• 제목/요약/키워드: kinematical analysis

검색결과 136건 처리시간 0.023초

평행봉 Belle 기술동작의 운동학적 분석 (A Kinematical Analysis of Belle Motion on Parallel Bars)

  • 공태웅
    • 한국운동역학회지
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    • 제15권4호
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    • pp.43-53
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    • 2005
  • This study is to define how the difference of athletic change influence on the last regrasp after somersault in Belle movement of parallel bars. For his study, the following conclusion was produced by analysis of athletic change by means of three dimensional visual image in three athlete of nation. 1. As the picture of S1, there are total used time(2.01 sec), S3(2.17 sec) and S2(2.19 sec). In case of a short needed time, it is difficult for them to perform the remaining movement of the vertical elevating flight easily and comfortably, it is judged as performing the small movement with restrict swing. 2 In the change of body center sped by each event, it is calculated as $-89.1^{\circ}$ the narrowest in S1, $-81.96^{\circ}$ the widest and then $86.34^{\circ}$ in S3. In E3 event, average compound speed is 4.07m/s, S2 showed the fastest speed of 4.14m/s whereas S1 the narrowest angle of 3.95m/s. 3. A shoulder joint and coxa are the period of mention in E3. In E4 which was pointed out the longest vertical distance, S2 that is indicated the highest vertical height as the period of detach in parallel bars. showed -3.91m. This is regarded as a preparatory movement for dynamic performance after using effectively elastic movement of shoulder joint and coxa while easily going up with turning back movement. In the 5th phrase, long airborne time and vertical change position is showed as the start while regrasping securely air flight movement from high position. 4. In E5, a long flight time and a long vertical displacement were shown as the regrasp after somersault efficiently in high position with stability from the point of the highest peak of the center of the body. Especially, S2 is marked as a little bit long position, while S1 is reversely indicated as performing somersault and unstable motion in a low position. 5. In E3, at the point of the largest extension of the shoulder joint and hip joint the shoulder joint is largely marked in $182^{\circ}$ and the hip point $182^{\circ}$ in S2. The shoulder joint is marked at the smallest angle in $177^{\circ}$ and the hip point $176^{\circ}$ in S1. And S1 is being judged by its performance of the less self - confident motion with lessening a breath of swing. S2 makes the most use of flexion and extension of the shoulder joint and the hip joint effectively. It was performed greatly with swinging and dropping the rotary movement and the rotary inertia naturally. 6. In E6, as the point of regrasp of the upper arm in parallel bars it is recognized by the that of components of vertical and horizontal velocity stably. During this study, the insufficient thing and the study on the parallel bars at a real game later are more activated than now. If it is really used as the basic materials by means of Belle Picked Study of Super E level after Bell movement, you may perceive the technique movement previously and perform without difficulty. Especially, such technique as crucifix is quite advantageous for oriental people thanks to small body shape condition. In conclusion we will nicely prepare for our suitable environment to gradually lessen trials and errors by analyzing and studying kinematically this movement.

유도전방낙법의 운동학적 특성 분석[I] (A Kinematical Analysis of Mae-ukemi (forward breakfall) in Judo)

  • 김의환;김지태
    • 한국운동역학회지
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    • 제12권2호
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    • pp.131-142
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    • 2002
  • 본 연구의 목적은 유도 경력이 2년(2~3단) 이상인 유단자 5명을 대상으로 전방낙법 동작시 3차원 영상 분석법을 이용하여 운동학적 변인의 특성을 규명하는데 그 목적이 있다. 운동학적 변인은 시간 거리 변인들이었으며, 각 변인별 평균치와 표준편차를 구하여 유도 전방낙법 동작의 운동학적 변인을 분석한 결과 다음과 같은 결론을 얻었다. 전방낙법 동작시 손목각은 낙법직전자세에서 낙법자세까지는 신전되었고, 낙법자세에서 낙법직후자세까지는 굴곡되는 패턴을 보였으며 손목의 좌 우각은 변위차이를 보였다. 팔꿈치각은 준비자세에서 낙법직후자세까지 굴곡되는 패턴이었고, 발목각은 준비자세에서 반동자세까지는 굴곡되었으며 점핑자세에서 변환자세까지 신전, 낙법직전자세와 낙법직후자세에서는 굴곡 패턴이었다. 매트와 어깨와의 거리(높이)는 낙법직전자세에서 32.2cm, 낙법자세에서는 18.3cm, 낙법직후자세에서는 20.5cm 이었다. 매트와 엉덩이와의 거리(높이)는 낙법직전자세에서 48.0cm, 낙법자세에서는 23.4cm, 낙법직후자세에서 30.6cm이었다.

