Desain Fuzzy Logic Controller Untuk Pengendali Pergerakan Mobile Manipulator

  • Putri Repina Kesuma Politeknik Negeri Sriwijaya
  • Tresna Dewi Politeknik Negeri Sriwijaya
  • RD Kusumanto Politeknik Negeri Sriwijaya
  • Pola Risma Politeknik Negeri Sriwijaya
  • Yurni Oktarina Politeknik Negeri Sriwijaya
DOI: https://doi.org/10.52158/jasens.v1i01.43
I will put the dimension here
Keywords: Mobile Manipulator,Mobile Robot,Fuzzy Logic.

Abstract

Technology is developing more and more to facilitate human life. Technology enables automation in all areas of life, and robots are among the most frequently used machines in automation. Robots can help with human work in all fields, including agriculture. A mobile robot manipulator is a combination of a robot arm and a mobile robot so that this type of robot can combine the capabilities of the two robots. This paper discusses the design of a robot manipulator to be used in agriculture to replace farmers in the harvesting of agricultural products, such as tomatoes. This paper presents a mechanical, electrical design and uses the Fuzzy Logic Controller as artificial intelligence. The feasibility of the proposed method is demonstrated by simulation in Mobotsim.

References

Hendrix R., Owan P., Garbini J., and Devasia S., 2019. Context-Specific Separable Gesture Selection for Control of a Robotic Manufacturing Assistant. IFAC PapersOnline, 51(34), pp. 89-96.

Dewi T., Nurmaini S., Risma P., Oktarina Y., and Roriz M., 2019, Inverse Kinematic Analysis of 4 DOF Pick and Place Arm Robot Manipulator using Fuzzy Logic Controller, IJECE, 10(2), pp. 1376-1386. doi:10.11591/ijece.v10i2.pp1376-1386.

Uchiyama N., Dewi T., and Sano S., 2014, Collision Avoidance Control for a Human-Operated Four Wheeled Mobile Robot, Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 228(13), pp. 2278-2284. https://doi.org/10.1177/0954406213518523.

Dewi T., Amperawan, Risma P., Oktarina Y., and Yudha D. A., 2020, Finger Cue for Mobile Robot Motion Control, Computer Engineering and Application Journal, 9(1), pp. 39-48. doi: 10.18495/COMENGAPP.V9I1.319.

Uchiyama N., Dewi T., Sano S., and Takahashi H., 2014, Swarm Robot Control for Human Services and Moving Rehabilitation by Sensor Fusion, Journal of Robotics, 2014(278659), 11 pages. https://doi.org/10.1155/2014/278659.

Oktarina Y., Dewi T., and Risma T., 2020, The Concept of Automatic Transport System Utilizing Weight Sensor, Computer Engineering and Application Journal, 9(2), pp. 155-163. doi:10.18495/COMENGAPP.V0I0.339

Dewi T., Risma P., Taqwa A., Rusdianasari, and Renaldi H., 2020, Experimental analysis on solar powered mobile robot as the prototype for environmentally friendly automated transportation, Proc. iCAST on Engineering Science, 24-25 Oct 2019, Bali: Indonesia, doi:10.1088/1742-6596/1450/1/012034.

Dewi T., Risma P., Oktarina Y., and Muslimin S., 2018, Visual Servoing Design and Control for Agriculture Robot; a Review, pp. 57-62, Proc. 2019 ICECOS, 2-4 Oct. 2018, Pangkal Pinang: Indonesia. doi: 10.1109/ICECOS.2018.8605209.

Dewi T., Risma P., and Oktarina Y., 2020, Fruit Sorting Robot based on Color and Size for an Agricultural Product Packaging System, Bulletin of Electrical Engineering, and Informatics (BEEI), 9(4), pp. 1438-1445. doi: 10.11591/eei.v9i4.2353.

Oktarina Y., Dewi T., Risma P., and Nawawi M., 2020, Tomato Harvesting Arm Robot Manipulator; a Pilot Project, Journal of Physics: Conference Series, 1500, p 012003, Proc. 3rd FIRST, Palembang: Indonesia.

Al Yahmedi A.S., and Fatmi M.A., 2016. Fuzzy Logic Based Navigation of Mobile Robots,” Intech, 6, pp. 111-133.

Nurmaini S., Tutuko B., Dewi K., Yuliza V., and Dewi T., 2017, Improving Posture Accuracy of Non-holonomic Mobile Robot system with Variable Universe of Discourse, TELKOMNIKA, 15(3). Pp. 1265-1279. doi: 10.12928/TELKOMNIKA.v15i3.6078.

