• 제목/요약/키워드: Underwater motion simulation

검색결과 90건 처리시간 0.02초

플래핑 운동을 적용한 자율무인잠수정(AUV)의 날개형상 및 운동 최적설계 (Optimization Design of Hydrofoil Shape and Flapping Motion in AUV(Autonomous Underwater Vehicle))

  • 김일환;최중선;박경현;이도형
    • 한국유체기계학회 논문집
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    • 제16권1호
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    • pp.24-31
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    • 2013
  • The motion of living organisms such as birds, fishes, and insects, has been analyzed for the purpose of the design of MAV(Micro Air Vehicle) and NAV(Nano Air Vehicle). In this research, natural motion was considered to be applied to the determination of the geometry and motion of AUV(Autonomous Underwater Vehicle). The flapping motion of a number of hydrofoil shapes in AUV was studied, and at the same time, the optimization of the hydrofoil shape and flapping motion was executed that allow the highest thrust and efficiency. The harmonic motion of plunging and pitching of NACA 4 digit series models, was used for the numerical analysis. The meta model was made by using the kriging method in Optimization method and the experimental points of 49 were extracted for the OA(Orthogonal array) in DOE(Design of experiments). Parametric study using this experimental points was conducted and the results were applied to MGA(Micro Genetic Algorithm). The flow simulation model was validated to be an appropriate tool by comparing with experimental data and the optimized shape and motion of AUV was turned out to produce highest thrust and efficiency.

생체모방형 수중다관절 로봇의 유영계획 (Swimming Plans for a Bio-inspired Articulated Underwater Robot)

  • 김희중;이지홍
    • 제어로봇시스템학회논문지
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    • 제19권9호
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    • pp.782-790
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    • 2013
  • In this paper, we propose a better solution for swimming plans of an articulated underwater robot, Crabster, with a view point of biomimetics. As a biomimetic model of underwater organisms, we chose diving beetles structurally similar to Crabster. Various swimming locomotion of the diving beetle has been observed and sorted by robotics technology through experiments with a high-speed camera and image processing software Image J. Subsequently, coordinated patterns of rhythmic movements of the diving beetle are reproduced by simple control parameters in a parameter space which make it easy to control trajectories and velocities of legs. Furthermore, a simulation was implemented with an approximated model to predict the motion of the robot under development based on the classified forward and turning locomotion. Consequently, we confirmed the applicability of parameterized leg locomotion to the articulated underwater robot through the simulated results by the approximated model.

수중운동체의 호버링시스템을 위한 퍼지 슬라이딩 모드 제어기 설계 (A fuzzy sliding mode controller design for the hovering system of underwater vehicles)

  • 김종식;김성민
    • 제어로봇시스템학회논문지
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    • 제1권1호
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    • pp.25-32
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    • 1995
  • Nonlinear depth control algorithms for the hovering system of underwater vehicles are presented. In this paper, a nonlinear effect in heave motion for underwater vehicles, a deadzone effect of the flow control valve in the hovering tank and an impact disturbance are considered. In this situation, in order to choose a desirable controller, sliding mode controller and fuzzy sliding mode controller are designed and compared. The computer simulation results show that the fuzzy sliding mode control system is more suitable in order to maintain a desirable depth of an underwater vehicle with a deadzone and impact disturbance.

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수중 선체에 장착된 로봇팔 궤적의 비귀환형 적응제어 (Non-regressor Based Adaptive Tracking Control of an Underwater Vehicle-mounted Manipulator)

  • 여준구
    • 한국해양공학회지
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    • 제14권2호
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    • pp.7-12
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    • 2000
  • This paper presents a non-regressor based adaptive control scheme for the trajectory tracking of underwater vehicle-mounted manipulator systems(UVMS). The adaptive control system includes a class of unmodeled effects is applied to the trajectory control of an UVMS. The only information required to implement this scheme ios the upper bound and lowe bound of the system parameter matrices the upper bound of unmodeled effects the number of joints the position and attitude of the vehicle and trajectory commands. The adaptive control law estimates control gains defined by the combinations of the bounded constants of system parameter matrices and of a filtered error equation. To evaluate the performance of the non-regressor based adaptive controller computer simulation was performed with a two-link planar robot model mounted on an underwater vehicle. The hydrodynamic effects acting on the manipulator are included. It is assumed that the vehicle's motion is slow and can be predicted with a proper compensator.

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가오리형 수중글라이더의 형상설계 및 운동성능 해석 (Hull Design and Dynamic Performance Analysis for ray-type Underwater Glider)

  • 이성욱;정재훈;정상기;최형식;김준영
    • 대한임베디드공학회논문지
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    • 제12권5호
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    • pp.343-350
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    • 2017
  • Underwater glider with a single buoyancy engine could generally obtain propulsive forces by moving the center of buoyancy and gravity. Futhermore, The hull and internal structure of underwater glider are designed according to the purpose of long-time operation, high speed and a wide variety of payloads (sensors, communications and etc.). In this paper, Ray-type underwater glider featuring flatfish is considered in view of hydrodynamics. The hull design is especially performed by the analysis of fluid resistance and dynamic performance. The resistance performance is analyzed using the Computational Fluid Dynamics (CFD). In addition, a simulation program is implemented in order to verify the validity of dynamics modeling and dynamic performances.

