DOI QR코드

DOI QR Code

Optimal Allocation Heuristic Method of Military Engineering Equipments during Artillery Position Construction Operation

휴리스틱 기법을 이용한 포병진지 구축작전시 공병장비 최적배정

  • Park, Se Hwan (Department of Operation Research, Korea National Defence University(KNDU)) ;
  • Lee, Moon Gul (Department of Operation Research, Korea National Defence University(KNDU))
  • 박세환 (국방대학교 운영분석학과) ;
  • 이문걸 (국방대학교 운영분석학과)
  • Received : 2016.12.12
  • Accepted : 2017.02.06
  • Published : 2017.03.31

Abstract

Artillery fire power due to effectiveness which is hard to predict well-planned and surprising attack can give a fear and shock to the personnel and is a very core weapon system and takes a critical role in wartime. Therefore in order to maximize operational effectiveness, Army required protecting artillery and takes a quick attack action through rapid construction of artillery's positions. The artillery use artillery's position to prevent exposure by moving to other position frequently. They have to move and construct at new artillery's positions quickly against exposing existed place by foe's recognition. These positions should be built by not manpower but engineering construction equipment. Because artillery positions have to protect human and artillery equipment well and build quickly. Military engineering battalion have lots of construction equipment which include excavator, loader, dozer, combat multi-purposed excavator, armored combat earthmover dump truck and so on. So they have to decide to optimal number of Team combining these equipments and determine construction sequence of artillery's position in operational plan. In this research, we propose to decide number of Team efficiently and allocate required construction's positions for each Team under constraints of limited equipments and time. To do so, we develop efficient heuristic method which can give near optimal solution and be applied to various situation including commander's intention, artillery position's priority or grouping etc. This heuristic can support quick and flexible construction plan of artillery positions not only for using various composition's equipment to organize Teams but also for changing quantity of positions.

Keywords

References

  1. Choi, J.H., Kim, D.H., Kim, S.H., and Kim, S.K., Factors Affecting Selection and Combination of Earthwork Equipment, Korea Journal of Construction Engineering and Management, 2010, Vol. 10, No. 1, pp. 201-205.
  2. Dileep, R.S., Industrial Scheduling, PWS Publishing Company, 1997.
  3. Hong, S.P., Management Science, second ed., Yul-Gok, 2010.
  4. Jang, Y.C., Study of optimum allocation in military engineering equipment for effective artillery position development operation, [Master's Thesis], Korean National Defense University, 2016.
  5. Jung, I.H., Optimization of redundancy allocation in multilevel system considering alternative units, Journal of the Korea Society for Quality Management, 2015, Vol. 43, No. 1, pp. 31-42. https://doi.org/10.7469/JKSQM.2015.43.1.031
  6. Kang, Y.H., Lee, H.C., and Kim, S.S., Scheduling Jobs with different Due-Date on Nonidentical Parallel Machine, Journal of Korean Institute of Industrial Engineers, 1998, Vol. 24, No. 1, pp. 37-50.
  7. Kim, D.C., Unrelated Parallel Machine Scheduling for PCB Manufacturing, Journal of the Society of Korea Industrial and Systems Engineering, 2004, Vol. 27, No. 4, pp. 141-146.
  8. Kim, D.H. and Lee, Y.H., The Heuristic Algorithm for The fire target allocation and sequencing problem, Journal of Korean Academic Society of Busin ess Administration, 2010, Vol. 25, No. 1, pp. 47-63.
  9. Kim, Y.K., Metaheuristic, Young-Ji, 1997.
  10. Moon, J.H. and Lee, S.H., Study on vehicle routing problem of artillery position construction for survivability support, Journal of Korean Institute of Industrial Engineers, 2011, Vol. 37, No. 3, pp. 171-179. https://doi.org/10.7232/JKIIE.2011.37.3.171
  11. ROK Army Training Doctrine Command, Data of Engineering Field(34-0-2), Korea Military printing Institution, 2013.
  12. Ronald, L.R., Optimization in Operations Research, PrenticeHall, 1997.
  13. Shah, R.K., A New Approach for Automation of Location-based Earthwork Scheduling in Road Construction Projects, Automation in Construction, 2014, Vol. 43, No. 2, pp. 156-169. https://doi.org/10.1016/j.autcon.2014.03.003
  14. Won, S.K., Kim, S.K., and Han, C.H., A Combination Model of Earthwork equipment using System Dynamics, Korea Journal of Construction Engineering and Management, 2007, Vol. 8, No. 2, pp. 194-202.

Cited by

  1. 공병 장비의 최적할당을 위한 수리모형 및 휴리스틱 알고리즘 vol.21, pp.4, 2017, https://doi.org/10.5762/kais.2020.21.4.138
  2. 적 공격시나리오 기반 대포병 표적탐지레이더 배치모형 vol.43, pp.4, 2017, https://doi.org/10.11627/jkise.2020.43.4.217