도마종목 Kasamatsu계의 Akopian 기술동작 분석 (Kinematic Analysis of Acopian in Vault)

  • 이순호;박종훈;이종훈
    • 한국운동역학회지
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    • 제16권1호
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    • pp.89-99
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    • 2006
  • The study were to assess technical factors between the high score group and the low score group, from the subjects of 16 male national gymnasts, and to analyze the kinematical characteristic and main technical cause on technique of Akopian's 3D motion analysis of the male vaulting game in 2001 classification championship. The result of this study is this. There were not so much difference between the two groups in term; of the time of board contact, pre-flight, and total performance, but it takes shorter time when the players who are in the high point group take down the board, and they take long time for post-flight(p<.01). The high point group has a longer perpendicular distance in the moment of horse taking off, 0.05m on the average, than the low point group. The high point group shows 0.16m higher on the average than the other group in term; of the height of post-flight(p<.01). In the phase of board contact, the range of horizontal velocity at board take on were $7.66m/s{\sim}7.33m/s$, but there weren't significantly statistic differences between two groups. The hight score group were 0.68m/s faster than the low point group at the horizontal velocity at board take off event(<.05). About the average horizontal velocity of deceleration, AG1(-1.95m/s) reduces the speed more than AG2(-1.57m/s)(p<.05). And the hight score group were 0.37m/s faster than the low point group at the vertical velocity at horse take off event(<.05). When board taking off, the projectile angle of com were $38.7{\sim}37.8degree$ on the average. the comparative groups show almost same results. When horse taking off, the HPVy of the high point group were 37.6 degree which were a little higher than the low point group. The angular velocities of the players who takes on the horse with a right hand and then takes off with a left hand in the high point group were 14.97rad/sec, 10.82rad/sec in the low point group. However, the angular velocity of the players who takes on the horse with a left hand and then takes off on a right hand with the high point group were 14.97rad/sec, 15.56rad/sec in the low point group.

우수 골퍼의 아이언 클럽 스윙동작에 대한 운동학적 분석 (Kinematical Analysis of Swing Motion with Golf Iron Clubs Used by Elite Golfers)

  • 김갑선
    • 한국운동역학회지
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    • 제18권2호
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    • pp.85-94
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    • 2008
  • 본 연구의 목적은 3명의 우수 골프선수를 대상으로 아이언 클럽(3, 6, 9번)의 스윙 동작을 3차원적으로 비교 분석하고, 이의 분석에 따른 요인들을 정량적으로 제시하여 선수 및 일반 골퍼들이 바람직한 아이언 스윙 동작을 배우는데 기초자료를 제공하는데 있다. 3차원 영상분석을 실시하여 다음과 같은 결론을 도출하였다. 1. 각 클럽별로 전체 스윙 시간에는 큰 차이를 보이지 않았으며, 각 국면별 시간도 거의 유사하게 나타났다. 2. 각 클럽별로 어드레스와 임팩트시 머리위치 변화는 차이가 없었다. 3. 클럽의 길이에 따른 차이를 제외하면 각 클럽별로 오른 무릎관절 각도변화는 유사하게 나타났다. 4. 각 클럽별로 고관절의 회전각도 변화는 약간의 차이가 나타났다. 5. 각 클럽별로 어드레스와 임팩트 동작시 어깨관절의 회전각도와 동일하게 만들어 주어 스윙의 정확도를 높이고, 탑스윙시 어깨회전 각도를 $90^{\circ}$이상 유지하여 스윙의 회전력을 높이는 것으로 나타났다. 6. 클럽이 짧을수록 상체전경 각도가 약간의 차이로 커지는 것으로 나타났으며 어드레스와 탑스윙, 임팩트 동작시상체전경 각도가 $30-36^{\circ}$의 형태를 유지하면서 스윙을 하였다.