수중 기뢰 제거 로봇의 설계, 제어 및 위치 추정 (Design, Control and Localization of Underwater Mine Disposal Robots)

  • 문용선;고낙용;서주노
    • 제어로봇시스템학회논문지
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    • 제19권9호
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    • pp.805-812
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    • 2013
  • This paper describes the design, control, and localization which comprise major aspects of the development of underwater robots for the mine disposal. The developed robots are called the Mine Killer (MK-1) and MK-2. MK-1 had been developed from September 2009 and was presented at the 9-th International Symposium at NPS Monterey CA, on May 17-21, 2010[1]. The paper presents design of MK-1 and MK-2 in detail with comparison of these two versions of MKs. Then it derives hydrodynamic coefficients of MK-1. Based on the coefficients, the motion of MK-1 is simulated for straight line motion and circular motion. Also simulation results for PD control, LQ control and sliding mode control are presented. Finally, it shows a particle filter method for localization of MK-1 and MK-2 using simple range data from acoustic beacons.

다채널 디스플레이에서 X3D와 모션체어를 이용한 수중운동체 시뮬레이터 (An Underwater Simulator Using X3D and a Motion Chair in a Multi-channel Display Room)

  • 허필원;양정삼;한순흥
    • 한국CDE학회논문집
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    • 제13권1호
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    • pp.45-57
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    • 2008
  • A submarine good military weapon because of its confidentiality and intimidating power. Therefore, training warfighters how to maneuver submarine is very important. Because submarine is very expensive and has regional and temporal limitations, M&S(Modeling and Simulation) can be a good alternative. However, as the existing M&S systems of submarine generally use expensive commercial software and dedicated hardware, which cause the warfighters to take troubles to visit the secured places, and then to train themselves during limited time slots. Also, many M&S systems have only one-channel display system which reduces the sense of immersiveness. Another problem is that many heterogeneous simulators can hardly be used as an integrated system. To solve these problems, X3D, a platform-independent and open standard graphic file format, is used with the general-purpose PCs. To increase immersiveness, multi-channel display system and a motion chair are used. Finally, HLA/RTI is used to integrate individual components of the simulator. All of these are verified through experiments.

Research on the motion characteristics of a trans-media vehicle when entering water obliquely at low speed

  • Li, Yong-li;Feng, Jin-fu;Hu, Jun-hua;Yang, Jian
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제10권2호
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    • pp.188-200
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    • 2018
  • This paper proposes a single control strategy to solve the problem of trans-media vehicle difficult control. The proposed control strategy is just to control the vehicle's air navigation, but not to control the underwater navigation. The hydrodynamic model of a vehicle when entering water obliquely at low speed has been founded to analyze the motion characteristics. Two methods have been used to simulate the vehicle entering water in the same condition: numerical simulation method and theoretical model solving method. And the results of the two methods can validate the hydrodynamic model founded in this paper. The entering water motion in the conditions of different velocity, different angle, and different attack angle has been simulated by this hydrodynamic model and the simulation has been analyzed. And the change rule of the vehicle's gestures and position when entering water has been obtained by analysis. This entering water rule will guide the follow-up of a series of research, such as the underwater navigation, the exiting water process and so on.

무인 수중글라이더의 에너지 효율 개선을 위한 제어방법 개발 (Development of Control Method for Improving Energy Efficiency of Unmanned Underwater Gliders)

  • 나승규;고성협;지대형;천승재;정성훈;최형식;김준영
    • 한국항행학회논문지
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    • 제26권2호
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    • pp.105-112
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    • 2022
  • 본 논문의 무인 수중글라이더는 깊은 수심에서 작동하기 위해 설계되었고, 배터리 효율을 개선하기 위해 블래더 타입의 부력제어기를 채택하였고 내부 이동배터리의 움직임을 이용하여 피치각도를 제어하는 방식을 사용하고 있다. 무인 수중글라이더의 에너지 효율을 증대하기 위해 구간별로 제어를 수행하는 Layered PID 제어기를 설계하였으며, 유체동역학 계수를 포함한 6자유도 운동방정식을 전개하여 Matlab/Simulink 해석 프로그램을 설계하였다. 제어성능과 에너지 효율을 비교하기 위해 PID 제어기, 슬라이딩 모드 제어기 그리고 Layered PID 제어기를 해석 프로그램을 이용하여 비교 분석하였고 Layered PID 제어기가 PID 제어기에 비해 7.2%의 에너지 절감의 성능을 나타내었다.