• 제목/요약/키워드: Kinematic stability

검색결과 238건 처리시간 0.023초

네트워크 기반 키너매틱 위치결정을 위한 단일기선 GPS해의 최적 결합 (The Optimized Integration of Single-baseline GPS Solutions for Network-based Kinematic Positioning)

  • 최윤수;배태석;이종기;권재현
    • 한국측량학회지
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    • 제25권3호
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    • pp.207-213
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    • 2007
  • 다수의 고정수신기를 이용하여 이동수신기의 위치를 정확히 측정하고자 하는 필요성은 계속적으로 대두되고 있었으나, 현재 사용되고 있는 대부분의 상용 소프트웨어에서는 단일기선에 대한 GPS 결과만을 제공하고 있다. 따라서 본 논문에서는 다수의 단일기선 결과를 이용하여 네트워크를 구성함으로써 이동수신기의 위치측정 정확도를 향상시키기 위한 방안을 연구하였다. 이를 위해 기존의 측지 망 조정 이론을 도입하여 이동수신기의 위치결정 분야에 적용함으로써 위치정확도 향상 뿐만 아니라 전체적인 네트워크의 안정에도 기여할 수 있음을 알 수 있었다. 또한 측지망의 계수부족(Rank-deficiency)을 제거하기 위해서 하나의 고정수신기의 위치를 고정시키는 방법(RLESS), 이동수신기의 바이어스(Bias)를 최소화하는 방법(BLIMPBE), 그리고 고정수신기의 위치에 확률적 제약 조건을 주는 방법(SCLESS)에 대해서 비교 분석하였다. 네트워크 기반의 위치결정을 통해서 3차원 평균제곱근오차(RMSE)는 최대 3.5cm에서 2.1cm 수준으로 향상되었고, 기준점의 위치정확도에 따라 BLIMPBE 및 SCLESS 방법을 적절히 적용하는 것이 바람직할 것으로 판단된다.

지상라이다를 이용한 확률론적 해석기법 기반의 운동학적 안정성 해석 (Probabilistic Kinematic Analysis of Rock Slope Stability Using Terrestrial LiDAR)

  • 홍석권;박혁진
    • 자원환경지질
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    • 제52권3호
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    • pp.231-241
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    • 2019
  • 운동학적 분석은 암반사면 내에 존재하는 불연속면의 방향과 사면 방향 사이의 상관관계에 대한 분석을 통해 사면의 안정성을 파악하는 기법으로 본 연구에서는 지상라이다를 활용하여 암반사면으로부터 다수의 불연속면 자료를 획득하고 이를 활용하여 운동학적 분석을 수행하였다. 특히 본 연구에서는 지상라이다로부터 획득된 불연속면 방향성 자료의 확률특성을 파악하였으며 확률밀도함수인 Fisher 함수를 이용하여 방향자료를 생성하고 확률론적 분석을 수행하였다. 그리고 이러한 결과를 실제 현장으로부터 획득한 방향자료를 활용하여 분석을 수행한 확률론적 해석 결과와 비교해 보았다. 분석 결과 Fisher 함수로부터 생성된 자료를 활용한 확률론적 분석 결과와 현장자료를 활용한 확률론적 해석 결과는 값의 차이를 보이기는 하지만 유사한 결과를 도출하였다. 따라서 지상라이다 등과 같은 방법을 활용하여 충분한 방향성 자료가 제공되는 경우 확률밀도함수로부터의 방향자료 생성 없이 현장자료를 활용한 분석이 가능할 것으로 판단된다. 또한 본 연구에서는 확률론적 해석기법의 결과를 기존의 해석방식인 대표방향을 이용한 결정론적 해석기법과 비교해 보았다. 분석 결과 확률론적 해석 결과와 결정론적 해석 결과는 거의 유사하게 해석되었으며 이는 절리군내의 분산이 그리 크지 않아 확률론적 해석 결과와 결정론적 해석 결과가 유사한 것으로 판단된다.