산업용 로봇 Arm과 휴머노이드 로봇 액터를 연동한 로봇 공연 플랫폼 개발 (Development of Robot Performance Platform Interoperating with an Industrial Robot Arm and a Humanoid Robot Actor)

  • 조자양;김진영;이설희;이상원;김형태
    • 방송공학회논문지
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    • 제25권4호
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    • pp.487-496
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    • 2020
  • 차세대 로봇 공연 기술을 개발하기 위하여 산업용 로봇 arm에 휴머노이드형의 로봇 액터를 부착한 RAoRA (Robot Actor on Robot Arm) 구조를 제안하고, 시스템 연동 제어를 위한 소프트웨어를 탑재하여 로봇 공연 플랫폼을 구축하였다. 로봇 액터와 산업용 로봇 arm의 연동 모션을 위하여 역학적 분석을 수행하고 기계적 메커니즘을 설계 및 제작하였다. 로봇 액터의 동작을 위하여 3D 모델의 기구학적인 분석, spline 위치 보간, 모션 제어 알고리즘 및 제어 장치를 개발하였다. 비전문가도 직관적이고 안전한 공연 콘텐츠를 제작할 수 있도록 사전 시각화, 시뮬레이션 도구 및 콘솔 통합 운영 도구를 개발하였다. 테스트를 위하여 지면에 거의 밀착하여 자연스럽게 걷거나 서서히 공중으로 올라가는 air walk 시연하였고 러닝 타임 5분의 공연에 적용하였다. 그 결과 제안된 로봇 공연 플랫폼은 기존의 로봇 공연에서는 구현이 불가능했던 입체적이고 생동감 있는 모션을 구현할 수 있었다.

도마종목의 Kasamatsu 기술동작 분석 (The Kinematic Analysis of Kasamatus in Vault)

  • 이순호;백진호;김용선;공태웅
    • 한국운동역학회지
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    • 제15권4호
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    • pp.1-11
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    • 2005
  • The study were to assess technical factors between the high score group and the low score group, from the subjects of 8 male national gymnasts, and to analyze the kinematical characteristic and main technical cause on technique of Kasamatsu movement on Vault. The result of this study is this. In case of horse contact time the high score group was swifter than low score group, and there was significant difference between the high score group and the low score group(<.01). On high score group the time of taking on from horse showed shorter than that of taking off from horse, while of the low score group the time of taking on the horse was similar to that of taking off from horse on the average. And in time of pre-flight the high score group on average the was 0.16sec shorter times than the low score group, and so there was significantly difference between groups(<.05). Also It is a characteristic that the high score group was short in horse contact time and longer in post-flight. In the horizontal distance of post-flight, the high score group was 0.11m longer than the low score group and there was significantly statistic difference between groups(<.05). In the vertical height of the cog in Post-flight's phrase, the high score group was 0.15m higher than the low score group and there was significantly statistic difference between groups(.<01). The horizontal velocity and vertical velocity in the event of taking on and off Beat board and Vault weren't significantly statistic differences between two groups. In the slow-down of average horizontal velocity during keeping contact with the beat board, the high score group was larger than the low score group. And in an increased average vertical velocity during keeping contact with the beat board, the high score group was even larger than the low score group. In the projectile angle of cog in taking off the beat board, 40.2deg., the angle of low score group and 39.5deg., the angle of high score group are nearly alike. In the projectile angle of cog in taking off the beat, the high score group showed 1.6Wt larger on average than the low score group. However the average reaction force on the board and Vault wasn't almost different between two groups, showed 0.3~0.6Wt larger in the high score group.

골프 클럽의 길이 변화에 따른 준비 자세의 변화 (Changes of Setup Variables by the Change of Golf Club Length)

