• Title/Summary/Keyword: Golf ball

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골프공 회전 무게중심 검출 시스템 (A development of automatic detecting equipment for rotation axis of golf ball)

  • 이재웅;현웅근;오준호
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2016년도 추계학술대회
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    • pp.540-545
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    • 2016
  • 본 연구에서는 딤플공의 회전축을 찾아가는 상태를 측정하는 영상 기반 시스템을 개발였다. 공기압으로 골프공을 부양시키면 표면에 딤플이 있는 골프공은 자이로의 원리에 의해 강하게 회전하면서 부양하고 47g의 골프공 무게에 의해 일정 높이에서 정지하면서 무게중심 회전축울 중심으로 일정하게 회전하게 된다. 본 장치는 공기 중으로 부양하면서 회전하는 골프공이 고정된 회전축을 찾기까지의 시간을 검출하는 장치 및 최적의 공기압을 찾아내는 시스템이다.

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Analysis of Golf Ball Mobility and Balancing based on IoT Sports Environments

  • Lee, Tae-Gyu
    • International journal of advanced smart convergence
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    • 제8권3호
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    • pp.78-86
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    • 2019
  • Recently, IoT researches using sensor data based on embedded networks in various fields including healthcare and sports have been continuously attempted. This study analyzes golf ball mobility to support IoT application in golf sports field. Generally, since the difference in density occurs due to the condition of the inner material and the abnormal state at the time of the outer skin joining during the manufacturing of the golf ball, the weight of each subset is equal for any two points with the same radius in the sphere cannot be guaranteed. For this reason, the deflected weight of the sphere has the undesirable effect of hitting the ball in a direction in which the weight of the ball is heavy. In this study, it is assumed that there is a unique center of gravity of the ball, and even if the golf ball cannot be manufactured perfectly, it wants to establish the basic principle to accurately recognize or mark the putting line based on the center of gravity. In addition, it is evaluated how the mobility of the golf ball with a deviation from the center of gravity of the golf ball affects the progress path (or movement direction) and the moving distance (or carry distance) after the golfer hits. The basic model of the mobility of the golf ball can help the golfer exercise model and the correlation analysis. The basic model of the mobility of the golf ball can help the golfer exercise model and the correlation analysis.

영상 기반 회전 골프공 무게중심 검출 시스템 (A Visual Detecting System for The Rotation Axis of Golf Ball)

  • 현웅근
    • 한국전자통신학회논문지
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    • 제14권2호
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    • pp.411-416
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    • 2019
  • 본 연구에서는 딤플공의 회전축을 찾아가는 상태를 측정하는 영상 기반 시스템을 개발였다. 일부 골프공은 제조과정에서의 불량 및 공을 치면서 발생하는 볼표면의 스크래치에 의해서 회전축이 틀어진다. 이렇게 흠이있는 골프공은 드라이브샷등에 의해 비행하는 과정중에 슬라이스 등의 원인이 된다. 딤플 골프공은 아이언이나 드라이버로 타격시 회전 및 직선운동을 이루며 진행을 하며 회전은 일정한 시간이 지나면 일정한 축을 중심으로 진행되는 바, 회전중심을 찾아가는 과정에서 슬라이스등이 진행된다. 만일 볼을 타격하는 시점부터 고유 회전축에 일치시켜 타격한다면 골프샷의 오차가 줄어든다. 본 논문에서는 골프공의 수렴회전축을 찾는 시스템을 영상 시스템으로 개발하였으며, 실험을 통해 시스템 개발의 타당성을 입증하였다.

