• 제목/요약/키워드: Attitude Control System

검색결과 708건 처리시간 0.039초

Sliding Mode Control for Attitude Tracking of Thruster-Controlled Spacecraft

  • Cheon, Yee-Jin
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2000년도 제15차 학술회의논문집
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    • pp.461-461
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    • 2000
  • Nonlinear pulse width modulation(PWM) controlled system is considered to achieve control performance of thruster-controlled spacecraft. The actual PWM controlled motions occurs, very closely, around the average model rajectory. Furthermore nonlinear PWM controller design can be directly applied to thruster controlled spacecraft to determine thruster on-time. Sliding mode control for attitude tracking of three-axis thruster-controlled spacecraft is presented. Simulation results are shown which use modified Rodrigues parameters and sliding mode control law to achieve attitude tracking of a three-axis spacecraft with thrusters.

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Three-axis Attitude Control for Flexible Spacecraft by Lyapunov Approach under Gravity Potential

  • Bang, Hyo-Choong;Lee, Kwang-Hyun;Lim, Hyung-Chul
    • International Journal of Aeronautical and Space Sciences
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    • 제4권1호
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    • pp.99-109
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    • 2003
  • Attitude control law synthesis for the three-axis attitude maneuver of a flexible spacecraft model is presented in this study. The basic idea is motivated by previous works for the extension into a more general case. The new case includes gravitational gradient torque which has significant effect on a wide range of low earth orbit missions. As the first step, the fully nonlinear dynamic equations of motion are derived including gravitational gradient. The control law design based upon the Lyapunov approach is attempted. The Lyapunov function consists of a weighted combination of system kinetic and potential energy. Then, a set of stabilizing control law is derived from the basic Lyapunov stability theory. The new control law is therefore in a general form partially validating the previous work in some sense.

농업 로봇 용 다중 자세 모니터링 시스템 개발 (Development of Multi-Attitude Monitoring System for Agricultural Robots)

  • 권익현;김청월;김성득;이영태
    • 반도체디스플레이기술학회지
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    • 제17권3호
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    • pp.65-69
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    • 2018
  • In this paper, we have developed a multi-attitude monitoring system for running farm robots for field farming. There are many agricultural robots that can select work modules for various tasks. In order to control the stable attitude of agricultural robots connected to each other, we developed a system for monitoring the roll angle and pitch angle difference by fusing the information of the attitude monitoring system mounted on the robot mainframe and the work module. The developed attitude monitoring system showed resolution below 1 degree. In this paper, roll angle difference of 20 degrees and 60 degrees is measured with a multi - attitude monitoring system.

Attitude Maneuver Control of Flexible Spacecraft by Observer-based Tracking Control

  • Hyochoong Bang;Oh, Choong-Seok
    • Journal of Mechanical Science and Technology
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    • 제18권1호
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    • pp.122-131
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    • 2004
  • A constraint equation-based control law design for large angle attitude maneuvers of flexible spacecraft is addressed in this paper The tip displacement of the flexible spacecraft model is prescribed in the form of a constraint equation. The controller design is attempted in the way that the constraint equation is satisfied throughout the maneuver. The constraint equation leads to a two-point boundary value problem which needs backward and forward solution techniques to satisfy terminal constraints. An observer-based tracking control law takes the constraint equation as the input to the dynamic observer. The observer state is used in conjunction with the state feedback control law to have the actual system follow the observer dynamics. The observer-based tracking control law eventually turns into a stabilized system with inherent nature of robustness and disturbance rejection in LQR type control laws.

위성체 성능 시험 장치 개발에 관한 연구 (A study on the development of satellite dynamic simulator hardware)

  • 용상순;김영학;김진철
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1993년도 한국자동제어학술회의논문집(국내학술편); Seoul National University, Seoul; 20-22 Oct. 1993
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    • pp.788-792
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    • 1993
  • The objective of this study is to develope a satellite dynamic simulator, which can test and analyze the performance of spacecraft attitude control, antenna pointing instruments, communication equipments and spacecraft components under the space environment. The satellite simulator can be used to predict the events such as malfunction and failure of satellites in space during operation and can be used to protect against emergencies. At first, the performance test system of attitude control is investigated which can simulate motion and verify stability of spacecraft. Our system consists of an attitude control main processor and a sub-processor including some real hardwares such as attitude sensors and actuators. In this paper, we describe the procedure of designing and manufacturing the dynamic simulator hardware, which consists of the central processor board, the sub-processor board and the sun sensor, and also communication between the components.

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한국형 달탐사선 개발을 위한 탐사선의 자세제어 및 항법 기술에 관한 현황 연구 (A survey study on navigation and attitude control technology for the development of Korean lunar probe)

  • 권순규;김우성;고상호;이상철;류동영;주광혁
    • 항공우주시스템공학회지
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    • 제4권3호
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    • pp.6-16
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    • 2010
  • After the first successful Apollo program, many countries around the world launched their own programs for exploring the moon. This paper surveys various navigation and attitude control systems of several past lunar exploration programs for the purpose of preparing a program for the first Korean lunar probe. For this first we investigate successful programs by introducing the sensors and actuators used for these programs, particularly focusing on those of Clementine and SMART-1 of USA and EU, respectively. Then based on the study, we suggest the necessary components of navigation and attitude control systems suitable for our lunar probe program.