Dewi T., Wijanarko Y., Risma P., and Oktarina Y., 2018, Fuzzy Logic Controller Design for Leader-Follower Robot Navigation, 5th Proc. EECSI, 5(1), pp. 298-303. 16-18 Oct 2018, Malang : Indonesia. doi:10.1109/EECSI.2018.8752696.

Dewi T., Risma P., and Oktarina Y., 2018, Fuzzy Logic Simulation as a Teaching-learning Media for Artificial Intelligence Class, Journal of Automation Mobile Robotics and Intelligent Systems, 12(3), pp. 3-9.doi: 10.14313/JAMRIS_3-2018/13

Dewi T., Oktarina Y., Risma P., and Kartini S., 2019, Desain Robot Pengikut Manusia Sederhana dengan Fuzzy Logic Controller, Proc. Annual Research Seminar (ARS), 5(1), pp. 12-16, 16 Nov 2019, Palembang: Indonesia.

Oktarina Y., Septiarini F., Dewi T., Risma P., and Nawawi M., 2019, Fuzzy-PID Controller Design of 4 DOF Industrial Arm Robot Manipulator, Computer Engineering and Application Journal, 8(2), pp. 123-136. doi: 10.18495/COMENGAPP.V8I2.300.

Dewi T., Sitompul C., Risma P., Oktarina Y., Jelista R., Mulyati M., 2019, Simulation Analysis of Formation Control Design of Leader-Follower Robot Using Fuzzy Logic Controller, Proc 2019 ICECOS, 2-3 Oct. 2019, Batam Island: Indonesia. doi:10.1109/ICECOS47637.2019.8984433.

Farooq U., Amar M., Asad M.U., Hanif A., and Saleh S.O., 2014. Design and Implementation of Neural Network of Based Controller for Mobile Robot Navigation in Unknown Environment. International Journal of Computer and Electrical Engineering, 6(2), pp. 83-89. doi:10.7763/IJCEE.2014.V6.799

Yudha H. M., Dewi T., Hasana N., Risma P., Oktarina, Y. Kartini S., 2019, Performance Comparison of Fuzzy Logic and Neural Network Design for Mobile Robot Navigation, Proc. 2019 ICECOS, 2-3 Oct. 2019, Batam Island: Indonesia. doi:10.1109/ICECOS47637.2019.8984577

Larasati N., Dewi T., and Oktarina Y., 2017. Object Following Design for a Mobile Robot using Neural Network. Computer Engineering and Application Journal, 6(1), pp. 5-14. doi:10.18495/COMENGAPP.V6I1.189.

Dewi T., Risma P., Oktarina Y., and Roseno M.T., 2017. Neural Network Design for a Mobile Robot Navigation a Case Study. 4th Proc. EECSI. 23-24 Sep. 2017. Yogyakarta: Indonesia. doi:10.1109/EECSI.2017.8239168.

Dewi T., Risma P., Oktarina Y., and Nawawi M., 2017. Neural Network Simulation for Obstacle Avoidance and Wall Follower Robot as a Helping Tool for Teaching-Learning Process in Classroom. 1st Proc. ICEAT, 29-30 November 2017, Mataram: Indonesia. doi:10.1088/1757-899X/403/1/012043

Risma P., Dewi T., Oktarina Y., and Wijanarko Y., 2019. Neural Network Controller Application on a Visual based Object Tracking and Following Robot. Computer Engineering and Application Journal, 8(1). doi: 10.18495/COMENGAPP.V8I1.280.

Kuswad S., Natasya A., Tamara M.N., and Adji I., 2018. Optimasi Sistem Navigasi Robot Bencana Dengan Algoritma Bug Dan Jaringan Syaraf Tiruan. JTIIK, . 5(5), pp. 635-642.

Savage J., Muoz S., Matamoros M., and Osorio R., 2013 Obstacle Avoidance Behaviors for Mobile Robots Using Genetic Algorithms and Recurrent Neural Networks. IFAC, 46(24), pp. 141-146.

Published
2020-06-30
How to Cite
Kesuma, P. R., Dewi, T., Kusumanto, R., Risma, P., & Oktarina, Y. (2020). Desain Fuzzy Logic Controller Untuk Pengendali Pergerakan Mobile Manipulator. Journal of Applied Smart Electrical Network and Systems, 1(01), 12-18. https://doi.org/10.52158/jasens.v1i01.43