운동량 보존 법칙을 이용한 골프공의 속도 측정 방법 (Method for Measuring of Golf Ball's Speed Using The Law of Conservation of Momentum)

  • 신성윤;이현창;이양원
    • 한국컴퓨터정보학회논문지
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    • 제18권9호
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    • pp.71-78
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    • 2013
  • 본 논문에서는 골프채 헤드가 골프공을 일정속도로 움직여 치고 난 후 골프채의 헤드는 같은 방향으로 일정 속도로 움직일 때 골프공을 치고 날아가는 골프공의 속도를 구한다. 골프공을 치기 전의 속도가 각각 다를 경우의 골프공의 속도를 각각 구한다. 골프를 칠 때 헤드의 속도, 골프공의 질량, 임팩트, 임팩트후의 날아가는 속도, 그리고 임팩트 후의 이동 방향 등을 쉽게 알아보도록 하는 것이 본 논문의 목적이다. 실험 결과는 표와 그림으로 자세히 나타나 있고 본 연구와 기존 연구와의 비교 평가 결과와 시사점 및 향후 연구 방향도 제시하였다. 본 연구 결과는 다른 연구와 달리 몇 가지 요소들의 측정으로 우수하게 골프공의 속도를 측정함을 알 수 있다.

On dynamic flight response of golf ball containing nanoparticles for improving quality

  • Yuwei Du;Guowen Ai;M. Kaffash
    • Advances in nano research
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    • 제15권6호
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    • pp.579-585
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    • 2023
  • This research delves into the intricate dynamics of the flight response exhibited by a golf ball that incorporates nanoparticles with the goal of enhancing its overall quality. The golf ball is meticulously modeled utilizing beam elements, and the impact of nanoparticles is intricately captured through the application of the Halpin-Tsai theory. Employing a numerical solution, the study thoroughly explores the flight response of the golf ball, taking into account the nuanced effects of the embedded nanoparticles. By scrutinizing the aerodynamic characteristics through advanced simulations, this investigation aims to provide valuable insights that could potentially revolutionize the design and performance of golf equipment, offering a pathway towards superior quality and enhanced functionality in the realm of golf ball technology. Results show that increase in the volume percent of nanoparticles, improves the flight response of the golf ball.

임팩트 후 골프공의 속도 측정 (Measuring The Speed of The Golf Ball after Impact)

  • 신성윤;이현창;김희애;이양원
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2013년도 춘계학술대회
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    • pp.129-131
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    • 2013
  • 본 논문에서는 골프채 헤드가 골프공을 일정속도로 움직여 친다. 그 후 골프채의 헤드는 같은 방향으로 일정 속도로 움직인다. 그 때 골프공을 치고 날아가는 골프공의 속도를 구한다. 골프공을 치기 전의 속도 각각 다를 경우의 골프공의 속도를 각각 구한다.

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로봇머신 데이터를 이용한 골프 클럽 피팅 (Golf Club Fitting Using Robot Machine Data)

  • 박성진;전재홍;박영진
    • 한국운동역학회지
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    • 제22권1호
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    • pp.75-82
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    • 2012
  • The purpose of this study was to suggest the proper shaft and head fitting methods of the golf club to increase the flight distance of the golf ball. Rotations per minute of the golf ball(RPM), ratio of Ball speed to club head speed(T-Ratio) and launch angle right after impact(LA), which are directly related to ball flight distance, were measured using Spectra with shutter speed of 1/1000sec at the constant head speed of 95mph which was controlled by robot golf swing machine. In order to investigate the effect of club shaft to the 3 selected variables, 10 shafts were used to make ten test clubs with one controlled club head which is the most commonly used by golf players. To measure the effect of the club head to the 3 selected variables, 6 golf club heads which are most commonly used by golfers were selected to make 6 test clubs with a controlled shaft which is one of the best known by players. The shafts and the heads were identified by statistical analysis to increase or decrease the RPM, T-ratio and LA. A proper fitting method of the selected shafts and the club head was suggested to increase the ball flight distance in golf.

