2021/03/04 by Song-Kyoo Kim, Kim, Song-Kyoo
Engineering · Mathematics · #60G25 #60G40 #90B50 #90B60 #91A06 #91A35 #91A60 #91B06 #Evacuation and Crowd Dynamics #FOS: Mathematics #Guidance and Control Systems #Military Defense Systems Analysis #Optimization and Control (math.OC) #Probability (math.PR) #math.OC #math.PR #msc:60G25 #msc:60G40 #msc:90B50 #msc:90B60 #msc:91A06 #msc:91A35 #msc:91A60 #msc:91B06
paper · pdf · doi:10.48550/arxiv.2103.02803
This working paper has been accepted on the international journals
openalex publication_date 2021/03/04 · arxiv created 2021/04/10 · arxiv updated 2021/04/13 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28
This paper is dealing with another multiple person game model under the antagonistic duel type setup. The most flexible multiple person duel game is analytically solved and the explicit formulas are solved to determine the time dependent duel game model by using the first exceed theory. Unlike conventional two-person duel game, multiple battle fields are introduced in the paper and each battle field becomes shooting ground of pairwise players. This model is targeted for real-world situations especially for selected target shooting scenarios. An analogue of the theory in the paper is designed for solving the best shooting time within multiple battle fields. This new proposed model is fully mathematically explained to be adapted in various domains including the strategies and operations.