Implementation of Finite State Automata to Simulation of Automatic Clothes-Folding

Authors

  • Nadiza Lediwara Universitas Pertahanan Republik Indonesia
  • Aulia Khamas Heikmakhtiar Universitas Pertahanan Republik Indonesia
  • Sembada Denrineksa Bimorogo Universitas Pertahanan Republik Indonesia
  • Alfian Habib Ahmed Universitas Pertahanan Republik Indonesia
  • Rizki Yulian Agusti Universitas Pertahanan Republik Indonesia

Keywords:

Finite State Automata, clothes-folding, Non-Deterministic Finite Automata

Abstract

Inconsistencies and differences clothes-folding methods are often a major problem in the military. Everyone has thier method to fold and their method is still traditional. Besides, the neatness of the clothes in the military is emphasized. This method certainly took up their time and energy then the folding was different to each other. To solve this problem, a simulation machine is made to fold the clothes automatically. This system works using Finite State Automa type Non-Deterministic Finite Automata. Finite State Automata are used because they are simple and do not require storage space. The result of this research is a design of an automatic clothes-folding that can be implemented properly and correctly for UNHAN RI’s students. This automatic clothes-folding has succeeded to create consistent folds even though user tried with different clothes.

References

Abdulnabi, N. L., & Ahmad, H. B. (2019). Data type Modeling with DFA and NFA as a Lexical Analysis Generator. Academic Journal of Nawroz University, 8(4), 415–420. https://doi.org/10.25007/AJNU.V8N4A488

Agastya Nugraha, R., Mulyani, A., & Gata, W. (2020). Desain Vending Machine Rujak Buah dengan Finite State Automata. IJCIT (Indonesian Journal on Computer and Information Technology), 5(2), 198–207. https://doi.org/10.31294/IJCIT.V5I2.8169

Dabre, R., Chu, C., & Kunchukuttan, A. (2020). A Survey of Multilingual Neural Machine Translation. ACM Computing Surveys (CSUR), 53(5). https://doi.org/10.1145/3406095

Devi, B. P., Aruna, S. K., & Sindhanaiselvan, K. (2020). Performance Analysis of Deterministic Finite Automata and Turing Machine Using JFLAP Tool. Journal of Circuits, Systems and Computers, 30(6). https://doi.org/10.1142/S021812662150105X

Ghaleb, O., & Oommen, B. J. (2021). On solving single elevator-like problems using a learning automata-based paradigm. Evolving Systems, 12(1), 37–56. https://doi.org/10.1007/S12530-020-09325-6/METRICS

Han, X. G., & Chen, Z. Q. (2018). A matrix-based approach to verifying stability and synthesizing optimal stabilizing controllers for finite-state automata. Journal of the Franklin Institute, 355(17), 8642–8663. https://doi.org/10.1016/J.JFRANKLIN.2018.09.009

Hussain, R., Zielinska, T., & Hexel, R. (2019). Finite state automaton based control system for walking machines. International Journal of Advanced Robotic Systems, 16(3), 1–14. https://doi.org/10.1177/1729881419853182

Koç, H., Erdogan, A. M., Barjakly, Y., & Peker, S. (2021). UML Diagrams in Software Engineering Research: A Systematic Literature Review. Proceedings 2021, Vol. 74, Page 13, 74(1), 13. https://doi.org/10.3390/PROCEEDINGS2021074013

Kumar, K., & Krishna Kumar, C. (2021). Design of vending machine through implementation of visual automata simulator and finite state machine. 60 ~ International Journal of Research in Circuits, Devices and Systems, 2(2). www.circuitsjournal.com

Lediwara, N., Saragih, H., Gultom, R. A. G., Mukmin, E., Rahmad Zuwa, G., & Hadi Fajri, R. (2022). Finite State Automata On The Administrative Selection System Of New Student Admission in Universitas Pertahanan Republik Indonesia. Proceedings - ICACSIS 2022: 14th International Conference on Advanced Computer Science and Information Systems, 95–98. https://doi.org/10.1109/ICACSIS56558.2022.9923514

Leonita, L., & Sari, R. K. (2019). Pengaruh PDRB, Pengangguran dan Pembangunan Manusia terhadap Kemiskinan di Indonesia. ISOQUANT : Jurnal Ekonomi, Manajemen Dan Akuntansi, 3(2), 1–8. https://doi.org/10.24269/ISO.V3I2.252

Mavridou, A., & Laszka, A. (2018). Designing Secure Ethereum Smart Contracts: A Finite State Machine Based Approach. Lecture Notes in Computer Science (Including Subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics), 10957 LNCS, 523–540. https://doi.org/10.1007/978-3-662-58387-6_28/COVER

Nyoman Crisnapati, P., Indrawan, G., Devi Novayanti, P., Wayan Aditya Suranata, I., Made Suandana Astika Pande, I., Gede Putra Mas Yusadara, I., & Putu Santrisna, I. (2019). Pasang Aksara Bot: A Balinese Script Writing Robot using Finite State Automata Transliteration Method. Journal of Physics: Conference Series, 1175(1), 012108. https://doi.org/10.1088/1742-6596/1175/1/012108

Pferscher, A., & Aichernig, B. K. (2020). Learning Abstracted Non-deterministic Finite State Machines. Lecture Notes in Computer Science (Including Subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics), 12543 LNCS, 52–69. https://doi.org/10.1007/978-3-030-64881-7_4/COVER

Supriyanto, E., Ardiansyah, A., Frieyadie, F., Rahayu, S., & Gata, W. (2021). Penerapan Finite State Automata Pada Vending Machine Penjual Obat Non Resep Dokter Dan Keperluan Medis. Jurnal Informasi Dan Komputer, 9(2), 08–14. https://doi.org/10.35959/JIK.V9I2.206

Ulyantsev, V., Buzhinsky, I., & Shalyto, A. (2018). Exact finite-state machine identification from scenarios and temporal properties. International Journal on Software Tools for Technology Transfer, 20(1), 35–55. https://doi.org/10.1007/S10009-016-0442-1/METRICS

Wang, D., & Chen, Y. (2021). Visual Teaching Design of Compile Principle Based on JFLAP. Proceedings - 2021 2nd International Conference on Artificial Intelligence and Education, ICAIE 2021, 366–370. https://doi.org/10.1109/ICAIE53562.2021.00083

Zhang, Z., Xia, C., & Chen, Z. (2020). On the stabilization of nondeterministic finite automata via static output feedback. Applied Mathematics and Computation, 365, 124687. https://doi.org/10.1016/J.AMC.2019.124687

Downloads

Published

2023-10-30

How to Cite

Lediwara, N., Heikmakhtiar, A. K., Bimorogo, S. D., Ahmed, A. H., & Agusti, R. Y. (2023). Implementation of Finite State Automata to Simulation of Automatic Clothes-Folding. Jurnal Teknologi Sistem Informasi Dan Aplikasi, 6(4), 783–787. Retrieved from https://openjournal.unpam.ac.id/index.php/JTSI/article/view/34226