• 제목/요약/키워드: PRO-GOLFER

검색결과 10건 처리시간 0.028초

골프 스윙동작의 운동학적 분석 (A Kinematic analysis of Golf Swing Motion)

  • 신성휴;고석곤
    • 한국운동역학회지
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    • 제13권2호
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    • pp.101-114
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    • 2003
  • The purpose of this study was to examine the major kinematicak variance to Increase the club head velocity during the driver swing two PGA prp-golfers utilizing 3-dimensional Image analyzing linear velocity of the club-head during the impact quantiatively. To achive these purpose, two high speed camera in 120 field/s and one high-speed camera in 500 field/s were used in this study. The program made by Younghoo Kwon(1944) was used to analysis the digitalization of reference point, digitalization of joint venter, synchronization, calculation of 3-Dimensional coordinate by DLT method, and smoothing. Through this study, the conclusions are as follow. 1. During the drivel swing, in the percentile of the total time, two pro-golfer showed 0.925, 0.929 second from adress to top-swing, 0.236, 0.929 second from top-swing to impact. 2. During the driver swing, in the displacement of the center of the body, two pro-golfer showed 45.3, 45.23% from adress, 44.3, 44.24% front impact. 3. In the velocity variance, The maximum club-head velocity two pro-golfer showed 43.36, 43.24m/s respectively the down swing. The ball velocity showed 63.12, 63.06m/s. 4. In the rotational angle of the shoulder joint. two pro-golfer showed $-13.5,-13.53^{\circ}$, during the back swing respectively. Two subject adressed opening status og upper body. 5. In the rotational angle of the right knee angle showed $156.3,154.7^{\circ}$ from the adress.

골프 드라이버 스윙시 볼의 종류에 따른 비거리분석 (A Comparative Study of Flight Distance in Golf Swing, After the Driver Shot)

  • 류호영
    • 한국운동역학회지
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    • 제13권1호
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    • pp.63-72
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    • 2003
  • This study is examine and analysis of the most flying and run distance during swing three times with six balls between two amateurs and pro-golfers in golf field in Sungnam airport. During down swing, kinetics variances are velocity of club-head and balls, vertical angular velocity. this scientic data present amateur golfers with recognition of long flying distances for golf balls. Through this study, the conclusions are as follows. 1. Before impact the balls, The club-head velocity of amateur golfers and pro-golfers show 33.34 - 39.53m/s, 39.04 - 42.82m/s respectively during the down swing. But The club-head velocity, flight and Run distances comparative $K_1$ amateur golfer with the pro-golfer are similar. 2. After impact the balls, The balls velocity if amateur golfers show 53.04 - 61.57m/s, The pro-golfers show 62.32 - 63.4m/s respectively during the down swing. In case of $K_3$,$K_4$, After the impact balls velocity comparative The RA brand with other brand are similar, Flight and Run distance are difference. 3. After impact the balls, The balls velocity are difference to other brand but The long flight and Run distance arrange RA, BIG, TITL. 4. In the vertical flight angle of the ball after impact, amateur golfer showed 16.75 - $18.73^{\circ}$. The pro-golfer showed 15.03 - $16.04^{\circ}$. In the vertical flight angle of the balls ideal $12-13^{\circ}$, The long flight and Run distance approach In the vertical flight angle the balls $12-13^{\circ}$.

프로골퍼의 4m 퍼팅시 퍼터 헤드형태에 따른 운동학적 특성 (Kinematic Characteristics according to Types of Putter Head on Pro Golfer's 4 Meter Putts)

  • 이근혁;소재무
    • 한국운동역학회지
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    • 제23권4호
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    • pp.319-326
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    • 2013
  • The objective of this study is to help golfers to select adequate putters and to provide golfers basic scientific data for improving athletic performance by showing differences of kinematic variables according to the shape of putter head. In this research three right-handed male pro-golfer who are listed at KPGA were studied and three video camera (GR-HD1KR, JVC, Japan) were used and recording speed was 60 frame/sec during the research. In this study kinematic variables were calculated using Kwon3D XP program and analysed on the 4 events and 3 phases. This study showed the following results : (1) The swing of heel-toe putter showed longer time than that of face balanced putter, and there are statistical significant difference of kinematic variables of each objective (2) As of the trajectory of putter head, heel-toe putter showed more approximating curve trajectory than that of in-between, face balanced putter on the X-axis (3) heel-toe putter showed longer distance follow-through than that of other putters by statistically significant difference on the Y-axis (4) Heel-toe putter showed longer distance swing trajectory over the ground than that of other putters by statistically significant difference on the Z-axis.

