• 제목/요약/키워드: Reaction wheel

검색결과 148건 처리시간 0.023초

타코펄스 불균일성 보정이 포함된 펄스간 시간 측정방법 (Elapsed-time Method With Tacho Pulse Non-uniformity Correction)

  • 손준원
    • 한국항공우주학회지
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    • 제50권4호
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    • pp.269-275
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    • 2022
  • 펄스간 시간측정방법은 이상적인 조건에서는 정확한 반작용휠 속도를 측정할 수 있지만, 실제로는 타코펄스 불균일성 때문에 측정속도 오차가 존재한다. 본 연구에서는 불균일성을 극복하는 방법을 살펴본다. 우선 휠을 특정한 속도로 회전시켜서 타코펄스 불균일성을 측정하는 방법을 소개한다. 이렇게 획득된 불균일성 정보를 이용하여 실시간으로 측정오차를 보정하는 방법을 제안한다. 해당 방법은 펄스간 시간 측정방법의 카운트와 사전 측정된 불균일 정보로부터 속도 후보군을 계산하고, 이중에서 실제속도와 가장 가까운 값을 선택한다. 시뮬레이션을 통해서 제안된 방법이 타코펄스 불균일성을 극복하고 정확한 속도를 측정하며 빠른 휠속도 제어도 가능함을 보인다.

회전관성 효과를 고려한 차륜의 동특성 (Dynamic characteristics of train wheel with considering the effects of rotatory inertia)

  • 김광식;박문태
    • 오토저널
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    • 제9권1호
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    • pp.49-56
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    • 1987
  • This study is a part f the research on the coupled vibration of train wheel with stepped thickness and rail. The research was conducted for the purpose of examining the dynamic characteristics of train wheel which considered the effect of rotatory inertia and preventing the vibrations of the high speed railway. The In-plane compressive stresses were computed by the rotation of train wheel and the reaction depending on the condition of rolling. The equation of transverse vibration of the train wheel was obtained by Lagrange's equation. As a result of study, it is known that the effect of rotatory inertia and the increment of thickness ratio, h over bar decrease frequency but the increment of radius ratio, r over bar increase frequency.

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능동 합성개구레이더위성의 다섯 개 반작용휠 운용방법 (Five Reaction Wheel Operation Method for Active SAR Satellite)

  • 손준원;박영웅
    • 한국항공우주학회지
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    • 제44권9호
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    • pp.806-813
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    • 2016
  • 위성의 자세제어 및 기동을 위해서는 네 개의 반작용휠을 피라미드 형태로 배치하여 사용하는 것이 일반적이다. 하지만 위성의 관성모멘트가 크거나 사용할 수 있는 반작용휠의 용량이 작은 경우에는 다섯 개의 반작용휠을 사용하는 것을 생각해볼 수 있다. 이 경우, 반작용휠 배치부터 운용방법까지 여러 가지 문제를 다시 고려해야 한다. 능동합성개구레이더 위성은 관측 각도 변화를 위해서 롤축 방향으로 빠른 기동이 요구된다. 본 논문에서는 합성개구레이더 위성의 롤축 방향 기동성능 향상을 위하여 다섯 개의 반작용휠을 배치하는 경우, 이를 운용하는 방법을 연구해본다.

휠베어링 고무 실의 접촉력에 관한 연구 (A study on Contact force of Rubber Seal for wheel bearing)

  • 최노진;허영민;이광오;강성수
    • 한국정밀공학회지
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    • 제23권1호
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    • pp.145-151
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    • 2006
  • Wheel bearing unit has been exclusively applied to car wheel supporting device. The seal for wheel bearing is required to have both high sealing effects and low reaction forces because wheel bearing are operated on adverse environmental conditions such as mud and splash water. High sealing effects are for the protection of bearing ball wear from dust influx. In order to ensure high sealing effects, it is a easiest way to increase contact force which are affected by geometric characteristics, material properties and interferences between seal and inner bearing but induces higher wear phenomena. Interferences in all variables are most important factor to determine the performance of wheel bearing. In this study, optimization of interference amount was performed with finite element analysis with commercial code ABAQUS. For the sake of finite element analysis, tensile tests of rubber material were conducted and governing equation of nonlinear behavior was achieved. Hock-up bearing was manufactured with optimized interference amount. Results of torque and mud spray tests using this bearing unit are performed. Less torque and moisture influx of bearing with optimized interference amount is evidence to validity of this study.

