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The design and application of wireless MEMS inertial measurement units for the measurement and analysis of golf swings.

机译:无线MEMS惯性测量单元在高尔夫挥杆测量和分析中的设计和应用。

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摘要

Golf is a growing sport supported by a multi-billion dollar industry. Part of this growth can be attributed to new technologies including new training aids. Training aids address one of the major obstacles towards advancement in the sport, namely developing a controlled and consistent swing. Popular camera-based systems for golf swing measurement possess one or more major limitations including (1) extensive set-up and alignment, (2) restriction to indoor use, (3) high cost, (4) lack of portability, (5) placement of instruments (markers) on/near the club head, and (6) time-consuming data processing and analysis.;This research resolves these limitations by contributing a highly portable, accurate and inexpensive means to measure golf swing dynamics. Introduced herein is a miniature and wireless six degree-of-freedom MEMS inertial measurement unit that fits entirely within the grip end of the golf club shaft. A companion measurement theory enables the computation of the rigid body dynamics of the golf club from sensor outputs. Flexible body dynamics, if and when needed, are estimated using dynamical models of flexible golf shafts.;For putting strokes, the sensor system resolves the three-dimensional position of the club face to within 3 millimeters and the three-dimensional orientation of the club face to within 0.5 degrees, both with millisecond updates. This measurement speed and significant precision enable the detailed characterization of putting strokes. A suite of "putting metrics" is identified that pin-points common putting faults from the measured club head trajectory and orientation. For full swings made with drivers and irons, the system resolves the complete three-dimensional rigid body motion of the club and critical metrics for swing instruction including the swing planes, club head velocity, and the club head orientation throughout the swing.;Beyond golf, the measurement theory and hardware design hold significant promise for training systems for numerous other sports. In addition, this technology has relevance to far broader fields of application including, sports injury mechanics, rehabilitation science, gait analysis, surgeon training, etc. This research has contributed the foundation for these upcoming applications, many of which have already been initiated as a bi-product of this study.
机译:高尔夫是一项成长中的运动,受到数十亿美元产业的支持。这种增长的部分原因可以归功于新技术,包括新的培训工具。训练辅助装置解决了推动这项运动前进的主要障碍之一,即发展一种可控且一致的挥杆动作。流行的基于摄像机的高尔夫挥杆测量系统具有一个或多个主要限制,包括(1)广泛的设置和对准,(2)室内使用限制,(3)高成本,(4)缺乏便携性,(5)在杆头上/附近放置工具(标记),以及(6)耗时的数据处理和分析。该研究通过提供一种高度便携式,准确且廉价的方法来测量高尔夫球挥杆动力学来解决这些限制。本文介绍的是一种微型无线六自由度MEMS惯性测量单元,其完全安装在高尔夫球杆杆身的握柄端部内。伴随测量理论可以根据传感器输出来计算高尔夫球杆的刚体动力学。如果需要的话,可以使用挠性高尔夫球杆的动力学模型来估计挠性主体的动力学。对于击球,传感器系统将球杆杆面的三维位置解析为3毫米以内,并且球杆的三维方向面向0.5度以内,均具有毫秒更新。这种测量速度和极高的精度使推杆的细节得以表征。识别出一套“推杆度量”,可以从测得的杆头轨迹和方向精确指出常见的推杆缺陷。对于使用发球杆和铁杆进行的完整挥杆,系统将解决球杆的完整三维刚体运动以及挥杆指令的关键指标,包括挥杆平面,球杆杆头速度和整个挥杆中球杆杆头的方向。 ,测量理论和硬件设计为众多其他运动训练系统提供了广阔前景。此外,该技术还涉及更广泛的应用领域,包括运动损伤力学,康复科学,步态分析,外科医生培训等。这项研究为这些即将到来的应用奠定了基础,其中许多已经作为一种新的应用而启动。本研究的副产品。

著录项

  • 作者

    King, Kevin W.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:39:04

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