Analysis of Lumbar Spine Load during Golf Swing in Pro. Golfer

  • Park, Sung-Kyu;Cho, Woong;An, Ho-Jung
    • 국제물리치료학회지
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    • 제1권2호
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    • pp.162-168
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    • 2010
  • Low back pain is a common phenomenon among the golfers. In an attempt to understand low back pain, the kinematic changes and golf swing motion analysis has been performed to focus on lumbar spine in pro. golfers. According to the swing pattern, significant variations of the lumbar joint forces and loads has related with muscles activities so the motion analysis of lumbar spine were discussed. The purpose of this study was to analyze motion of lumbar spine and it was to compare joint force during golf swing in pro. golfers. The swing motion of the subjects was tracked using a 3D motion analysis system by Motion Analysis Ltd. and SIMM software. The angle changes of lumbar spine rapidly in vx direction during the top back swing and the finish and in vy direction during the follow through and in vz direction during the down swing and the impact(Subject A). The angle changes of lumbar spine rapidly in vx direction during the top back swing and in vy direction during the down swing, the impact and the follow through and in vz direction during the down swing(Subject B). In conclusion, subject A and B both show sudden angle changes between 1st-3rd lumbar spine and 4th-5th lumbar spine during the stage from address to top back swing which caused by over upper body twisting.

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골프 드라이버 샤프트의 가변성이 타구속도, 헤드스피드 및 비거리에 미치는 영향 (Golf driver shaft variability on ball speed, head speed and fly distance)

  • 정철;박우영
    • 한국응용과학기술학회지
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    • 제35권1호
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    • pp.273-283
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    • 2018
  • 이 연구의 목적은 골프드라이버 샤프트의 가변성이 타구속도, 헤드스피드 및 비거리에 미치는 영향을 분석하고자 하였다. 이 연구에 참여한 피검자는 핸디캡이 0인 남자 프로골퍼 10명과 핸디캡이 18인 남자 아마추어 골퍼 10명으로 하였다. 클럽의 종류는 1번 드라이버로 한정하였고, 각기 다른 스팩의 24개 드라이버를 가지고 실시하였다. 종속변인으로는 타구속도, 비거리 및 헤드스피드로 하였다. 연구 결과 다음과 같은 결과를 얻었다. 첫째, CPM에 따라 유의한 차이가 나는 것으로 밝혀졌고, 사후검증 후 230< 이상일 때 타구속도, 비거리 및 헤드스피드에서 최적의 수행력을 보였다. 둘째, 샤프트길이에 따른 타구속도 및 비거리는 유의한 차이가 나는 것으로 나타났고, 사후검증 후 타구속도 및 헤드스피드는 46inch에서 비거리는 45inch에서 최적의 수행력을 보였다. 셋째, 샤프트 무게에 따른 변인 간 차이는 나지 않았고, 사후검증 후 샤프트 무게가 65g일 때 타구속도와 비거리에서 최적의 수행력을 보였고, 50g일 때 헤드스피드에서 최적을 보였다. 또한 프로와 아마추어 간에는 변인에서 유의한 차이가 나는 것으로 나타났다. 결론적으로 최적의 드라이버는 CPM이 230<, 샤프트길이 46inch, 샤프트 무게가 65g 샤프트 일 때 최고의 수행력을 발휘하는 것으로 판명되었다.

프로와 아마추어 골퍼의 골프스윙 동작시 족저압력 비교 분석 (Analysis of Plantar Foot Pressure During Golf Swing Motion of Pro & Amateur Golfer)