  • 성낙준
    • 한국운동역학회지
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    • 제15권3호
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    • pp.95-104
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    • 2005
  • To know the proper setup posture for the various clubs, changes of setup variables according to the change of golf club length was investigated. Swing motions of three male low handicappers including a professional were taken using two high-speed videocameras. Four clubs iron 7, iron 5, iron 3 and driver (wood 1) were selected for this experiment. Three dimensional motion analysis techniques were used to get the kinematical variables. Mathcad and Kwon3D motion analysis program were used to analyze the position, distance and angle data in three dimensions. The variables divided into three categories 1) position and width of anterior-posterior direction 2) position and width of lateral direction 3) angles and evaluated based on the theories of many good golf teachers. Major findings of this study were as follows. 1.The stance (distance between ankle joints) was increased as the length of the club increased but the increasing width was not large. It ranges from 5cm to 10cm and professional player showed small changes. 2. Forward lean angle of trunk was decreased (more erected) as the length of the club increased. It ranges from 30 degrees for iron7 to 25 degrees for driver. 3. Angle between horizontal and right shoulder were increased as the length of the club increased. It ranges from 10 degrees to 20 degrees and professional player showed small changes. 4. Anterior-posterior position of the shoulders were located in front of the foot for all clubs and the difference between the shoulder and knee position was decreased as the length of the club increased. 5. Anterior-posterior position of grip (hand) was located almost beneath the shoulders (2.5cm front) for iron7, but it increased to 10cm for the driver. This grip adjustment makes the height of the posture increased only 5cm from iron7 to driver. 6. Lateral position of grip located at 5cm left for the face of iron7, but it located at the right side (behind) for the face of driver. 7. Lateral position of the ball located at the 40%(15cm) of stance from left ankle for iron7 and located at the 10% (5cm) of stance for driver. 8. Head always located at the right side of the stance and the midpoint of the eyes located at the 37% of stance from the right ankle for all clubs. This means that the axis of swing always maintained consistently for all clubs. 9. Left foot opened to the target for all subject and clubs. The maximum open angle was 25 degrees. Overall result shows that the changes of the setup variables vary only small ranges from iron7 to driver. Paradoxically it could be concluded that the failure of swing result from the excessive changes of setup not from the incorrect changes. These findings will be useful for evaluating the setup motion of golf swing and helpful to most golfers.

도마운동 Li Xiaopeng 동작의 운동학적 분석 (The Kinematical Analysis of Li Xiaopeng Motion in Horse Vaulting)

  • 박종훈;윤상문
    • 한국운동역학회지
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    • 제13권3호
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    • pp.81-98
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    • 2003
  • The purpose of this study is to closely examine kinematic characteristics by jump phase of Li Xiaopeng motion in horse vaulting and provide the training data. In doing so, as a result of analyzing kinematic variables through 3-dimensional cinematographic using the high-speed video camera to Li Xiaopeng motion first performed at the men's vault competition at the 14th Busan Asian Games, the following conclusion was obtained. 1. It was indicated that at the post-flight, the increase of flight time and height and twisting rotational velocity has a decisive effect on the increase of twist displacement. And Li Xiaopeng motion showed longer flight time and higher flight height than Ropez motion with the same twist displacement of entire movement. Also the rotational displacement of the trunk at peak of COG was much short of $360^{\circ}$(one rotation) but twist displacement showed $606^{\circ}$. Likewise, Li Xiaopeng motion was indicated to concentrate on twist movement in the early flight. 2. It was indicated that at the landing, Li Xiaopeng motion gets the hip to move back, the trunk to stand up and the horizontal velocity of COG to slow down. This is thought to be the performance of sufficient landing, resulting from large security of rotational displacement of airborne and twist displacement. 3. It was indicated that at the board contact, Li Xiaopeng motion made a rapid rotation uprighting the trunk to recover slowing velocity caused by jumping with the horse in the back, and has already twisted the trunk nearly close to $40^{\circ}$ at board contact. Under the premise that elasticity is generated without the change of the feet contacting the board, it will give an aid to the rotation and twist of pre-flight. Thus, in the round-oH phase, the tap of waist according to the fraction and extension of hip joint and arm push is thought to be very important. 4. It was indicated that at the pre-flight, Li Xiaopeng motion showed bigger movement than the techniques of precedented studies rushing to the horse, and overcomes the concern of relatively low power of jump through the rapid rotation of the trunk. Li Xiaopeng motion secured much twist distance, increased rotational distance with the trunk bent forward, resulting in the effect of rushing to the horse. 5. At horse contact, Li Xiaopeng motion makes a short-time contact, and maintains horse take-off angle close to vertical, contributing to the increase of post-flight time and height. This is thought to be resulted from rapid move toward movement direction along with the rotational velocity of trunk rapidly earned prior to horse contact, and little shave of rotation axis according to twist motion because of effective twist in the same direction.

