• Title/Summary/Keyword: 잠수정

Search Result 81, Processing Time 0.026 seconds

Technology Development Trends Analysis and Development Plan of Unmanned Underwater Vehicle (무인 잠수정 연구 개발 동향 분석 및 발전 방안)

  • Lee, Ji Eun
    • Journal of the Korea Academia-Industrial cooperation Society
    • /
    • v.20 no.9
    • /
    • pp.233-239
    • /
    • 2019
  • An unmanned underwater vehicle is a major weapon system that allows surveillance and reconnaissance missions in border areas or threatening areas where enemy submarines are present. Unmanned underwater vehicles can be used to explore underwater resources, predict disasters, and survey the topography of the ocean floor in the civilian fields, while in the defense fields, it can be used for anti-submarine reconnaissance and mine countermeasures. In this paper, we first investigate the main classification of unmanned underwater vehicles, and foreign R&D trends are analyzed based on the main classification criteria by weight, such as portable, light, heavy and large-scale unmanned underwater vehicles. Then we examine the trends in the development of domestic unmanned underwater vehicles. Finally, through the analysis of both domestic and foreign unmanned underwater vehicles, we present future development trends of unmanned underwater vehicles in order to set defense goals to counter the anticipated threats and diversified potential environment.

Ergonomics review for the design of cabin window in deep manned submersible (심해 유인 잠수정 거주구 관측창 배치를 위한 인체공학적 설계 검토)

  • Lee, Jai-Kyung;Park, Seong-Whan;Lee, Hanmin
    • Proceedings of the Korea Information Processing Society Conference
    • /
    • 2015.10a
    • /
    • pp.1842-1843
    • /
    • 2015
  • 심해 유인 잠수정과 같은 제한된 공간 내에서 다수의 작업자가 장시간 거주하며 작업을 수행하기 위해서는 거주구 관측창 위치 및 기타 운영설비 배치에 있어 인체공학적 설계가 고려되어야 한다. 본 논문에서는 구조안전성 평가와 최적설계로 도출된 심해 유인 잠수정의 내압구조 셀 설계안을 대상으로 거주구 관측창 배치를 위한 인체공학적 설계 검토에 대하여 소개한다. 관측창 배치는 작업자 선내 위치, 관측 시야 확보, 편안하고 안전한 작업 여부 등의 다양한 요인과 함께 구조 안전성과 제작성 등이 동시에 고려되어야 한다. 국외 심해 잠수정 개발에서 적용된 인체공학적 설계 관련연구를 소개하고 디지털 휴먼 모델링 S/W인 Santos Engine을 활용한 인체공학적 설계 검토에 대하여 소개한다.

Implementation and field test for autonomous navigation of manta UUV (만타형 무인 잠수정의 개발과 실해역 성능시험)

  • Ko, Sung-Hyub;Kim, Dong-Hee;Kim, Joon-Young
    • Journal of Advanced Marine Engineering and Technology
    • /
    • v.37 no.6
    • /
    • pp.644-652
    • /
    • 2013
  • This paper describes the development and field experiments of Manta-type Unmanned Underwater Vehicle (UUV). Various simulations for Manta UUV are performed by using the nonlinear 6-DOF motion of equations. Through this simulation we verified the motion performances of Manta UUV. To acquire the blueprint of Manta UUV, it was designed with the simulation results. The Manta UUV uses a Doppler Velocity Log (DVL), gyrocompass, GPS, pressure sensor and other minor sensors, applied to measure the motion, position and path of Manta UUV. For its propulsion and changing a direction in the underwater, one vertical fin and four horizontal fins are installed at the hull of UUV. The Manta UUV system was verified with motion and autonomous navigation test at field.

Design of T-S Fuzzy-Model-Based Controller for Control of Autonomous Underwater Vehicles (무인 잠수정의 심도 제어를 위한 T-S 퍼지 모델 기반 제어기 설계)

  • Jun, Sung-Woo;Kim, Do-Wan;Lee, Ho-Jae
    • Journal of the Korean Institute of Intelligent Systems
    • /
    • v.21 no.3
    • /
    • pp.302-306
    • /
    • 2011
  • This paper presents Takagi-Sugeno (T-S) fuzzy-model-based controller for depth control of autonomous underwater vehicles(AUVs). Through sector nonlinearity methodology, The nonlinear AUV is represented by T-S fuzzy model. By using the Lyapunov function, the design condition of controller is derived to guarantee the performance of depth control in the format of linear matrix inequality (LMI). An example is provided to illustrate the effectiveness of the proposed methodology.

A Study on Ocean Waves with Free Surface around the Moving Underwater Vehicle (항해중인 잠수정 주위의 자유표면 해양파 연구)

  • Seung-Hyun Kwag
    • Journal of the Korean Institute of Navigation
    • /
    • v.25 no.4
    • /
    • pp.471-476
    • /
    • 2001
  • 항해중인 잠수정 주위의 해양파를 재연하기 위하여 3차원 비압축성 나비에-스톡스 코드가 사용되었다. 수치적으로는 3차미분 풍상차분이 근간을 이룬다. 대양에서 항해 중인 선박에 적용을 하기 위해 프루드 수를 0.4에서 0.7까지로 하였다. 조파저항, 양력, 모우멘트, 압력분포가 재연되었고 이것은 조선소의 초기설계에 사용 할 수 있다. Marker & Cell 방법을 기본으로 사각격자 구조를 만들어 해석하였고, 검증을 위하여 기존의 실험 결과와 비교하였다.

  • PDF

Design of T-S Fuzzy Model Based H Controller for Diving Control of AUV: An LMI Approach (무인 잠수정의 깊이 제어를 위한 T-S 퍼지 모델 기반 H 제어기 설계: 선형 행렬 부등식 접근법)

  • Jun, Sung-Woo;Kim, Do-Wan;Lee, Ho-Jae
    • Journal of the Korean Institute of Intelligent Systems
    • /
    • v.22 no.4
    • /
    • pp.441-447
    • /
    • 2012
  • This paper presents a design technique of a Takagi-Sugeno (T-S) fuzzy-model-based $H_{\infty}$ controller for autonomous underwater vehicles (AUVs). The design procedure aims to render the stabilizing controller which satisfies performance of the diving control for AUVs in the presence of the disturbance. A nonlinear AUV is modeled by the T-S fuzzy system through the sector nonlinearity. By using Lyapunov function, the sufficient conditions are derived to guarantee the performance of robust depth control in the format of linear matrix inequality (LMI). To succeed for diving control of AUV, we add the constraints on the diving and pitch angles in the LMI conditions. Through the simulation, we confirm the effectiveness of the proposed methodology.

Robust Path Tracking Control for Autonomous Underwater Vehicle with Variable Speed (변속 무인 수중 잠수정을 위한 강인 경로 추적 제어)

  • Choi, Yoon-Ho;Kim, Kyoung-Joo
    • Journal of the Korean Institute of Intelligent Systems
    • /
    • v.20 no.4
    • /
    • pp.476-482
    • /
    • 2010
  • In this paper, we propose a robust path tracking control method for autonomous underwater vehicle with variable speed. The proposed path tracking controller consists of a kinematic controller and a dynamic controller. First, the kinematic controller computes the surge speed and yaw rate to follow the reference path with variable speed. Then the dynamic controller controls the thrust force and yaw torque to move the AUV actually. In the dynamic control, we assume that the sway speed is a disturbance. In addition the dynamic controller is designed based on sliding mode conrol. We also demonstrate the stability of the proposed control method by Lyapunov stability theory. Finally, simulation results illustrate the performance of the proposed control method.