  • 이중숙;이동기
    • 한국운동역학회지
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    • 제15권2호
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    • pp.41-55
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    • 2005
  • In this study, weight carrying pattern analysis and comparison method of four foot region were suggested. We used three types of club(driver, iron7, pitching wedge). This analysis method can compare between top class golfer and beginner. And the comparison data can be used to correct the swing pose of trainee. If motion analysis system, which can measure the swing speed and instantaneous acceleration at the point of hitting a ball, is combined with this plantar foot force analysis method, new design development of golf shoes to increase comfort and ball flight distance will be available. 1. Regional change of force acting, in address, is evenly distributed on both feet. In back swing top, 76% on right foot, 75% on left foot as impact, and 86% on left foot as finish. As regional force acting, in address, pros get high marks on rare and inside of right foot and rare and outside for amateurs. In back swing top, it is higher as fore and inside of left foot, pros as rare part of right foot and amateurs as forefoot. In impact, it is higher for pros and amateurs in outside and rare part of left foot and fore and inside of right foot. In finish, for both pros and amateurs, it is higher for outside and rare parts of left foot. 2. For each club, forces are evenly distributed on both feet in address. In back swing top, the shorter a club is, the higher impact on right foot and the higher finish distribution on left foot. For all the clubs used, in each region, pros get higher on rare and inside of right foot and as amateurs on rare and outside of left foot in address. In back swing top, for all clubs, pros get higher on rare and outside of right foot as fore and outside for amateurs. In impact acting, for all clubs, rare and outside of left foot get higher. In finish, force concentrates on rarefoot. 3. On both feet force, right foot forces of amateurs is higher than those of pros in back swing top. In impact and finish, pros get higher on left foot.

골프 퍼팅 시 오류동작 교정을 위한 진단과 처방 (The Diagnosis and Prescription for Correcting Errors of Putting in Golf Skill : A Case Study)

  • 하종규
    • 한국운동역학회지
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    • 제16권2호
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    • pp.21-24
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    • 2006
  • The purpose of this paper is to diagnose the errors by comparing putting motion with the single pendulum pattern applicable to putting in golf skill and order prescription that correct errors of putting. In the modern-day game of golf, putting remains the key to shooting low scores, and the ability to hole putts can turn a good round into a great round A semi-golfer, subject(sex female, age 20yrs, mass 94.3kg, height 1.65m) who has troubles to do putting is chosen. Six cameras, ProReflex MCU240(240Hz) made by Qualisys company is used to capture putting motion and data is processed by QTM(Qualisys Track Manager) and Mathematica 5.0. The result that differentiates the putting and the single pendulum pattern is acquired To make the pattern of subject's putting to the single pendulum pattern quasi-equal, one tries to lower center of mass gradually. As a result of it, one has a similar pattern like the single pendulum Conclusively, to lower C.O.M one orders prescriptions that increase the weight and length of a putter and lower C.O.M subject's segment. Further improvements to the study could be to train a subject according to prescriptions and to monitor putting again. It will probably be necessary to simulate putting motions and to research relations for body shapes and putting patterns in order to establish suitable putting-motions.

프로골퍼의 드라이버 비거리증가를 위한 목적스윙 시 X-Factor, X-Factor Stretch, 클럽변인과 전체비거리(total length)와의 상관관계 (Analyze the Correlation between Variable Factors, Kinematic Factors(x-factor, x-factor stretch) and Club Impact Factors, Affecting the Total Length of the Ball During a Pro-Golfer's Driver Swing)

  • 박혜림;소재무;김재정
    • 한국운동역학회지
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    • 제25권1호
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    • pp.11-19
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    • 2015
  • Objective : The purpose of this study was to analyze the correlation between physical factors (X-factor, X-factor stretch) and club factors (club speed, ball speed, club path, smash factor, vertical launch angle, spin rate, flight time, total length) during impact and it affect on the total distance of the ball during a golf driver swing. Background : There were not enough studies that analyzed the correlation between physical factors(X-factor, X-factor stretch) and club factors(club speed, ball speed, club path, smash factor, launch angle, spin rate, flight time, total length) during a purpose swing to increase total distance. Method : For this study, 9 right handed professional male golfers (KPGA) were chosen. The test subject group used their own drivers and each took a total of 10 swings. These swings consisted of 5 purpose swings to increase total distance and 5 normal swings. Results : The purpose swing to increase total distance showed larger physical factors(X-factor, X-factor stretch) compared to a normal swing however the results were not statistically significant. Total distance increased during a purpose swing as a result of ball and club speed. Conclusion : The results showed that club factors, ball speed and club speed contributed the most in affecting the total distance of the ball during a purpose swing.

