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Abstract
Footwork is a movement that regulates the body to position the body in such a way that it makes it easier to perform the movement of hitting the shuttlecock according to its position. The purpose of this technique is so that the shuttlecock can be reached in any area quickly when the opponent attacks. The purpose of this study is to test how much influence predictable and unpredictable training is against the speed of footsteps in badminton games, this study used an experimental method with the pretest-posttest control and experimental group design. The population used was 30 students of UPI Sumedang badminton UKM, the samples taken were 10 students for experimental treatment and 10 students for control treatment using techniques. Based on the results of the data analysis obtained, the average pre-test experiment 65,80 and post-test 85 show an increase in the speed of footwork after being given an exercise using android court footwork. In addition, the increase in speed in badminton UKM Students can be seen from the N-Gain scores in both groups. The N-Gain score in the experimental groups was higher than the control group ( 56,85 > 31,78) and in the t-test, on the N-Gain value, the score obtained the Sig value. (2-tailed) = 0,001 < α = 0,05. So, it can be concluded that predictable and unpredictable training affects the speed of footwork of badminton UKM students and there is a significant difference in effectiveness in the application of android court footwork exercises with conventional exercise.
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Copyright (c) 2022 Febby Ardhia, Rizal Ahmad Fauzi, Dinar Dinangsit
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References
- Al Farisi, M. A. H. (2018a). Agility Exercise Models of Badminton. Jipes - Journal of Indonesian Physical Education and Sport, 4(2), 55–60. https://doi.org/10.21009/jipes.042.08
- Al Farisi, M. A. H. (2018b). Model Latihan Kelincahan Bulutangkis. Jurnal Segar, 7(2), 31–45. http://journal.unj.ac.id/unj/index.php/segar/article/view/9201
- Amat Komari. (2005). Pengenalan Permainan Bulutangkis pada Usia Sekolah Dasar. Jurnal Pendidikan Jasmani Indonesia, Edisi Khusus,2005, 97–105.
- Chiu, Y. L., Tsai, C. L., Sung, W. H., & Tsai, Y. J. (2020). Feasibility of smartphone-based badminton footwork performance assessment system. Sensors (Switzerland), 20(21), 1–11. https://doi.org/10.3390/s20216035
- Daryanto, Z. P., & Hidayat, K. (2015). Pengaruh Latihan Kelincahan Terhadap Kemampuan Menggiring Bola. Jurnal Pendidikan Olahraga, 4(12), 201–212. https://journal.ikippgriptk.ac.id/index.php/olahraga/article/view/87/85
- Engel. (2014). Pengembangan Alat Footwork Test and Training Bulutangkis. Paper Knowledge . Toward a Media History of Documents, 1–10.
- Fraenkel, J. R., Wallen, N. E., & Hyun, H. H. (2012). How To Design and Evaluate Research in Education (8th ed.). McGraw-Hill.
- Grillon, C., Baas, J. P., Lissek, S., Smith, K., & Milstein, J. (2004). Anxious responses to predictable and unpredictable aversive events. Behavioral neuroscience, 118(5), 916.
- Islamiati, D. O., Yunus, M., & Abdullah, A. (2022). Latihan ladder drill dan shuttle run dapat mempengaruhi kecepatan atlet bulutangkis Pusat Latihan Kota Malang untuk Porprov tahun 2022. Jurnal Sport Science, 12(2), 76. https://doi.org/10.17977/um057v12i2p76-83
- Limbong, D. M. (2021). Pengaruh latihan dengan lampu reaksi dan Shuttle Run terhadap kelincahan gerak kaki (footwork) atlet bulutangkis PB. Tj prestasi tebo. Pengaruh Latihan Dengan Lampu Reaksi Dan Shuttle Run Terhadap Kelincahan Gerak Kaki (Footwork) Atlet Bulutangkis PB. Tj Prestasi Tebo, 03(02), 68–74.
- Maulina, M. (2018). Profil Antropometri Dan Somatotype Pada Atlet Bulutangkis. AVERROUS: Jurnal Kedokteran Dan Kesehatan Malikussaleh, 1(2), 69. https://doi.org/10.29103/averrous.v1i2.413
- Monsell, S., Sumner, P., & Waters, H. (2003). Task-set reconfiguration with predictable and unpredictable task switches. Memory & cognition, 31(3), 327-342.
- Mujami’, A. (2010). Sumbangan Reaksi Dan Kelincahan Terhadap Hasil Footwork Pada Mahasiswa IKK Bulutangkis I Jurusan Pendidikan Kepelatihan Olahraga. Skripsi Universitas Negeri Semarang.
- Pujianto, A. (2012). Modifikasi Pegangan Raket untuk Meningkatkan Kemampuan Teknik Pegangan Bulutangkis. Media Ilmu Keolahragaan Indonesia, 2(1), 1–8.
