成功作战作战储备的后勤建模

Q3 Computer Science Radioelectronic and Computer Systems Pub Date : 2023-03-07 DOI:10.32620/reks.2023.1.15
Oleg Fedorovich, M. Lukhanin, O. Prokhorov, Yurii Pronchakov, Oleksandr Leshchenko, V. Fedorovich
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The requirements for the amount of war materiel reserve in the interval representation, from the minimum to the maximum value of the inventory, have been formed. The minimum war materiel reserve to be used in the armed conflict area provides the necessary parity of military forces. Simultaneously, the nature of hostilities does not change, but the risks associated with the enemy's actions to destroy the war materiel reserve (war of reserves) may manifest themselves. The maximum war materiel reserve provides confidence in achieving the objectives of a military operation in the armed conflict area, but is difficult to implement due to the limited capabilities of weapons and materiel suppliers and existing military threats. 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Due to the multitude of materiel manufacturers (possible suppliers) and various variants for the formation of supply chain, the task of enumeration of possible variants for the composition and structures of the logistics supply chain for war reserve stockpiling was formed and solved. The number of warehouse variants and logistics supply chain structures is estimated using the methods of enumeration theory, and a set of variants is formed for subsequent comparison and selection of a rational option. An optimization model for the formation of logistics links in the supply chain was created to form the necessary war reserve stocks in the armed conflict area. The example of HIMARS MLRS stockpiling illustrates the effectiveness of the proposed approach for successful combat operations in the armed conflict area, using both quantitative and qualitative assessments when comparing possible stockpiling variants. 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引用次数: 1

