GAO K Z . A genetic programming hyper-heuristic approach for the multi-skill resource constrained project scheduling problem[J]. Expert Systems with Applications, 2020, 140, 112915.
doi: 10.1016/j.eswa.2019.112915 |
14 |
KOULINAS G , KOTSIKAS L , ANAGNOSTOPOULOS K . A particle swarm optimization based hyper-heuristic algorithm for the classic resource constrained project scheduling problem[J]. Information Sciences, 2014, 277, 680- 693.
doi: 10.1016/j.ins.2014.02.155 |
15 |
MYSZKOWSKI P B , OLECHȽ P , LASZCZYK M , et al. Hybrid differential evolution and greedy algorithm (DEGR) for solving multi-skill resource-constrained project scheduling problem[J]. Applied Soft Computing, 2018, 62, 1- 14.
doi: 10.1016/j.asoc.2017.10.014 |
16 |
RAO R V , SAVSANI V J , VAKHARIA D . Teaching learning based optimization: a novel method for constrained mechanical design optimization problems[J]. Computer-Aided Design, 2011, 43 (3): 303- 315.
doi: 10.1016/j.cad.2010.12.015 |
17 |
ČREPINŠEK M , LIU S H , MERNIK L . A note on teaching learning based optimization algorithm[J]. Information Sciences, 2012, 212, 79- 93.
doi: 10.1016/j.ins.2012.05.009 |
18 | RAO R V , PATEL V . An improved teaching-learning-based optimization algorithm for solving unconstrained optimization problems[J]. Scientia Iranica, 2013, 20 (3): 710- 720. |
19 |
SHAO W S , PI D C , SHAO Z S . An extended teaching-learning based optimization algorithm for solving no-wait flow shop scheduling problem[J]. Applied Soft Computing, 2017, 61, 193- 210.
doi: 10.1016/j.asoc.2017.08.020 |
20 |
ZHENG H Y , WANG L . An effective teaching learning based optimisation algorithm for RCPSP with ordinal interval numbers[J]. International Journal of Production Research, 2015, 53 (6): 1777- 1790.
doi: 10.1080/00207543.2014.961205 |
21 | 马文强, 张超勇, 唐秋华, 等. 基于混合教与学优化算法的炼钢连铸调度[J]. 计算机集成制造系统, 2015, 21 (5): 1271- 1278. |
MA W Q , ZHANG C Y , TANG Q H , et al. Steelmaking and continuous casting scheduling based on hybrid teaching-learning-based optimization algorithm[J]. Computer Integrated Manufacturing Systems, 2015, 21 (5): 1271- 1278. | |
22 |
VALLS V , BALLESTIN F , QUINTANILLA S . A hybrid genetic algorithm for the resource-constrained project scheduling problem[J]. European Journal of Operational Research, 2008, 185 (2): 495- 508.
doi: 10.1016/j.ejor.2006.12.033 |
23 |
苏析超, 韩维, 萧卫, 等. 基于Memetic算法的舰载机舰面一站式保障调度[J]. 系统工程与电子技术, 2016, 38 (10): 2303- 2309.
doi: 10.3969/j.issn.1001-506X.2016.10.12 |
SU X C , HAN W , XIAO W , et al. Pit-stop support scheduling on deck of carrier plane based on Memetic algorithm[J]. Systems Engineering and Electronics, 2016, 38 (10): 2303- 2309.
doi: 10.3969/j.issn.1001-506X.2016.10.12 |
|
24 | 韩维, 崔荣伟, 苏析超, 等. 基于双种群模糊引力搜索算法的舰载机甲板作业调度[J]. 控制与决策, 2021, 36 (11): 2751- 2759. |
HAN W , CUI R W , SU X C , et al. Flight deck operations scheduling based on dual population fuzzy gravitational search algorithm[J]. Control and Decision, 2021, 36 (11): 2751- 2759. | |
25 |
KOLISCH R . Serial and parallel resource-constrained project scheduling methods revisited: theory and computation[J]. European Journal of Operational Research, 1996, 90 (2): 320- 333.
doi: 10.1016/0377-2217(95)00357-6 |
26 | ISLAM S M , DAS S , GHOSH S , et al. An adaptive differential evolution algorithm with novel mutation and crossover strategies for global numerical optimization[J]. IEEE Trans.on Systems, Man, and Cybernetics, Part B-Cybernetics, 2011, 42 (2): 482- 500. |
[1] | Rongwei CUI, Wei HAN, Xichao SU, Liguo WANG, Yujie LIU. Integrated optimization of carrier-based aircraft flight deck operations scheduling and resource configuration for pre-flight preparation stage [J]. Systems Engineering and Electronics, 2021, 43(7): 1884-1893. |
[2] | Bing WAN, Wei HAN, Yong LIANG, Fang GUO. Optimization algorithm of carrier-based aircraft sortie departure scheduling [J]. Systems Engineering and Electronics, 2021, 43(12): 3624-3634. |
[3] | Bing WAN, Wei HAN, Yong LIANG, Xichao SU. Research on optimization of carrier-based aircraft fleetrecovery scheduling based on index function [J]. Systems Engineering and Electronics, 2021, 43(10): 2918-2930. |
[4] | WU Wenhai, WANG Jie, GAO Li, ZHANG Yang, GUO Xiaofeng. Analysis on MAGIC CARPET carrier landing technology [J]. Systems Engineering and Electronics, 2018, 40(9): 2079-2091. |
[5] | WU Wenhai, ZHANG Yang, HU Yun’an, ZHANG Yuanyuan. Research development in nonlinear backstepping control method of carrier-based aircraft landing [J]. Systems Engineering and Electronics, 2018, 40(7): 1578-1587. |
[6] | ZHANG Zhi, LIN Sheng-lin, QIU Bing, YUAN Xin. Collision avoidance path planning of carrier aircraft traction system in dispatching on deck [J]. Systems Engineering and Electronics, 2014, 36(8): 1551-1557. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||