• Title/Summary/Keyword: Battlefield Simulation

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Moving Object Management System for Battlefield Simulation

  • Ahn, Yoon-Ae
    • Journal of the Korean Data and Information Science Society
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    • v.15 no.3
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    • pp.663-675
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    • 2004
  • A battlefield simulation is the evaluation and analysis of the battlefield area, based on the data for terrain, climate, unit's maneuver and tactics basically required in battlefield simulation. Because it is difficult for the military authorities to collect all of the information perfectly for the reason of communication technology, jamming, and tactics, the military authorities need the future moving status for the target units by using acquired moving information. Therefore, we propose a moving object management system that concurrently provides domain reasoning function for the battlefield simulation. In order to implement the proposed system, we show the data modeling of the moving object for the battlefield simulation, and propose an inference engine using domain rule base and spatiotemporal operation. Also, we analyze the query response rate by inference function to verify domain reasoning of the implemented system.

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Environmental Data Management and Supply Plan for Building Synthetic Battlefield Environment of Air Combat Simulation (항공 전투 시뮬레이션의 합성전장환경 구축을 위한 환경 데이터 관리 및 공급 방안)

  • Yang, Ka-Ram;Hwam, Won K.;Park, Sang C.
    • Journal of the Korea Society for Simulation
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    • v.22 no.3
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    • pp.7-14
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    • 2013
  • In this paper, there is a research for providing environmental data to reflect environmental effects to the simulation for the aviation weapon systems by the construction of the synthetic battlefield. The results of the aviation engagement simulation are able to differ by environmental effect. This paper analyzes the real aviation battlefield and designs the synthetic battlefield based on the analysis. In order to construct the designed synthetic battlefield, we collects the real environmental data for the atmosphere and structures the collected data using GIS (Geographic information system interpolation). The main objective of this paper is to design the synthetic battlefield based on the derived environmental factors from the analysis of the real aviation battlefield, and it constructs the designed synthetic battlefield by the collection of real atmosphere data. The constructed synthetic battlefield provides the environmental data which are requested from the distributed simulation system, and it makes the system reflect environmental effects to the simulation.

Battlefield Ontology for Communication Unit Mission (통신부대 임무수행을 위한 전장온톨로지)

  • Lee, Yujin;Lee, Kyong-Ho
    • Journal of Korea Multimedia Society
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    • v.23 no.5
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    • pp.667-672
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    • 2020
  • Defense M&S (Modeling&Simulation) is a tool that creates a virtual battle situation similar to the real world, measuring and evaluating the effects of war or combat elements. However, it is very challenging to consider all the possible outcomes on the battlefield. To solve this problem, we propose a battlefield ontology, which conceptualizes the data of battlefield situation with tactical considerations. The proposed battlefield ontology is evaluated based on various communication posts in war game scenarios. The battlefield ontology is expected to assist the process of quick and accurate command decisions in convoluted battlefield situations.

Study of Development for Distributed Battlefield Simulation Environment : One-to-One Single Unit Engagement Model (분산전장 모의환경 구축 방법에 대한 연구 : 단일부대 1:1 교전모델 개발)

  • Choi, Jeongseok;Moon, Sunghwan;Kim, Taeyoung;Kim, Jaekwon;Lee, Jongsik
    • Journal of the Korea Society for Simulation
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    • v.24 no.4
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    • pp.69-76
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    • 2015
  • Modern warfare, which adopt an intensive technique of applied sciences, is difficult to predict, and has a high complexity. Thus, it is necessary to build a battle-field environment and simulation-based analysis. Various organizations are participated to build battlefield model for defense M&S according to a scale and format. On the basis of this trend, approaching from various systems is needed to reconfigure battlefield modeling for distributed system. This paper proposes building design for battlefield simulation environment with a sample of one-to-one single unit engagement model. The proposed method can expect to utilize an example of distributed environment for various participants that are involved in battlefield modeling and simulation.

Interrelation Analysis of UGV Operational Capability and Combat Effectiveness using AnyLogic Simulation (애니로직 시뮬레이션을 이용한 무인지상차량 운용성능과 전투효과의 연관성 분석)

  • Lee, Jaeyeong;Shin, Sunwoo;Kim, Junsoo;Bae, Sungmin;Kim, Chongman
    • Journal of Applied Reliability
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    • v.15 no.2
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    • pp.131-138
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    • 2015
  • In modern warfare, the number of unmanned systems grow faster than any other weapon systems. Therefore, it is very important to predict and measure the combat effectiveness (CE) of unmanned weapon systems in battlefield for deciding defense budget to acquire those systems. In general, quantitative calculation of weapon effectiveness under complicated battlefield is difficult based on the future network centric warfare. Hence, many papers studied how to measure the combat effectiveness and tried to study a lot of related issues about it. However, there are few papers dealing with the relationship between the UGV (Unmanned Ground Vehicle)'s performance and CE in a ground battlefield. In this paper, we do the sensitivity analysis based on a given scenario in a small unit battle. In order to do that, we developed simulation model using AnyLogic and changed the input parameters such as detection and hitting probabilities. We also assess the simulation outputs according to the variation of input parameters. The MOE used in this simulation model output is survival ratio for Blue force. We hope that this paper will be useful to find which input variable is more effective to increase combat effectiveness in a small unit ground battlefield.