摘要

本文提出并解决了一个与武装冲突地区成功作战行动的战争储备后勤建模相关的多元问题。该研究的相关性涉及全面解决战争储备储存问题,以实现军事行动的目标,考虑到物资供应商的能力,战争物资运输到武装冲突地区的复杂后勤,以及该国戒严法引起的军事威胁。该研究创建了一套模型,允许:优先考虑储备储备的战争物资类型;制定准备金规模要求;考虑军事威胁风险,选择合理的物流供应链结构;确保武装冲突地区作战行动的成功。本文分析了戒严时期战争物资储备存在的问题,主要是由于战争物资种类繁多;小批量供货;远离武装冲突地区的不同材料制造商和供应商;供给异质性运输环境;战争物资储备期间与军事威胁相关的风险。在考虑单件武器作战能力和军事专家评估的情况下,提出了一种向武装冲突地区提供某些战争物资类型的重要性的方法。已经形成了从库存的最小值到最大值的间隔表示中战争物资储备数量的要求。在武装冲突地区使用的最低限度的战争物资储备提供了必要的均势军事力量。同时,敌对行动的性质没有改变,但与敌人破坏战争物资储备(战争的储备)的行动相关的风险可能会表现出来。最大限度的战争物资储备为在武装冲突地区实现军事行动目标提供了信心,但由于武器和物资供应者的能力有限以及现有的军事威胁,难以实施。考虑供应商能力有限、储备储备时间允许、军事威胁可能产生的风险及其对战争物资供应后勤的影响,建立了战争物资储备优化模型。考虑到某些类型武器的作战能力,建立了战争储备的优化模型,使现代武器的作战特性增加(质量大于数量),可能造成军事力量对比的不对称。由于物资制造商(可能的供应商)众多,供应链形成的变型多种多样,形成并解决了战争物资储备物流供应链组成和结构可能变型的列举问题。运用枚举理论的方法估计仓库变量和物流供应链结构的数量,形成一组变量,供后续比较和选择合理的方案。建立了供应链中物流环节形成的优化模型,以形成武装冲突地区所需的战争储备物资。HIMARS多管火箭炮储存的例子说明了拟议方法在武装冲突地区成功作战行动的有效性,在比较可能的储存变体时使用了定量和定性评估。该研究的科学新颖性与开发了一套原始优化模型有关,这些模型是物流供应链结构的变量枚举模型,考虑到物资供应商的能力,它允许科学合理地制定战争储备库存规模的要求,以成功实现武装冲突地区军事行动的目标。异构运输环境中的长供应链、短交货时间和军事威胁风险。建议将研究结果用于规划战争储备库存,使其在战区有效使用,合理化材料制造商和供应商的组成,形成物流供应链,这将确保武装冲突地区作战行动的成功。
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Modeling of logistics of war reserve stockpiling for successful combat operations
This paper formulates and solves a multivariate problem related to modeling the logistics of war reserve stockpiling for successful combat operations in the armed conflict area. The relevance of the study is related to a comprehensive solution to the problem of war reserve stockpiling to fulfill the objectives of a military operation, considering the capabilities of materiel suppliers, complex logistics of war materiel transportation to armed conflict areas, and military threats arising from the martial law in the country. The study creates a set of models that allow: prioritizing war materiel types for reserve stockpiling; formulating requirements for the size of reserves; selection of a rational structure of logistics supply chain, considering the risks of military threats; ensuring the success of combat operations in the armed conflict area. The article analyzes the existing problems of war reserve stockpiling under martial law, which arose due to: the variety of war materiel; small supply batches; different materiel manufacturers and suppliers located at a great distance from the armed conflict area; heterogeneous transport environment of supply; risks associated with military threats during war materiel reserve stockpiling. A method of presenting the importance of certain war materiel types for supply to the armed conflict area is proposed, considering the combat capability of individual weapons and assessments of military experts. The requirements for the amount of war materiel reserve in the interval representation, from the minimum to the maximum value of the inventory, have been formed. The minimum war materiel reserve to be used in the armed conflict area provides the necessary parity of military forces. Simultaneously, the nature of hostilities does not change, but the risks associated with the enemy's actions to destroy the war materiel reserve (war of reserves) may manifest themselves. The maximum war materiel reserve provides confidence in achieving the objectives of a military operation in the armed conflict area, but is difficult to implement due to the limited capabilities of weapons and materiel suppliers and existing military threats. An optimization model for the war reserve stockpiling was created, considering the limited capabilities of suppliers, permissible time for reserve stockpiling, and the risks that may arise from military threats and their impact on the logistics of war materiel supply (war of logistics). An optimization model for the war reserve stockpiling was developed, considering the combat capability of certain types of weapons, which makes it possible to create asymmetry in the military parity of forces due to the increased combat characteristics of modern weapons (quality over quantity). Due to the multitude of materiel manufacturers (possible suppliers) and various variants for the formation of supply chain, the task of enumeration of possible variants for the composition and structures of the logistics supply chain for war reserve stockpiling was formed and solved. The number of warehouse variants and logistics supply chain structures is estimated using the methods of enumeration theory, and a set of variants is formed for subsequent comparison and selection of a rational option. An optimization model for the formation of logistics links in the supply chain was created to form the necessary war reserve stocks in the armed conflict area. The example of HIMARS MLRS stockpiling illustrates the effectiveness of the proposed approach for successful combat operations in the armed conflict area, using both quantitative and qualitative assessments when comparing possible stockpiling variants. The scientific novelty of the study is related to the development of a set of original optimization models, models of the variant enumeration for the structures of the logistics supply chain, which allows scientifically sound formulation of requirements for the size of the war reserve stock for successful fulfillment of the objectives of a military operation in the armed conflict area, considering the capabilities of materiel suppliers, long supply chains in a heterogeneous transport environment, short delivery time, and the risks of military threats. It is advisable to use the results of the study for planning war reserve stock, for their effective use in the combat zone, justifying the composition of materiel manufacturers and suppliers, forming a logistics supply chain, which will ensure the success of combat operations in the armed conflict area.
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来源期刊
Radioelectronic and Computer Systems
Radioelectronic and Computer Systems Computer Science-Computer Graphics and Computer-Aided Design
CiteScore
3.60
自引率
0.00%
发文量
50
审稿时长
2 weeks
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