• 제목/요약/키워드: Mine Hunting

검색결과 5건 처리시간 0.021초

소나와 무인기뢰처리기 정보를 활용한 기뢰전 체계 설계 방안 (A System Design Method of Mine Warfare Using Information for SONAR and MDV)

  • 김준영;신창홍;김경희
    • 한국통신학회논문지
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    • 제39C권12호
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    • pp.1243-1249
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    • 2014
  • 기뢰는 수중에 설치되어 수상함과 잠수함을 공격하기 위한 폭발물로서, 기뢰전은 해군의 여러 가지 성분작전 중에서 매우 중요한 작전 중 하나이다. 본 논문은 기뢰전 일반 개념에 대한 이해로부터 기뢰탐색작전 및 소해작전의 소개와 본문에서 소개 할 몇 가지 기능을 통한 전반적인 기뢰전 체계 설계 방안을 제안한다. 기뢰전 체계의 기능으로는 소나 영상정보로부터 아다부스트 기법을 활용하여 기뢰영역을 탐지하는 기능과 기뢰탐색작전 및 소해작전의 수행 시 각각의 진행률을 계산하는 기능, 소나로부터 수신한 기뢰 표적으로 무인기뢰처리기를 유도하는 기능 등이 있다.

측면주사소나 특성에 따른 자율무인잠수정 기뢰탐색 효과도 분석 (Analysis of the Effectiveness of Autonomous Unmanned Underwater Vehicle Mine Search Operation by Side Scan Sonar Characteristics)

  • 유태석;박석준;윤선일;박호규
    • 한국정보통신학회논문지
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    • 제24권8호
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    • pp.1077-1085
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    • 2020
  • 부설된 기뢰를 소해하기 위해 기뢰매설 예상구역에 대한 탐색을 수행한다. 이 때 기뢰탐색은 기뢰의 위험성, 아군의 안정성 등을 고려하여 자율무인잠수정을 이용한다. 매설된 기뢰를 식별하기 위한 소나시스템은 측면주사소나, 합성개구소나 등을 탑재한다. 본 논문은 측면주사소나 특성에 따른 기뢰탐색효과도 분석에 대해 기술한다. 각 측면주사소나의 특성을 바탕으로 음향조사역 및 인식확률을 모델링 하였고, AUV의 주행패턴에 따라 분석을 수행하였다. AUV의 주행패턴은 측면주사소나 음영구역의 유무에 따라 3가지 탐색패턴을 정의하였다. 분석결과는 각 탐색패턴 마다 탐지시간, 탐지확률을 도출하고 최종적으로 측면주사소나 음영구역의 유무에 따른 탐색 향상도를 도출하였다.

무인잠수정 기반 기뢰대항전체계 개발을 위한 소요기술 분석 (An Analysis of Required Technologies for Developing Unmanned Mine Countermeasure System Based on the Unmanned Underwater Vehicle)

  • 이기영
    • 한국군사과학기술학회지
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    • 제14권4호
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    • pp.579-589
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    • 2011
  • One of the most significant UUV(Unmanned Underwater Vehicle) applications is MCM(Mine Countermeasure), which makes good use of UUV characteristics to provide covert, rapid, controlled and efficient survey of a potential minefield without risking a human operator. In this paper, a survey of the today's MCM missions where UUVs will play a role, the vehicle systems that are either under development or planned in the future are presented. And examines principal technical challenges and outline new enabling technologies. Particularly, this paper analyses current approaches to tacking these technologies and technological limitation of UUVs as a MCM platform, and research efforts to develop the technology necessary to meet the domestic MCM mission needs.

Application of black box model for height prediction of the fractured zone in coal mining

  • Zhang, Shichuan;Li, Yangyang;Xu, Cuicui
    • Geomechanics and Engineering
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    • 제13권6호
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    • pp.997-1010
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    • 2017
  • The black box model is a relatively new option for nonlinear dynamic system identification. It can be used for prediction problems just based on analyzing the input and output data without considering the changes of the internal structure. In this paper, a black box model was presented to solve unconstrained overlying strata movement problems in coal mine production. Based on the black box theory, the overlying strata regional system was viewed as a "black box", and the black box model on overburden strata movement was established. Then, the rock mechanical properties and the mining thickness and mined-out section area were selected as the subject and object respectively, and the influences of coal mining on the overburden regional system were discussed. Finally, a corrected method for height prediction of the fractured zone was obtained. According to actual mine geological conditions, the measured geological data were introduced into the black box model of overlying strata movement for height calculation, and the fractured zone height was determined as 40.36 m, which was comparable to the actual height value (43.91 m) of the fractured zone detected by Double-block Leak Hunting in Drill. By comparing the calculation result and actual surface subsidence value, it can be concluded that the proposed model is adaptable for height prediction of the fractured zone.

Dynamics modeling of a semi-submersible autonomous underwater vehicle with a towfish towed by a cable

  • Park, Jinmo;Kim, Nakwan
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제7권2호
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    • pp.409-425
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    • 2015
  • In this paper, we employ a dynamics modeling method for investigating a multi-body dynamics system of semi-submersible autonomous underwater vehicles consisting of a towing vehicle operated near the water surface, a tow cable, and a towfish. The towfish, which is towed by a marine cable for the purposes of exploration or mine hunting, is modeled with a Six-Degree-of-Freedom (6-DOF) equation of motion that reflects its hydrodynamics characteristics. The towing cable, which can experience large displacements and deformations, is modeled using an absolute nodal coordinate formulation. To reflect the hydrodynamic characteristics of the cable during motion, the hydrodynamic force due to added mass and the drag force are imposed. To verify the completeness of the modeling, a few simple numerical simulations were conducted, and the results confirm the physical plausibility of the model.