골프 동영상으로부터 추출된 스윙 정보를 활용한 3D 모델과 골프 동영상의 동기화 재생 (A Synchronized Playback Method of 3D Model and Video by Extracting Golf Swing Information from Golf Video)

  • 오황석
    • 한국컴퓨터게임학회논문지
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    • 제31권4호
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    • pp.61-70
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    • 2018
  • 본 논문은 골프 스윙 자세 학습자를 위하여 골프 스윙의 참조 모델인 3D 모델과 학습자의 골프 스윙을 촬영한 동영상을 대상으로 스윙 동작 시 각각의 위치 및 시간에서 각 동작을 정밀하게 비교 분석하기 위해 3D 모델의 골프 스윙 동작과 학습자의 스윙 동작을 동기화 시키는 방법을 제안하고 구현한 결과를 제시한다. 3D 모델과 학습자의 스윙 동영상을 동기화시켜 재생하기 위해서 먼저 학습자의 골프 스윙 동영상을 촬영하고, 촬영한 동영상으로부터 어드레스 자세부터 피니쉬 자세까지 골프 클럽의 위치에 따라 상대적 시간 정보를 추출한다. 고품질 모션 캡쳐 장비를 통해 초당 120프레임으로 캡처된 골프 전문가의 움직임 정보를 3D 모델에 리깅한 3D 참조 모델에 학습자 스윙 동영상으로부터 추출한 골프 클럽의 위치별 시간 정보를 적용하여 3D 참조 모델과 학습자의 스윙 동영상을 동기화시켜 재생함으로 학습자는 골프 스윙의 각 위치에서 참조 모델과 자신의 자세를 정밀하게 비교함으로 자세를 교정하거나 학습할 수 있다. 동기화된 재생을 통하여 기존의 수동적으로 위치를 조정하며 참조 모델과 학습자의 스윙을 비교 분석하는 시스템의 기능을 편리하게 사용할 수 있도록 개선할 수 있으며, 골프 자세의 각 위치를 검출하는 영상 처리 기술을 적용한 부분을 제외하고, 동기화시키기 위해 동영상에서 자동적으로 각 위치의 시간 정보를 추출하여 동기화시켜 재생하는 방법은 일반적인 생활 스포츠 분야로 확대하여 활용할 수 있을 것으로 기대한다.

드라이버 샤프트 길이와 신체적 조건이 헤드스피드, 비거리 및 방향성에 미치는 영향 (Influence of Shaft Length and Physical Condition on Golf Driving Performance according to Physical Condition)

  • 정철;김지선
    • 한국응용과학기술학회지
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    • 제36권1호
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    • pp.217-225
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    • 2019
  • 본 연구의 목적은 드라이버 샤프트 길이와 신체적 조건이 헤드스피드와 비거리 및 방향성에 미치는 영향에 대하여 분석하였다. 연구에 참여한 대상은 핸디캡인 0인 남자 프로골퍼 27명을 대상으로 신체적인 조건은 키($170cm{\geq}170-175cm{\geq}175-180cm$)로 하였고, 연구에 사용한 드라이버 길이는 44 인치, 45 인치, 46 인치로 하였다. 골프 수행력은 헤드스피드와 비거리 및 방향성을 종속변인으로 설정하여 분석하였다. 연구 결과 일반적인 헤드스피드는 44, 45인치와 46인치 간에는 유의한 차이가 나타났다(p<.01). 비거리에서는 44인치와 46인치 간에 유의한 차이가 나타났다(p<.05). 방향성에서는 44, 45인치와 46인치 간에는 유의한 차이가 나타났다(p<.05). 키에 따른 헤드스피드는 170, 171-175cm에서는 클럽 간에 대동소이하였고, 176-180cm 44인치와 46인치 간에 유의한 차이가 나타났다(p<.01). 키에 따른 비거리는 170cm에서는 클럽길이 간 대동소이하였고, 171-175cm에서는 44인치와 46인치 간에 유의한 차이가 나타났으며(p<.01). 176-180cm 45인치와 46인치 간에 유의한 차이가 나타났다(p<.05). 키에 따른 방향성에서는 170cm에서 44인치와 45인치 간에 유의한 차이가 나타났고(p<.05), 45, 46인치에서는 키와 상관없이 클럽 간 유의한 차이가 없는 것으로 나타났다. 결론적으로 드라이버 샤프트 길이 및 키에 따른 골프 수행력에 영향을 미치는 것으로 나타났다.