A Framework to Construct the Aviation Engagement Simulation Model based on the Synthetic Battlefield in the HLA/RTI System (HLA/RTI 시스템에서 합성전장환경 기반의 항공 교전 시뮬레이션 모델 구축 프레임워크)

  • Ham, Won K.;Yang, Karam;Choi, Jong-Yeob;Park, Sang C.
    • Journal of the Korea Society for Simulation
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    • v.23 no.2
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    • pp.57-64
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    • 2014
  • This paper proposes a framework to construct the synthetic battlefield based aviation engagement simulation model for the distributed system. The proposed framework has the synthetic battlefield in the HLA (High Level Architecture)/RTI (Run-Time Infrastructure) based distributed system to reflect environmental effects into the aviation engagement simulation model. In an aviation engagement, the environment affects weapon systems such as detection and movement. Therefore, environmental effects are required to be reflected in the simulation. However, former researches are inadequate for complex operations of weapon systems that are requirements of the engagement simulation. Thus, the construction of the engagement simulation system of which reflects environmental effects based on environmental data is still difficult. The main objective of this paper is to propose a framework to solve the difficulty and constructs an example system based on the proposed framework.

A Virtual Battlefield Situation Dataset Generation for Battlefield Analysis based on Artificial Intelligence

  • Cho, Eunji;Jin, Soyeon;Shin, Yukyung;Lee, Woosin
    • Journal of the Korea Society of Computer and Information
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    • v.27 no.6
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    • pp.33-42
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    • 2022
  • In the existing intelligent command control system study, the analysis results of the commander's battlefield situation questions are provided from knowledge-based situation data. Analysis reporters write these results in various expressions of natural language. However, it is important to analyze situations about information and intelligence according to context. Analyzing the battlefield situation using artificial intelligence is necessary. We propose a virtual dataset generation method based on battlefield simulation scenarios in order to provide a dataset necessary for the battlefield situation analysis based on artificial intelligence. Dataset is generated after identifying battlefield knowledge elements in scenarios. When a candidate hypothesis is created, a unit hypothesis is automatically created. By combining unit hypotheses, similar identification hypothesis combinations are generated. An aggregation hypothesis is generated by grouping candidate hypotheses. Dataset generator SW implementation demonstrates that the proposed method can be generated the virtual battlefield situation dataset.

A Study on Agent based Simulation System Architecture for the Engagement of Ground Weapon Systems (지상무기체계 교전 모의를 위한 에이전트 기반 시뮬레이션 시스템 아키텍처 설계 연구)

  • Hwam, Won K.;Chung, Yongho;Na, Jaeho;Park, Sang C.
    • Journal of the Korea Society for Simulation
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    • v.21 no.4
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    • pp.81-90
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    • 2012
  • Presented in this paper is a study for construction of a simulation system for the engagement of ground weapon systems. This paper proposes architecture for the simulation system based on agent simulation design methodology. Every entity of the proposed architecture is developed by assembling modularized agent components, and it enhances the reusability and composability of the entity. Consequently, time, costs, and efforts that are required to develop a new simulation system is able to be reduced by the enhancement. In the case of ground engagement simulation, it is very important to reflect environmental effects. Synthetic battlefield of the proposed architecture has environmental data of the battlefield and interacts with entities in the simulation system. The proposed architecture based simulation system can build swiftly various simulation models by the objectives and derive reasonable results from behaviors of entities that include environmental effects. This paper contains the construction of an example system based on the proposed architecture to verify the advantages of the architecture.

A Fuzzy AHP based Decision making Model for ground operations (지상작전수립을 위한 Fuzzy-AHP 기반의 의사결정 모델 연구)

  • Lee, Young-Kyun;Kim, Ki-Ang;Na, Hong-Bum;Park, Jin-Woo
    • Journal of the Korea Society for Simulation
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    • v.17 no.4
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    • pp.159-165
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    • 2008
  • The ROK army has equipped ATCIS (Army Tactical Control Information System) for the Corps echelon to visualize the battlefield and reduce the reaction time. Due to the information&surveillance equipment, uncertainty and variance of the battlefield have been decreased. However decision making for the ground operations has not changed as it depends on knowledge of the commander and staffs. The War game process to select and assess the best CoA (Course of Action) also depends on the pros and cons due to the limitation of time and capability. For the balanced development between intangible and tangible military strength, a new decision making process which is quantitative and useful for the military is needed. In this study, we suggest a Fuzzy-AHP based decision making model to improve troop leading procedure which is useful to evaluate and reflect intangible characteristics of the battlefield.

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Modeling and Simulation of Optimal Path Considering Battlefield-situation in the War-game Simulation (워게임 시뮬레이션에서 전장상황을 고려한 최적경로 모델링 및 시뮬레이션)

  • Lee, Sung-Young;Jang, Sung-Ho;Lee, Jong-Sik
    • Journal of the Korea Society for Simulation
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    • v.19 no.3
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    • pp.27-35
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    • 2010
  • War-games using C4I systems have been used to improve the command ability of commanders and the fighting power of combat forces. During a war-game simulation, a commander makes a plan for the movement of a combat force and issues orders to the combat force according to the plan. If it is possible to minimize damages from the artillery of enemy forces and take the advantage position where is effective for attack/defense, we can hold a dominant position of the battlefield. Therefore, this papers proposes a genetic algorithm-based optimal path searching method. The proposed method creates an optimal path of a combat force by taking into consideration dangerous conditions of the battlefield in which the combat force is. This paper also shows the process of creating an optimal path by using a discrete event specification modeling and simulation method.