• 제목/요약/키워드: optimal attitude algorithm

검색결과 27건 처리시간 0.029초

GA-PID 제어기를 이용한 헬리콥터 시스템의 자세 제어 (Attitude Control of Helicopter Simulator System Using GA-PID Controller)

  • 성상규;이준탁;박두환
    • Journal of Advanced Marine Engineering and Technology
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    • 제28권4호
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    • pp.675-684
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    • 2004
  • The Helicopter system has a non-linearity and complexity. Futhermore, because of absence of its correct mathematical model. it is difficult to control accurately its attitudes for elevation angle and azimuth one. Therefore, we proposed a GA-PID control technique to control these angles efficiently. The proposed GA-PID controller can systematically generate optimal PID parameters by applying GA theory to a helicopter attitude control system. Through the computer simulation, the GA-PID technique shows better attitude control characteristic than traditional PID control technique.

퍼지추론을 이용한 철도.항공시스템에서의 자세제어시스템 (Strapdown Attitude Reference System(SARS) in the Railway and Aviation System using Fuzzy Inference)

  • 김민수;변윤섭;이관섭
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2006년도 제37회 하계학술대회 논문집 D
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    • pp.2077-2078
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    • 2006
  • This paper describes the development or a closed-loop Strapdown Attitude Reference System (SARS) algorithm integrated filtering estimator for determining attitude reference for railway and aviation system using fuzzy inference. The SARS consists of 3 single-axis rate gyms in conjunction with 2 single-axis accelerometers. For optimal values of fuzzy systems, we utilize on-line scheduling method for initial values and then use genetic algorithms for fine tuning. Implementation using experimental test data of unmanned aerial vehicle has been performed in order to verify the estimation. The proposed fuzzy inference based SARS demonstrate that more accurate performance can be achieved in comparison with conventional one. The estimation results were compared with the on-board vertical gyro as the reference standard.

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등반능력향상을 위한 이륜 역진자 로봇의 최적 ARS 제어 (Optimal ARS Control of an Inverted Pendulum Robot for Climbing Ability Improvement)

  • 권영국;이장명
    • 로봇학회논문지
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    • 제6권2호
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    • pp.108-117
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    • 2011
  • This paper proposes an optimal ARS control of a two-wheel mobile inverted pendulum robot. Conventional researches are highly concentrated on the robust control of a mobile inverted pendulum on the flat ground, $i.e.$, mostly focus on the compensation of gyroscope signals. This newly proposed algorithm deals with a climbing control of a slanted surface based on the dynamic modeling using the conventional structure. During the climbing control of the robot, unexpected disturbance forces are essentially caused by the irregular contact force which comes from the irregular contact angle between the wheel and the terrain. The disturbances have effects on the optimal posture of the mobile robot to compensate the slanted angle. Therefore the dynamics equations through physical interpretation are derived for the selection of optimum climbing posture through ARS. Also using the ultrasonic sensor the slope information is obtained to compensate for the force of gravity. The control inputs are dynamically adjusted to climb up the slanted surface effectively. The proposed algorithm is demonstrated through the real experiments.

Ground Experiment of Spacecraft Attitude Control Using Hardware Testbed

  • Oh, Choong-Suk;Bang, Hyo-Choong
    • International Journal of Aeronautical and Space Sciences
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    • 제4권1호
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    • pp.75-87
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    • 2003
  • The primary objective of this study is to demonstrate ground-based experiment for the attitude control of spacecraft. A two-axis rotational simulator with a flexible ann is constructed with on-off air thrusters as actuators. The simulator is also equipped with payload pointing capability by simultaneous thruster and DC servo motor actuation. The azimuth angle is controlled by on-off thruster command while the payload elevation angle is controlled by a servo-motor. A thruster modulation technique PWM(Pulse Width Modulation) employing a time-optimal switching function plus integral error control is proposed. An optical camera is used for the purpose of pointing as well as on-board rate sensor calibration. Attitude control performance based upon the new closed-loop control law is demonstrated by ground experiment. The modified switching function turns out to be effective with improved pointing performance under external disturbance. The rate sensor calibration technique by Kalman Filter algorithm led to reduction of attitude error caused by the bias in the rate sensor output.

위성 구성품의 3차원 최적 배치 설계 (3D Optimal Layout Design of Satellite Equipment)

  • 염승용;김홍래;장영근
    • 한국항공우주학회지
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    • 제43권10호
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    • pp.875-887
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    • 2015
  • 최적 배치 설계는 다양한 산업분야에서 활용되고 있다. 우주분야인 위성 플랫폼에서도 제한된 공간 내에서 기계적, 열적, 전기적 인터페이스를 고려한 구성품 배치가 가능하도록 최적 배치 설계가 요구된다. 최적 배치 설계를 통해 합리적인 수준에서 최소화된 위성 플랫폼의 관성모멘트는 위성의 효율적인 자세제어 및 신속한 기동을 가능하게 하며, 위성의 임무성능을 향상시키는데 도움을 준다. 이를 위해 본 논문에서는 육면체 구조의 위성 플랫폼을 기반으로 내부 구성품들이 서로 간섭이 없는 상태에서 위성의 관성모멘트와 구성품 간 발열로 인한 영향을 최소로 하는 3D 최적 배치 설계를 제안한다. 본 연구에서는 3D 최적 배치 설계를 위해 새로운 유전 알고리즘을 제안한다.