車輪과 鐵路의 連成振動에 관한 硏究 (A Stusy on the Coupled Vibration of Train Wheel and Pail - Dynamic Characteristics of Train Wheel with the Stepped Thickness -)

  • 김광식;박민태
    • 대한기계학회논문집
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    • 제11권1호
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    • pp.63-73
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    • 1987
  • 본 논문에서는 차륜을 등방성, 균질 재료라고 가정하였으며 웨브와 림의 두께 가 서로 다른 환형원판으로써 내원주는 고정되고 외원주는 자유라고 가정하였다. 외 원주상의 한 점에서 철로와의 구름조건에 따라 변하는 반경방향의 반력에 의한 내평면 압축응력과 원판의 회전에 의한 내평면 압축응력을 고려하고, 두께가 변하는 웨브와 림의 경계면에서의 연속조건을 이용하여 차륜의 횡진동방정식을 세워서 Rayleigh-Ritz 방법으로 수치해석을 하여 고유진동수와 임계좌굴하중을 계산하고, 실제 차륜의 1/6크 기로 형상화하여 제작한 연성진동장치로 실험하여 이론치와 비교, 검토하였다.

공정 자동화를 위한 싱글 휠 드라이빙 모바일 로봇의 견실제어에 관한 연구 (A Study on Robust Control of Mobile Robot with Single wheel Driving Robot for Process Automation)

  • 신행봉;차보남
    • 한국산업융합학회 논문집
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    • 제19권2호
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    • pp.81-87
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    • 2016
  • This paper presents a new approach to control of stable motion of single wheel driving robot system of a pitch that is controlled by an in-wheel motor and a roll that is controlled by a reaction wheel. This robot doesn'thave any actuator for a yaw axis control, which makes the derivation of the dynamics relatively simple. The Lagrange equations was applied to derive the dynamic equations of the one wheel driving robot to implement the dynamic speed control of the mobile robot. To achieve the real time speed control of the unicycle robot, the sliding mode control and optical regulator are utilized to prove the reliability while maintaining the desired speed tracking performance. In the roll controller, the sigmoid-function based robust controller has been adopted to reduce the vibration by the situation function. The optimal controller has been implemented for the pitch control to drive the unicycle robot to follow the desired velocity trajectory in real time using the state variables of pitch angle, angular velocity, angle and angular velocity of the driving wheel. The control performance of the control systems from a single dynamic model has been illustrated by the real experiments.

과학기술위성 반작용휠의 미소진동 측정 및 분석 (STSAT RWA Micro-Vibration Test and Analysis)

  • 오시환;남명용;박연묵;임조령;금정훈;이승우
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2004년도 추계학술대회논문집
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    • pp.695-698
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    • 2004
  • STSAT RWA (Reaction Wheel Assembly) micro-vibration is measured using KISTLER dynamic plate that can provide the time signals of three orthogonal forces and torques simultaneously up to 400Hz. In the post-processing, measured data are evaluated with respect to the wheel spin rate in both time and frequency domains, and the static/dynamic unbalances are evaluated from the extracted first harmonic component. Also the friction torque profile at each wheel speed is estimated from the measured data. Several higher order harmonic components are observed, that comes from its rotor shape as well as the wheel bearing characteristics. One of the most peculiar characteristics of this wheel is that the dynamic properties of two radial unbalance components are much different from each other as the RWA mounting configuration on a spacecraft is different from conventional RWA mounting configuration. Rocking mode is not appeared below 400Hz for all operating speed because the wheel size is very small. The post-processed results will be used for jitter analysis of STSAT due to RWA micro-vibration.

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달 탐사선의 동역학 모델링 및 관성 모멘트 추정에 관한 연구 (A Study on Dynamic Modelling and Mass Properties Estimation of the Lunar Module)

  • 심상현;김광진;이상철;고상호;류동영;주광혁
    • 한국항공운항학회지
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    • 제18권4호
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    • pp.30-37
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    • 2010
  • This paper deals with attitude determination and parameter estimation problems for a lunar module. For this we first derive equations of motion for the lunar module by considering allocation locations (configurations) of reaction thruster and a reaction wheel assembly. The lunar module is assumed as a rigid body. In order to include the effect of fuel sloshing on the dynamics of the lunar module, we model it as a spherical pendulum for a simple analysis. For estimating angular rates and moment of inertia of the module, we employ an extended Kalman filter and the least mean square algorithms, respectively. Finally we construct a dynamical model for the lunar module by combining all these elements.

비 모델 외바퀴 로봇의 제어 (Control of a Unicycle Robot using a Non-model based Controller)

  • 안재원;김민규;이장명
    • 제어로봇시스템학회논문지
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    • 제20권5호
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    • pp.537-542
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    • 2014
  • This paper proposes a control system to keep the balance of a unicycle robot. The robot consists of the disk and wheel, for balancing and driving respectively, and the tile angle is measured and used for balancing by the IMU sensor. A PID controller is designed based on a non-model based algorithm to prove that it is possible to control the unicycle robot without any approximated linear system model such as the sliding mode control algorithm. The PID controller has the advantage that it is simple to design the controller and it does not require an unnecessary complex formula. In this paper, assuming that the pitch and roll axis are dynamically decoupled, each of the two controllers are designed separately. A reaction wheel pendulum method is used for the control of the roll axis, that is, for balancing and an inverted pendulum concept is used for the control of the pitch axis. To confirm the performance of the proposed controllers using MATLAB Simulink, the dynamic equations of the robot are derived.