로보트를 이용한 힘제어에서의 기하학적 안정성에 관한 해석 (Analysis of Geometric Stability in Robot Force Control)

  • 이병주
    • 대한기계학회논문집
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    • 제18권9호
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    • pp.2284-2296
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    • 1994
  • Force control of robotic mechanisms continues to be a challenging area. Previous implementation have seldom produced satisfactory results, and researchers in the past have experienced significant instability problems associated with their force controllers. In this study, a new stability factor in force control will be pointed out. When a manipulator is constrained to an environment(force-controlled), geometric instability due to the relationship between the manipulator configuration and the force-controlled direction is shown to be a significant factor in overall system stability. This exploratory study points out a rather intuitive, geometrically based stability factor in terms of an effective system stiffness and analyzes the phenomenon both analytically and graphically. Also, a stiffness control algorithm using the kinematic redundancy of a kinematically redundant manipulator is proposed to improve the overall stability in force control.

암반사태와 블록성 암반내 터널의 안정성 해석을 위한 개별요소법의 적용성 (Application of a Distinct Element Method in the Analyses of Rock Avalanche and Tunnel Stability in Blocky Rock Masses)

  • 문현구
    • 터널과지하공간
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    • 제2권2호
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    • pp.212-223
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    • 1992
  • The distinct element method(DEM) si well suited to the kinematic analysis of blocky rock masses. Two distinctive problems, a rock avalache and tunnel in jointed rock masses, are chosen to apply the DEM which is based on perfectly rigid behaviour of blocks. Investigated for both problems are the effects of the input parameters such as contact stiffnesses, friction coefficient and damping property. Using various types of models of the avalanche and tunne, an extensive parametric study is done to gain experiences in the method, and then to alleviate difficulties in determining parameter values suitable for a given problem. The coefficient of frictio has significant effects on all aspects of avalanche motion(travel distance, velocity and travel time), while the stiffnesses affect the rebounding and jumping motions after collision. The motion predicted by the models having single and mutiple blocks agrees well to the observations reported on the actual avalache. For the tunnel problem, the behaviour of the key block in an example tunnel is compared by testing values of the input parameters. The stability of the tunnel is dependent primarily on the friction coefficient, while the stiffness and damping properties influence the block velocity. The kinematic stability of a tunnel for underground unclear waste repository is analyzed using the joint geometry data(orientation, spacing and persistence) occurred in a tailrace tunnel. Allowing a small deviation to the mean orientation results in different modes of failure of the rock blocks around the tunnel. Of all parameters tested, the most important to the stability of the tunnel in blocky rock masses are the geometry of the blocks generated by mapping the joint and tunnel surfaces in 3-dimensions and also the friction coefficient of the joints particularly for the stability of the side walls.

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달리기 시 체간의 골반-척추구조변형이 동적안정성에 미치는 연구 (Kinematic Analysis of Dynamic Stability Toward the Pelvis-spine Distortion during Running)

  • 박규태;유경석
    • 한국운동역학회지
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    • 제23권4호
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    • pp.369-376
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    • 2013
  • The purposes of this study were to assess dynamic stability toward pelvis-spine column distortion during running and to compare the typical three-dimensional angular kinematics of the trunk motion; cervical, thoracic, lumbar segment spine and the pelvis from the multi-segmental spine model between exercise group and non-exercise group. Subjects were recruited as exercise healthy women on regular basis (group A, n=10) and non-exercise idiopathic scoliosis women (group B, n=10). Data was collected by using a vicon motion capture system (MX-T40, UK). The pelvis, spine segments column and lower limbs analysiaed through the 3D kinematic angular ROM pattern. There were significant differences in the time-space variables, the rotation motion of knee joint in lower limbs and the pelvis variables; obliquity in side bending, inter/outer rotation in twisting during running leg movement. There were significant differences in the spinal column that is lower-lumbar, upper-lumbar, upper-thoracic, mid-upper thoracic, mid-lower thoracic, lower thoracic and cervical spine at inclination, lateral bending and twist rotation between group A and group B (<.05, <.01 and <.001). As a results, group B had more restrictive motion than group A in the spinal column and leg movement behaved like a 'shock absorber". And the number of asymmetry index (AI) showed that group B was much lager unbalance than group A. In conclusion, non-exercise group was known to much more influence the dynamic stability of equilibrium for bilateral balance. These finding suggested that dynamic stability aimed at increasing balance of the trunk ROM must involve methods and strategies intended to reduce left/right asymmetry and the exercise injury.