Kinematic GPS Positioning with Baseline Length Constraint Using the Maximum Possibility Estimation Method

  • Wang, Xinzhou;Xu, Chengquan
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2006년도 International Symposium on GPS/GNSS Vol.2
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    • pp.247-250
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    • 2006
  • Based on the possibility theory and the fuzzy set, the Maximum Possibility Estimation method and its applications in kinematic GPS positioning are presented in this paper. Firstly, the principle and the optimal criterion of the Maximum Possibility Estimation method are explained. Secondly, the kinematic GPS positioning model of single epoch single frequency with baseline length constraint is developed. Then, the authors introduce the artificial immune algorithm and use this algorithm to search the global optimum of the Maximum Possibility Estimation model. The results of some examples show that the method is efficient for kinematic GPS positioning.

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슬로싱 고유주기 해석 및 발사체의 슬로싱 효과 제어 (Analysis of Natural Periods of Sloshing and Control of Sloshing Effect for a Launch Vehicle)

  • 김동현;최재원
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2000년도 제15차 학술회의논문집
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    • pp.201-201
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    • 2000
  • Recently in the design of fuel tanks(launch vehicle, ship, automobile) which transport a large amount of liquid in the cargo holds, the structural damage due to liquid-sloshing becomes an important problem. The impact pressure from sloshing is most violent when the liquid motion of a partially filled tank is in resonance with the motion of a system. In this paper, the sloshing natural periods in liquid tanks are estimated for partially filled tanks with various geometries. In addition to, controlled for a launch vehicle with liquid sloshing effect by PD controller and sloshing filter The PD gain and sloshing filter parameter arc determined by optimal algorithm.

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고기동 인공위성의 해석적 자세명령생성 기법 연구 (Analytical Solution for Attitude Command Generation of Agile Spacecraft)

  • 목성훈;방효충;김희섭
    • 한국항공우주학회지
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    • 제46권8호
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    • pp.639-651
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    • 2018
  • 본 논문은 인공위성의 자세명령을 해석적으로 생성하는 기법을 제안한다. 실제 위성에서는 1) 구동기 성능, 2) 위성체 유연구조, 3) 원격명령 데이터크기 등과 같은 제한조건들이 존재하고, 이로 인해 해석적인 자세명령 해를 구하기 어렵다. 따라서 본 논문에서는 고유축 회전, 프로파일 형상화를 통해 문제를 단순화하는 방법을 제안하고, 최종적으로 해석적 해를 유도하였다. 생성된 자세명령은 온-보드 자세제어기의 피드포워드 입력 형태로 사용되어 위성의 기동성을 높일 수 있다. 각속도 경계조건에 따라 rest-to-rest 기동과 spin-to-spin 기동으로 나누어 자세명령 해를 유도하였다. 시뮬레이션 예제를 통해 제안된 자세명령생성 기법이 구동기 제한조건을 지키면서 초기/최종 시간에서의 경계조건도 잘 만족하는 것을 확인하였다. 제안된 해석 해는 자세명령을 비교적 적은 수의 파라미터로 구현할 수 있어 원격명령 데이터크기 측면에서 경쟁력이 있다. 또한, 해석 해로 반복계산이 필요없어 온-보드 자세명령생성 자동화에도 기여할 수 있을 것으로 판단된다.

허리 관절을 갖는 4족 로봇의 GA 기반 경사면 보행방법 (GA Based Locomotion Method for Quadruped Robot with Waist Joint to Walk on the Slop)

  • 최윤호;김동섭;김국화
    • 한국전자통신학회논문지
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    • 제8권11호
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    • pp.1665-1674
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    • 2013
  • 본 논문에서는 허리 관절을 갖는 4족 로봇의 효율적인 경사면 보행을 위해 유전 알고리듬(Genetic Algorithm: GA)을 이용한 경사면 보행 방법을 제안한다. 제안한 방법에서는 먼저, 허리 관절을 갖는 4족 로봇의 기구학적 모델을 유도하며, GA를 수행하기 위한 유전자 및 적합도 함수를 설정한다. 또한, 경사면에서 최적의 에너지 안정여유도(Energy Stability Margin: ESM)를 갖는 4족 로봇의 자세와 도달 영역 내의 발끝 착지 지점을 GA를 이용하여 자동으로 탐색하여 보행한다. 마지막으로, 4족 보행 로봇의 모의 실험을 통해 기존 방법과 비교함으로써 본 논문에서 제안한 방법의 효용성을 검증한다.

3축 자기장 센서 및 관성센서를 이용한 차량 방위각 추정 방법 (Vehicle Orientation Estimation by Using Magnetometer and Inertial Sensors)

  • 황윤진;최세범
    • 한국자동차공학회논문집
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    • 제24권4호
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    • pp.408-415
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    • 2016
  • The vehicle attitude and sideslip is critical information to control the vehicle to prevent from unintended motion. Many of estimation strategy use bicycle model or IMU integration, but both of them have limits on application. The main purpose of this paper is development of vehicle orientation estimator which is robust to various vehicle state and road shape. The suggested estimator use 3-axis magnetometer, yaw rate sensor and lateral acceleration sensor to estimate three Euler angles of vehicle. The estimator is composed of two individual observers: First, comparing the known magnetic field and gravity with measured value, the TRIAD algorithm calculates optimal rotational matrix when vehicle is in static or quasi-static condition. Next, merging 3-axis magnetometer with inertial sensors, the extended Kalman filter is used to estimate vehicle orientation under dynamic condition. A validation through simulation tools, Carsim and Simulink, is performed and the results show the feasibility of the suggested estimation method.