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http://dx.doi.org/10.12673/jant.2017.21.2.200

Implementation of Golf Swing Accuracy Analysis System using Smart Sensor  

Ju, Jae-han (Department of Medical Electronics, Songho College)
Abstract
Modern sports are developing into sports science that incorporates science and various analytical simulation systems for improving records are being developed, and they are helping to improve actual game records. Therefore golf which is one of various sports events, has been popularized among the hobbyists and the general public and there is an increasing demand for correcting the movement attitude of the person. In response to these demands, many systems have been developed to analyze and correct golf swing postures. The golf swing accuracy analysis system analyzes the moments that can not be seen with the naked eye and guides them to understand easily. It can improve the golf swing motion through immediate feedback due to the visual effect. Using the knowledge of golf swing motion collected from golf swing video, we improved reliability. In addition, it provides the ability to visually check and analyze your golf swing video, allowing you to analyze each segment based on various golf swing classification methods.
Keywords
Micro electro mechanical systems; Bluetooth; Inter integrated circuit; Smart sensor; Gyroscope;
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1 M. Muoth, K. Chikkadi, I. Yu, and C. Hierold, "Suspended CNT-FET piezoresistive strain gauges: chirality assignment and quantitative analysis," in The 26th IEEE International Conference on Micro Electro Mechanical Systems, Taipei: Taiwan, pp. 496-499. 2013.
2 S. Mir, L. Rufer, and A. Dhayni, "Built-in-self-test techniques for MEMS," Microelectronics Journal, Vol. 37, No. 12, pp. 159-1597, 2006.
3 M. Ueda, H. Negoro, Y. Kurihara, and K. Watanabe, "Measurement of angular motion in golf swing by a local sensor at the grip end of a golf club," IEEE Transactions on Human-Machine Systems, Vol. 43, No. 4, pp. 398-404, 2013.   DOI
4 E. Tanghe, et al., "The industrial indoor channel: Large-scale and temporal fading at 900, 2400 and 5200 MHz," IEEE Transactions on Wireless Communications, Vol. 7, No. 7, pp. 2740-2751, July 2008.   DOI
5 A. D. DeHennis, and K. D. Wise, "A wireless microsystem for the remote sensing of pressure, temperature, and relative humidity," Journal of Microelectromechanical Systems, Vol. 14, No. 1, pp. 12-22, 2005.   DOI
6 D. Balakrishnan, and A. Nayak, "An efficient approach for mobile asset tracking using contexts," IEEE Transactions on Parallel and Distributed Systems, Vol. 23, No. 2, pp. 211-218, 2012.   DOI
7 C. Ding, M. J. Moisio, and J. Yuan, "Algebraic constructions of optimal frequency-hopping sequences," IEEE Transactions on Information Theory, Vol. 53, No. 7, pp. 2606-2610, 2007.   DOI
8 J. Fei, and J. Zhou, "Robust Adaptive Control of MEMS Triaxial gyroscope using fuzzy compensator," IEEE Transactions on Cybernetics, Vol. 42, No. 6, pp. 1599-1607, 2012.