골프 공의 충돌 시 스핀 생성 원리 연구 (A Study on Golf Ball Spin Mechanism at Impact)

  • 노우진;이종원
    • 한국소음진동공학회논문집
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    • 제17권5호
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    • pp.456-463
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    • 2007
  • It is important to improve the initial launch conditions of golf ball at impact between golf club and ball to get a long flight distance. The flight distance is greatly influenced by the initial launch conditions such as ball speed, launch angle and back spin rate. It is also important to analyze the mechanism of ball spin to improve the initial conditions of golf ball. Back spin rate is created by the contact time and force. Previous studies showed that the contact force is determined as the resultant force of the reaction forces normal and tangential to the club face at the contact point. The normal force causes the compression and restitution of ball, and the tangential force creates the spin. Especially, the tangential force is known to take either positive or negative values as the ball rolls and slides along the club face during impact. Although the positive and negative tangential forces are known to create and reduce the back spin rate, respectively, the mechanism of ball spin creation has not yet been discussed in detail in the literature. In this paper, the influence of the contact force between golf club and ball is investigated to analyze the mechanism of impact. For this purpose, the contact force and time at impact between golf club head and ball are computed using FEM and compared with previous results. In addition, we investigate the impact phenomenon between golf club head and ball by FEM and clarify the mechanism of ball spin creation accurately, particularly focusing on the effect of negative tangential force on ball spin rate.

골프 공의 충돌 시 스핀 생성 원리 연구 (A Study on Golf Ball Spin Mechanism at Impact)

  • 노우진;이종원
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2007년도 춘계학술대회논문집
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    • pp.1017-1022
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    • 2007
  • It is important to improve the initial launch conditions of golf ball at impact between golf club and ball to get a long flight distance. The flight distance is greatly influenced by the initial launch conditions such as ball speed, launch angle and back spin rate. It is also important to analyze the mechanism of ball spin to improve the initial conditions of golf ball. Back spin rate is created by the contact time and force. Previous studies showed that the contact force is determined as the resultant force of the reaction forces normal and tangential to the club face at the contact point. The normal force causes the compression and restitution of ball, and the tangential force creates the spin. Especially, the tangential force is known to take either positive or negative values as the ball rolls and slides along the club face during impact. Although the positive and negative tangential forces are known to create and reduce the back spin rate, respectively, the mechanism of ball spin creation has not yet been discussed in detail in the literature. In this paper, the influence of the contact force between golf club and ball is investigated to analyze the mechanism of impact. For this purpose, the contact force and time at impact between golf club head and ball are computed using FEM and compared with previous results. In addition, we investigate the impact phenomenon between golf club head and ball by FEM and clarify the mechanism of ball spin creation accurately, particularly focusing on the effect of negative tangential force on ball spin rate.

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골프 드라이버 스윙 시 스윙 플레인에 따른 클럽 헤드 및 골프볼의 운동학적 변인과 신체 정렬 변인의 비교 분석 (Comparison of Kinematic Variables of the Club Head, Golf Ball and Body Alignment according to Swing Plane during Golf Driver Swing)

  • Young-Tae, Lim;Moon-Seok, Kwon;Jae-Woo, Lee
    • 한국운동역학회지
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    • 제32권4호
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    • pp.147-152
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    • 2022
  • Objective: The purpose of this study was to analyze the effects of club head and golf ball kinematics and body alignment according to the swing plane during golf driver swing. Method: Sixteen college golfers participated in this study. Kinematic data of the club head and golf ball were collected using golf swing analysis system (Trackman Ver. 3e). The body alignment variables were collected using 8 motion capture system. An Independent samples t-test was used for comparison between the Out-to-In group and In-to-Out group, and the statistical significance level was set at .05. Results: For the club head related variables, club path and club face angle showed higher values in Out-to-In swing plane than In-to-Out swing plane. For the kinematic variables of the golf ball, the total distance showed a higher value in the In-to-Out swing plane than that of the Out-to-In swing plane. For the body alignment, the In-to-Out swing plane showed higher values than the Out-to-In swing plane for the pelvis rotation angle and trunk rotation angle. Conclusion: This study suggest that it would be more effective to use the In-to-Out swing plane for increasing the total distance during the golf driver swing.