• Title/Summary/Keyword: Future Weapon System

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Conceptual Study of the Future Holonic Weapon System (미래전장 홀로닉 무기체계 개념)

  • 최진희;유삼현
    • Journal of the Korea Institute of Military Science and Technology
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    • v.3 no.1
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    • pp.183-190
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    • 2000
  • The concept of Holon was suggested by A. Koestler in his paper(1967) "The Ghost in the Machine." It became one of the central concept of the Intelligent Manufacturing System. In this paper, a new system concept: Holonic Weapon System was introduced. HWS has the advantages of the holonic system and the system integration technique so that the future unmanned combat system should consider this concept.

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A Study on the Efficient Planning of Defense Weapon System Test & Evaluation (국방무기 시험평가시스템 효율화방안 연구)

  • Ryoo, Yeon Uk;Lim, Yeong Bong
    • Convergence Security Journal
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    • v.13 no.2
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    • pp.143-153
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    • 2013
  • The objective of this study is to present improvement of Weapon System T&E(Test and Evaluation) correspond to future environment by analyzing restrictions such as change of future weapon system procurement environment, and present T&E management system, organization and resource etc. The results of this study will be aid of produ ction dicision making by timely risk management through early identification of deficiency on the process of weapon system development, and suitability of combat determination.

A study on Technology Push-based Future Weapon System and Core Technology Derivation Methodology (빅데이터분석기반의 기술주도형 미래 국방무기체계 및 핵심기술 도출 방법연구)

  • Kang, Hyunkyu;Park, Yongjun;Park, Jaehun
    • Journal of Korean Society for Quality Management
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    • v.46 no.2
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    • pp.225-242
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    • 2018
  • Purpose: Recent trends have shown that the usage of big data analysis is becoming the core of identifying promising future technologies and emerging technologies. Accordingly, applying these trends by analyzing defense related data in such sources as journals, articles, and news will provide crucial clues in predicting and identifying core future technologies that can be used to develop creative and unprecedented future weapon systems that could change the warfare. Methods: To identify technology fields that are closely related to the 4th industrial revolution and recent technology development trends, environmental analysis, text mining, and military applicability survey have been included in the process. After the identification of core technologies that are militarily applicable, future weapon systems based on these technologies as well as their operation concepts are suggested. Results: Through the study, 73 important trends, from which 11 mega trends are derived, are identified. These mega trends can be expressed by 13 promising technology fields. From these technology fields, 248 promising future technologies are identified. Afterwards, further assessment is performed, which leads to the selection of 63 core technologies from the pool. These are named as "future defense technologies" which then become the bases for 40 future weapons systems that the military can use. Conclusion: Predicting future technologies using text mining analysis have been attempted by various organizations across the globe, especially in the fields related to the 4th industrial revolution. However, the application of it in the field of defense industry is unprecedented. Therefore, this study is meaningful in that it not only enables the military personnel to see promising future technologies that can be utilized for future weapon system development, but helps one to predict the future defense technologies using the method introduced in the paper.

A Standardized Design Method of Weapon Information Exchange for Interoperability with Several Kinds of Command and Control System (이기종 지휘통제체계 연동을 위한 무장정보 처리 표준화 설계 방안)

  • Shin, JinBeom;Bae, JungIl;Lee, DongGowan;Koh, Hye-Seung
    • Journal of the Korea Institute of Military Science and Technology
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    • v.18 no.6
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    • pp.771-778
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    • 2015
  • In this paper, we have proposed a design method for standardization of weapon information exchange between a weapon control computer of guided missile system and a high echelon command and control system. Because the weapon control computer based on diverse combat platforms is operated with several kinds of a high echelon system, it is necessary to provide a standardized design method for weapon information exchange between mutual system. In fact, it is possible to standardize a interface design specification of weapon information message because weapon information message is closely related to standard tactical data link message. It is essential that the interface design specification of weapon information is submitted to that of tactical data link information. It seems that this interface design specification is very useful in development process of the future weapon system.

Logistic Supportability Improvement Program for the Future Main Battle Tank (고장진단체계 구축을 통한 미래전차의 군수지원성 향상 방안 연구)

  • Jung, ChangMo;Lee, MyungChun
    • Journal of the Korean Society of Systems Engineering
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    • v.1 no.2
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    • pp.34-42
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    • 2005
  • Logistic Support Analysis(LSA) and Logistic Supportability Review must be carried out as soon as possible in development stage in order to minimize operation/maintenance cost that head the list of weapon cost and improve logistic supportability of the weapon system. And the result must be used for hardware designs to set up to be able to input to the system design and logistic support elements. Therefore Logistic Support Elements must be planed/developed/supplied with the main combat system concurrently and performance and logistic supportability of the comabat system had better be improved mutually. This report describes maintenance concept changes of weapon systems, fault diagnosis function and test equipment state on the domestic MBT(main battle tank). And then it presents application and intensification of itself fault diagnosis system for a domestic future MBT considering connection with IETM(Interactive Electronic Technical Manual) and TE(Test Equipment).

