Sistem Penulangan pada Karakter 3D dalam Film Animasi The Relativity Of Reality
DOI:
https://doi.org/10.55606/jurrsendem.v4i1.5764Keywords:
3D animation, modeling, rigging, bendy boneAbstract
Digital animation technology is increasingly advancing, as evidenced by the proliferation of animated films worldwide. This is also true in Indonesia, where the production of animated films has increased significantly due to the improvement and ease of digital animation technology. One of the most important parts of the animation process is the rigging process, which involves creating a skeleton for the character or object so that it can move and appear lifelike. The rigging process in the short animated film "The Relativity Of Reality" tells the story of Rei, a young boy who discovers advanced technology from a secret organization. However, the owner of the technology comes to take it back, leading to a struggle and chase. Rei decides to escape but is cornered and a battle ensues. The characters in the film are animated using rigging techniques, utilizing the Bendy Bone feature in the Blender application. This feature is useful in creating a rigged system for characters and objects. The result of applying rigging with the Bendy Bone feature is that characters move more fluidly, not only in the legs, body, and arms but also in the face. Therefore, the use of bendy bone and facial rigging in characters will make it easier to produce animations. In addition, rigging can also be applied to other moving objects such as cars, skateboards, doors, and cabinets.
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References
Abdillah, T. R. (2021). Optimasi proses produksi animasi 3D dengan menggunakan metode controller rigging wajah. Jurnal TIKA, 6(03).
Ariesta, T. W., Pelana, R., & Setiakarnawijaya, Y. (2022). Evaluation of shooting sports achievement development program at PB PERBAKIN. Gladi: Jurnal Ilmu Keolahragaan, 13(1), 47–60. https://doi.org/10.21009/GJIK.131.05
Arifudin, O. (2022). Optimalisasi kegiatan ekstrakurikuler dalam membina karakter peserta didik. Jurnal Ilmiah Ilmu Pendidikan, 5.
Beane, A. (2012). 3D Animation Essentials. Canada: John Wiley & Sons.
Blender Document. (2021). “Bendy Bones — Blender Manual.” Blender.org. Diakses 13 Juni 2023, dari https://docs.blender.org/manual/en/latest/animation/armatures/bones/properties/bendy_bones.html
Brown, B. (2016). Cinematography Theory & Practice (3rd ed.). Focal Press.
Cao, Y., Li, Y., & Zhou, Q. (2021). 3D modeling and animation design of flying apsaras in Dunhuang frescoes.
Chen, C. Y., & Zhunag, X. Q. (2023). The image ratios for designing cute nonhuman anthropomorphic characters. Entertainment Computing, 47, 100586. https://doi.org/10.1016/j.entcom.2023.100586
Creswell, J. W. (2014). Research Design: Qualitative, Quantitative, and Mixed Methods Approaches (4th ed.). SAGE Publications.
Dwimursito, A., Fadila, J. N., & Nugroho, F. (2022). Perancangan film animasi 3D bertema Islami berjudul Sedekah Itu Indah menggunakan metode pose-to-pose. Jurnal Informatika dan Komputer (J ICOM), 3(1), 1–10.
Field, S. (2005). Screenplay: The Foundations of Screenwriting. Delta Trade Paperback.
Flavell, L. (2010). Beginning Blender: Open Source 3D Modeling, Animation, and Game Design (1st ed.). Springer.
Freeman, H. D. (2017). The Moving Image Workshop. Bloomsbury.
Gede, I. A. S., Made, M., Marthana, Y., & Jayanegara, N. (2021). Implementasi rigging pada karakter ‘I Angsa’ dalam film animasi 2D I Empas Teken I Angsa. Jurnal Desain, 8(3), 249–261.
Giesen, R., & Khan, A. (2018). Acting and Character Animation. Routledge.
Kerlow, I. V. (2009). The Art of 3D Computer Animation and Effects. John Wiley & Sons.
Lanier, L. (2018). Aesthetic 3D Lighting: History, Theory, and Application (1st ed.). Routledge.
Li, B., Yuan, L., Yan, Z., Liu, Q., Shen, Y., & Wang, Z. (2024). AniCraft: Crafting everyday objects as physical proxies for prototyping 3D character animation in mixed reality. In Proceedings of the 37th Annual ACM Symposium on User Interface Software and Technology (UIST ’24). ACM. https://doi.org/10.1145/XXXXXXX
Lin, S. T., & Chi, M. T. (2024). 3D to 2D animation smear effect technique based on Japanese hand drawn animation style. In SIGGRAPH Asia 2024 Posters (SA ’24). ACM. https://doi.org/10.1145/XXXXXXX
Luther, A. C. (1994). Authoring Interactive Multimedia. AP Professional.