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쿼드로터 자세제어를 위한 슈퍼 트위스팅 알고리즘의 성능 분석 (Performance Analysis for Quadrotor Attitude Control by Super Twisting Algorithm)

  • 장석호;양유영;이현재
    • 한국항공우주학회지
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    • 제48권5호
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    • pp.373-381
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    • 2020
  • 쿼드로터는 대칭적인 구조로 모델링이 간단하지만 외란과 시스템의 불확실성에 민감하다는 단점이 있다. 쿼드로터의 제어를 위해 비교적 간단하게 적용이 가능한 PID 제어가 많이 연구되고 있지만, 비선형 시스템에서는 정밀한 제어가 힘들다는 단점이 있다. 본 논문에서는 이를 해결하기 위하여 외란과 시스템의 불확실성에 강인한 특징을 가지는 슈퍼 트위스팅 알고리즘(Super twisting algorithm)을 이용한 쿼드로터 제어를 제안한다. 이 제어기법을 이용하여 쿼드로터의 자세제어기를 구성하였다. 구성한 제어기의 성능을 검증하기 위해 시뮬레이션 및 실제 비행시험을 진행하였다. 제어기의 보다 객관적인 성능 검증을 위해 PID 제어와 성능 비교를 진행하였다.

Engineering Realization of Full Attitude System Based On GPS Carrier Phase and MEMS IMU

  • Tang, Kanghua;Wu, Meiping;Hu, Xiaoping
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2006년도 International Symposium on GPS/GNSS Vol.1
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    • pp.271-275
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    • 2006
  • This paper describes the design and realization of full attitude system based on MEMS IMU and GPS carrier phase. The work can be divided into two parts: First, initial heading is determined by using two GPS receivers. And this paper discusses the usage of space geometry conditions to reduce the range of ambiguity search. The method presented in this paper was tested on the static. On the static condition, an accuracy better than 0.06 degrees for heading for 3.48m long baseline has been achieved. Integration of GPS and low cost MEMS IMU are used to realize the real-time heading attitude system. Second, level attitude (pitch and roll) is determined using the method of frequency-velocity for the feedback control. At the same time, the method using the attitude based on MEMS IMU to help determination of the range of ambiguity search is proposed. The results done on the sea show that an alternative means to provide real-time, cost-effective, accurate and reliable attitude information for attitude surveys. Though motivated by a big ships application, the design can be applied to other vehicles.

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다족형 로봇의 자세 제어 시스템 설계 및 구현에 관한 연구 (A Study On Design & Implementation of An Attitude Control System of a Lot of Legs Robots)

  • 남상엽;홍성호;김석중
    • 전자공학회논문지 IE
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    • 제45권4호
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    • pp.11-18
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    • 2008
  • 본 연구는 다족 로봇용 자세제어장치(ACS - Attitude Control System)인 관성측정 시스템(IMU) 의 H/W 설계와 자세제어 알고리즘 S/W을 설계하여 다관절용 로봇의 IMU 통합시스템을 구현 후 이 시스템의 동작성능을 검증하기 위해 Mtx와 MTx와의 성능을 비교 검증을 하고자 한다. ACS는 자이로와 가속도계 그리고 지자기 센서를 이용하여 항체의 롤, 피치각 자세를 제어하는 시스템이다. 일반적인 저가형 MEMS 관성센서로는 오차가 심하게 발생하여 항체의 정확한 위치를 계산하기 힘들다. 본 연구에서는 ACS 개발하기 위하여 상용의 MEMS 가속도계 및 자이고 센서, 추가적으로 지자기 센서를 사용하여 관성측정 시스템(IMU)을 표현한다. 구현된 IMU 시스템에 자세계산 프로그램을 내장하여 일정 성능을 보장하는 롤, 피치, 요 자세각 알고리즘을 설계하여 시스템에 포팅한다. 본 연구에서는 자이로와 가속도계 출력을 혼합하여 롤, 피치각을 보상함으로써 지속적으로 일정 수준이상의 성능을 보장하는 ACS를 구현하기위해 목표 플랫폼에 적재하여 실시간으로 구동하여 포팅하고 검증하였다.

Attitude Stabilization of a Quad-Rotor UAV Using a Two-camera Vision System

  • Won, Dae-Yeon;Tahk, Min-Jea
    • International Journal of Aeronautical and Space Sciences
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    • 제9권1호
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    • pp.76-84
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    • 2008
  • This paper is mainly concerned with the vision-based attitude stabilization of a quad-rotor UAV. The methods for attitude control rely on computing the roll and pitch angles of the vehicle from a two-camera vision system. One camera is attached to the body-fixed x-axis and the other to the body-fixed y-axis. The attitude computation for the quad-rotor UAV is performed by image processing consisting of Canny edge and Hough line detection. A proportional and integral controller is employed for the attitude hold autopilot. In this paper, the quad-rotor UAV is modeled by 6-DOF nonlinear equations of motion that includes rotor aerodynamics with blade element theory. The performance of the proposed method is evaluated through 3D environmental numerical simulations.