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Application of an IDEF to Acquisition Management of Weapon System (무기체계 획득관리를 위한 IDEF 적용)

  • 유상양;오현승
    • Journal of the military operations research society of Korea
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    • v.24 no.2
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    • pp.170-186
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    • 1998
  • The purposes of this paper are applying the IDEF(Integrated DEFinition), which was selected for standard methodology of CALS(Computer-aided Acquisition and Logistic Support) process modeling, to the acquisition process of the weapon system to activate DEfense CALS of the acquisition and management business of weapon system on Defense Planning and Management System and developing a AS-IS model which is usable and that the analysis of process problems results in. On this paper, We diagrammed the function of the acquisition and management of weapon system by using IDEF0 and presented AS-IS model. This paper focused on the development of AS-IS model which can put to practical use to find the problems of current acquisition and management process of weapon system and the embodiment of national defense CALS system. So more detailed analysis of current system and additional studies about TO-BE model would be the future research area.

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The operational concept of the network based future airborne force power (네트워크 기반 미래 공중전력 운용개념)

  • Kim, Jong Yoel;Kwon, Yong Soo;Kim, Yun Kyu
    • Journal of the Korean Society of Systems Engineering
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    • v.4 no.2
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    • pp.45-54
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    • 2008
  • This paper describes an operational concept of the network based future airborne force power using a systems engineering approach. The battlefield is changing to new system of systems that command and control by the network based BM/C4ISR. Also, it is composed of various sensors and shooters in an single theater. Future threats may be characterized as unmanned moving bodies that the strategic effect is great such as UAVs, cruise missile and tactical ballistic missiles. New threats such as low altitude stealth cruise missile may also appear. The implementation of future airborne force power network systems against these future threats is required to complex and integrated approach based on systems engineering. This work developed the operational concepts of the future airborne network system, and then derived the requirements for performing missions effectively. In addition, the scheme of future airborne force power network systems is presented.

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A Simulated Study on the Stability during Crossing Operation of K21 Infantry Fighting Vehicle (K21 보병전투차량의 도하작전 간 안정성에 관한 시뮬레이션 연구)

  • Sung Do Kim;Byung Kil Lee;Jang Wook Hur
    • Journal of the Korean Society of Systems Engineering
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    • v.19 no.1
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    • pp.39-43
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    • 2023
  • In ground weapon systems, the design and analysis technology for water operation stability is a relatively unknown area compared to maritime weapon systems. Through this study, it was confirmed that our weapon system satisfies the criteria for stability on the water when considering the operational concept and operational performance. However, there is a limitation of the study that it did not perform verification tests on the actual system. Therefore, in the future research and weapon system acquisition process, a procedure to prove the stability through freeboard analysis using the actual system is required.

A Study on the Militarization of Artificial Intelligence Technology in North Korea and the Development Direction of Corresponding Weapon System in South Korea (북한 인공지능 기술의 군사화와 우리 군의 대응 무기체계 발전방향 연구)

  • Kim, Min-Hyuk
    • Journal of Information Technology Services
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    • v.20 no.1
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    • pp.29-40
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    • 2021
  • North Korea's science and technology policies are being pursued under strong leadership and control by the central government. In particular, a large part of the research and development of science and technology related to the Fourth Industrial Revolution in North Korea is controlled and absorbed by the defense organizations under the national defense-oriented policy framework, among which North Korea is making national efforts to develop advanced technologies in artificial intelligence and actively utilize them in the military affairs. The future weapon system based on AI will have superior performance and destructive power that is different from modern weapons systems, which is likely to change the paradigm of the future battlefield, so a thorough analysis and prediction of the level of AI militarization technology, the direction of development, and AI-based weapons system in North Korea is needed. In addition, research and development of South Korea's corresponding weapon systems and military science and technology are strongly required as soon as possible. Therefore, in this paper, we will analyze the level of AI technology, the direction of AI militarization, and the AI-based weapons system in North Korea, and discuss the AI military technology and corresponding weapon systems that South Korea military must research and develop to counter the North Korea's. The next study will discuss the analysis of AI militarization technologies not only in North Korea but also in neighboring countries in Northeast Asia such as China and Russia, as well as AI weapon systems by battlefield function, detailed core technologies, and research and development measures.

Firing Data Calculation Algorithm for Smart Weapon System Under Non-standard Conditions (스마트무장 비 표준조건 사격제원 산출 알고리즘)

  • Moon, Kyujin;Jeong, Ui-Taek;Lee, Yongseon;Choi, Sungho;Ryoo, Chang-Kyung
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.50 no.4
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    • pp.233-240
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    • 2022
  • The smart weapon system is a new weapon system of the future battlefield environment as a miniature guided weapon that performs precision strike missions through terminal phase guidance. However, it has small coverage to guide due to its low maneuverability because the smart weapon is controlled by using actuator of piezoelectric drive type due to the structural limitations. In this paper, we propose a firing data calculation algorithm under non-standard conditions to increase the effectiveness of the smart weapon. The proposed algorithm calculates firing data under non-standard conditions by calibrating firing data under standard conditions using information acquired in battlefield environments. The performance of the proposed algorithm is verified by numerical simulations under various conditions.