Relationship between Center of Pressure and Local Stability of the Lower Joints during Walking in the Elderly Women

  • Ryu, Ji-Seon
    • 한국운동역학회지
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    • 제27권2호
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    • pp.133-140
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    • 2017
  • Objective: The purpose of this study was to determine the relationship between center of pressure (CoP) and local stability of the lower joints, which was calculated based on approximate entropy (ApEn) during walking in elderly women. Method: Eighteen elderly women were recruited (age: $66.4{\pm}1.2yrs$; mass: $55.4{\pm}8.3kg$; height: $1.56{\pm}0.04m$) for this study. Before collecting data, reflective marker triads composed of 3 non-collinear spheres were attached to the lateral surface of the thigh and shank near the mid-segment to measure motion of the thigh and shank segments. To measure foot motion, reflective markers were placed on the shoe at the heel, head of the fifth metatarsal, and lateral malleolus, and were also placed on the right anterior-superior iliac spine, left anterior-superior iliac spine, and sacrum to observe pelvic motion. During treadmill walking, kinematic data were recorded using 6 infrared cameras (Oqus 300, Qualisys, Sweden) with a 100 Hz sampling frequency and kinetic data were collected from a treadmill (Instrumented Treadmill, Bertec, USA) for 20 strides. From kinematic data, 3D angles of the lower extremity's joint were calculated using Cardan technique and then ApEn were computed for their angles to evaluate local stability. Range of CoP was determined from the kinetic data. Pearson product-moment and Spearman rank correlation coefficient were applied to find relationship between CoP and ApEn. The level of significance was determined at p<.05. Results: There was a negative linear correlation between CoP and ApEn of hip joint adduction-abduction motion (p<.05), but ApEn of other joint motion did not affect the CoP. Conclusion: It was conjectured that ApEn, local stability index, for adduction/abduction of the hip joint during walking could be useful as a fall predictor.

원전시설용 이동로보트의 계단승하강에 관한 연구 (The study on a mobile robot for going up and down stairs in nuclear facilities)

  • 김병수;김창회;황석용;김승호;이종민
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1990년도 한국자동제어학술회의논문집(국내학술편); KOEX, Seoul; 26-27 Oct. 1990
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    • pp.731-735
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    • 1990
  • The mobile robot, named as KAEROT, is designed to go up and down stairs in nuclear facilities. To get a proper stable motion, kinematic modeling and analysis are seriously considered and new climbing algorithm is proposed focused on the stability. A couple of small wheels of one planetary wheel have to contact the surface ol stairs all the time to give the guarantee for stability and safety. To confirm the validity of the proposed algorithm, simulation is carried out. The results make evident of feasibility for the algorithm.

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무베어링 헬리콥터 주 로터의 허브 파라미터 변화에 따른 로터 안정성 특성 해석 (Hub Parametric Investigation of Main Rotor Stability of Bearingless Helicopter)

  • 윤철용;기영중;김태주;김덕관;김승호
    • 한국소음진동공학회논문집
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    • 제22권8호
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    • pp.784-790
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    • 2012
  • This paper describes a stability and dynamic characteristics of bearingless helicopter main rotor in hover. Baseline rotor configuration is defined and modal analysis for the configuration is taken to verify the dynamic characteristics. The kinematic pitch-lag couplings through ways of pitch link installation are analyzed to know effects on loads, frequencies and stability. The effects of pitch link attachments in spanwise direction and chordwise direction as well as pitch link inclination on thrust, power, flpa-lag-pitch mode frequencies and inplane damping are examined. Pitch link at trailing edge location in chordwise direction has influence on aeroelastic stability of the rotor. Also, the pitch link with negative inclination angle makes inplane damping increase.

무베어링 헬리콥터 주 로터의 허브 파라미터 변화에 따른 로터 안정성 특성 해석 (Hub Parametric Investigation of Main Rotor Stability of Bearingless Helicopter)

  • 윤철용;기영중;김태주;김덕관;김승호
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2012년도 춘계학술대회 논문집
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    • pp.394-399
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    • 2012
  • This paper describes a stability and dynamic characteristics of bearingless helicopter main rotor in hover. Baseline rotor configuration is defined and modal analysis for the configuration is taken to verify the dynamic characteristics. The kinematic pitch-lag couplings through ways of pitch link installation are analyzed to know effects on loads, frequencies and stability. The effects of pitch link attachments in spanwise direction and chordwise direction as well as pitch link inclination on thrust, power, flpa-lag-pitch mode frequencies and inplane damping are examined. Pitch link at trailing edge location in chordwise direction has influence on aeroelastic stability of the rotor. Also, the pitch link with negative inclination angle makes inplane damping increase.

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