- Sepdanius, E., Novselia, N., & Syafrizar. (2020). Development of Footwork Exercise Tool Based on Android for Badminton. 464(Psshers 2019), 919–923. https://doi.org/10.2991/assehr.k.200824.204
- Zarwan, Arsil, & Hardiansyah, S. (2018). Studi Tentang Kemampuan Teknik Dasar Bulutangkis Siswa Sekolah Dasar Zarwan, Arsil, Sefri Hardiansyah. Majalah Ilmiah, 25(2), 149–158.
- Zhang, H. M., Peh, L. S., & Wang, Y. H. (2014). Servo motor control system and method of auto-detection of types of servo motors. Applied Mechanics and Materials, 496–500(1), 1510–1515. https://doi.org/10.4028/www.scientific.net/AMM.496-500.1510
References
Al Farisi, M. A. H. (2018a). Agility Exercise Models of Badminton. Jipes - Journal of Indonesian Physical Education and Sport, 4(2), 55–60. https://doi.org/10.21009/jipes.042.08
Al Farisi, M. A. H. (2018b). Model Latihan Kelincahan Bulutangkis. Jurnal Segar, 7(2), 31–45. http://journal.unj.ac.id/unj/index.php/segar/article/view/9201
Amat Komari. (2005). Pengenalan Permainan Bulutangkis pada Usia Sekolah Dasar. Jurnal Pendidikan Jasmani Indonesia, Edisi Khusus,2005, 97–105.
Chiu, Y. L., Tsai, C. L., Sung, W. H., & Tsai, Y. J. (2020). Feasibility of smartphone-based badminton footwork performance assessment system. Sensors (Switzerland), 20(21), 1–11. https://doi.org/10.3390/s20216035
Daryanto, Z. P., & Hidayat, K. (2015). Pengaruh Latihan Kelincahan Terhadap Kemampuan Menggiring Bola. Jurnal Pendidikan Olahraga, 4(12), 201–212. https://journal.ikippgriptk.ac.id/index.php/olahraga/article/view/87/85
Engel. (2014). Pengembangan Alat Footwork Test and Training Bulutangkis. Paper Knowledge . Toward a Media History of Documents, 1–10.
Fraenkel, J. R., Wallen, N. E., & Hyun, H. H. (2012). How To Design and Evaluate Research in Education (8th ed.). McGraw-Hill.
Grillon, C., Baas, J. P., Lissek, S., Smith, K., & Milstein, J. (2004). Anxious responses to predictable and unpredictable aversive events. Behavioral neuroscience, 118(5), 916.
Islamiati, D. O., Yunus, M., & Abdullah, A. (2022). Latihan ladder drill dan shuttle run dapat mempengaruhi kecepatan atlet bulutangkis Pusat Latihan Kota Malang untuk Porprov tahun 2022. Jurnal Sport Science, 12(2), 76. https://doi.org/10.17977/um057v12i2p76-83
Limbong, D. M. (2021). Pengaruh latihan dengan lampu reaksi dan Shuttle Run terhadap kelincahan gerak kaki (footwork) atlet bulutangkis PB. Tj prestasi tebo. Pengaruh Latihan Dengan Lampu Reaksi Dan Shuttle Run Terhadap Kelincahan Gerak Kaki (Footwork) Atlet Bulutangkis PB. Tj Prestasi Tebo, 03(02), 68–74.
Maulina, M. (2018). Profil Antropometri Dan Somatotype Pada Atlet Bulutangkis. AVERROUS: Jurnal Kedokteran Dan Kesehatan Malikussaleh, 1(2), 69. https://doi.org/10.29103/averrous.v1i2.413
Monsell, S., Sumner, P., & Waters, H. (2003). Task-set reconfiguration with predictable and unpredictable task switches. Memory & cognition, 31(3), 327-342.
Mujami’, A. (2010). Sumbangan Reaksi Dan Kelincahan Terhadap Hasil Footwork Pada Mahasiswa IKK Bulutangkis I Jurusan Pendidikan Kepelatihan Olahraga. Skripsi Universitas Negeri Semarang.
Pujianto, A. (2012). Modifikasi Pegangan Raket untuk Meningkatkan Kemampuan Teknik Pegangan Bulutangkis. Media Ilmu Keolahragaan Indonesia, 2(1), 1–8.
Sepdanius, E., Novselia, N., & Syafrizar. (2020). Development of Footwork Exercise Tool Based on Android for Badminton. 464(Psshers 2019), 919–923. https://doi.org/10.2991/assehr.k.200824.204
Zarwan, Arsil, & Hardiansyah, S. (2018). Studi Tentang Kemampuan Teknik Dasar Bulutangkis Siswa Sekolah Dasar Zarwan, Arsil, Sefri Hardiansyah. Majalah Ilmiah, 25(2), 149–158.
Zhang, H. M., Peh, L. S., & Wang, Y. H. (2014). Servo motor control system and method of auto-detection of types of servo motors. Applied Mechanics and Materials, 496–500(1), 1510–1515. https://doi.org/10.4028/www.scientific.net/AMM.496-500.1510