도마 Lopez 동작의 운동학적 분석: YHS 선수의 성공과 실패 사례 비교 (Kinematical Analysis of Lopez Motion in Horse Vault: Comparison between Successful and Failed Trials)

  • 박철희
    • 한국산학기술학회논문지
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    • 제21권2호
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    • pp.167-174
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    • 2020
  • 본 연구는 세계적인 선수를 대상으로 남자 기계체조 도마 종목에서 로페즈 기술을 수행했을 때 성공 동작과 실패 동작에 따라 운동학적 차이를 비교 분석하였다. 연구대상은 올림픽 금메달리스트 YHS 선수(나이: 27세, 신장: 160cm, 체중: 53kg중)이였고, 14대의 적외선 고속카메라를 이용하여 도마 동작을 촬영하였다. 원하는 동작 자료획득과 분석을 위해 19mm 반사 마커 26개를 해부학적 주요지점에 부착시켰고, 15개 분절 신체모델을 사용하여 운동학적 변인 계산을 실시하였다. 분석 결과 첫째, 구름판 접촉구간에서 성공 동작의 소요시간이 실패 동작보다 길었으며, 성공 동작은 슬관절의 가동범위를 실패 동작보다 크게 하였다. 둘째, 제1비약에서 성공 동작과 실패 동작의 소요시간은 동일하였다. 성공 동작은 실패 동작보다 짧은 수평이동을 했으며, 높은 수직위치와 도마 착지각을 보였다. 셋째, 도마 접촉구간에서 성공 동작의 소요시간이 실패 동작보다 짧았다. 성공 동작은 도마접촉 순간에 실패 동작보다 좌측 견관절각을 크게 하였다. 넷째, 제2비약에서는 성공 동작의 소요시간이 실패 동작보다 길었으며, 긴 수평이동을 나타냈다. 성공 동작은 도마이륙 순간 우측 견관절각을 크게 하였고, 비틀기 각속도는 빨랐다. 종합하면 YHS 선수가 안정적인 로페즈 기술을 구사하기 위해서는 도마접촉 순간에 높은 자세로 진입하여 도마이륙 순간에서는 우측 견관절각을 크게하여 빠른 비틀기 각속도를 만들어야 한다. 최대높이와 착지 순간에서는 좌·우견관절각을 작게하여 관성모멘트를 줄이고 신체중심을 낮춰야 할 필요가 있다.

HII 영역 S152에 접해 있는 거대 분자운의 속도 구조 분석 (A VELOCITY STRUCTURE ANALYSIS OF GIANT MOLECULAR CLOUD ASSOCIATED WITH HII REGION S152)

  • 최우열;민영철;이영웅;박명구
    • Journal of Astronomy and Space Sciences
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    • 제22권2호
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    • pp.125-138
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    • 2005
  • S152 분자운은 S152 분자운 복합체의 중심부에 있으며 페르세우스 나선 팔에 위치하고 있는 작고 밝은 발광 성운이다. 이 분자운까지의 광학적 거리는 3.5kpc이며 지름은 약 1.5pc으로 알려져 있다 . S152 분자운 좌측에는 초신성 잔해로 알려진 SNR G109.1-1.0이 위치하며, S152 분자운 복합체 전체 구조는 전갈 형태를 띠고 있는데, SNR G109.1-1.0과 S152 분자운이 접하는 부분은 특이한 반구 형태를 띠고 있어 많은 연구가 진행되어 왔다. 본 연구에서 FCRAO $^{12}CO(J=\;1{\to}0)$우리 은하 탐사 자료를 이용해 S152 분자운 복합체의 전체 속도 구조를 분석한 결과, 세 개의 다른 속도 성분 값 -54.5, -50.4, -48.8km $s^{-1}$ 에서 구조적인 차이를 보였다. S152 분자운 복합체의 속도 기울기는 0.21km $s^{-1}pc^{-1}$과 0.16km $s^{-1}pc^{-1}$인데 두 개의 속도 기울기 방향이 다르게 분석되었다. 이것은 S152 분자운 주변 영역이 SNR G109.1-1.0 과 상호 작용을 일으킨 후 다른 가스 운들이 병합되면서 서로 다른 진화 과정을 거친 결과로 생각된다.