Mou, T. Y. (2015). Creative story design method in animation production pipeline. In Proceedings of the 3rd International Conference on Design Creativity (ICDC ’15) (pp. 124–131).
Mulyani, N. (2019). Perancangan proses pra produksi film animasi 3D legenda Putri Merak Jingga. JURTEKSI: Jurnal Teknologi dan Sistem Informasi, 5(2), 183–192.
Noviandri, I. (2021). Pembuatan model 3D pada produksi film animasi “Birb”. digilib.isi.ac.id.
Pharr, M., Jakob, W. W., & Humphreys, G. (2017). Physically Based Rendering: From Theory to Implementation (3rd ed.). Morgan Kaufmann.
Raihanah, S. (2018). Pembuatan material dan lighting kota Annecy pada film animasi 3D Perjalanan Rempah Rempah. KOPERTIP: Jurnal Ilmiah Manajemen Informatika dan Komputer, 2(3), 130–136.
Robert, S. (2004). Character Animation in 3D (1st ed.). Focal Press.
Safavi Jahromi, G., & Ghazinoory, S. (2024). From Superman to Garfield: Four scenarios regarding the effects of Industry 4.0 on animation companies. Technology in Society, 77, 102511. https://doi.org/10.1016/j.techsoc.2023.102511
Sambodo, A. D., Suhartono, D., & Prasetyo, A. (2021). Analisis dan pembuatan teknik rigging animasi 3D tendangan Dwi Chagi (back kick) pada model pelatihan taekwondo. Journal of Information System Management (JOISM), 3(2), 50–54.
Setiawan, M. I., Trisnadoli, A., & Nugroho, E. S. (2019). Penerapan teknik UV mapping dan texture painting dalam pembuatan film animasi 3D Bujang Buta. TEKNIK, 40(1), 26–30.
Shen, J., Hu, K., Bao, W., Chen, C. W., & Wang, Z. (2024). Bridging the gap: Sketch aware interpolation network for high quality animation sketch inbetweening. In Proceedings of the 32nd ACM International Conference on Multimedia (MM ’24) (pp. 10287–10295). ACM. https://doi.org/10.1145/XXXXXXX
Simon, M. (2003). Producing Independent 2D Character Animation.
Simonds, B. (2013). Blender Master Class: A Hands on Guide to Modeling, Sculpting, Materials, and Rendering (1st ed.). No Starch Press.
Stark, L. (2024). Animation and artificial intelligence. In Proceedings of the 2024 ACM Conference on Fairness, Accountability, and Transparency (pp. 1663–1671). ACM. https://doi.org/10.1145/XXXXXXX
Sugiyono. (2015). Metode Penelitian Kuantitatif, Kualitatif, dan R&D. Alfabeta.
Thomas, F., & Johnston, O. (1981). The Illusion of Life: Disney Animation (1st ed.). Disney Editions New York.
Trindade, N. V., Custódio, L., Ferreira, A., & Pereira, J. M. (2024). Improving ray tracing understanding with immersive environments. IEEE Transactions on Learning Technologies. https://doi.org/10.1109/TLT.2024.######
Umayroh, S. N., Syah, E. F., Cahyani, E. D., & Sabila, L. (2021). Struktur intrinsik pada film animasi Monyet Kura Kura sebagai alternatif bahan ajar sastra di SD. In Prosiding Seminar Nasional Ilmu Pendidikan dan Multidisiplin, 4, 70–75.
Wang, H., Huang, Z., Zhang, X., Huang, X., Zhang, X. W., & Liu, B. (2022). Intelligent power grid monitoring and management strategy using 3D model visual computation with deep learning. Energy Reports, 8, 3636–3648.
Williams, R. (2012). The Animator’s Survival Kit: A Manual of Methods, Principles and Formulas for Classical, Computer, Games, Stop Motion and Internet Animators. Faber & Faber.
Wright, J. A. (2005). Animation Writing and Development: From Screen Development to Pitch. A&C Black.
Xian, D. H., & Sahagun, J. (2023). An automated generation from video to 3D character animation using artificial intelligence and pose estimate. Artificial Intelligence Advances. https://doi.org/10.1007/s#######
Yasa, G. W., Sindu, I. G. P., & Antara, M. W. (2021). Implementasi modular rigging Rigify dalam pengembangan film animasi 3D Tude Tge Series – Gotong Royong Membuat Kerajinan Tangan. repo.undiksha.ac.id
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