Design Of An Internet Of Things Based Electromagnetic Robotic Arm For Pick And Place Applications
In this generation, industrial robotic arm has been widely used in fields separated from the human society. It is limited because it is not possible to manipulate and interact with people. To depict robotics technology with human-machine interaction and wireless communication, interactivity is possi...
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Penerbit Akademia Baru
2020
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my.utem.eprints.248812021-03-10T12:29:56Z http://eprints.utem.edu.my/id/eprint/24881/ Design Of An Internet Of Things Based Electromagnetic Robotic Arm For Pick And Place Applications Maslan, Mohd Nazmin Sudianto, Agus Laman, Edward Mat Ali, Mahasan Abdullah, Lokman Zamri, Ruzaidi Syed Mohamed, Muhammad Syafiq Zainon, Maslan Noorazizi, Mohd Samsuddin In this generation, industrial robotic arm has been widely used in fields separated from the human society. It is limited because it is not possible to manipulate and interact with people. To depict robotics technology with human-machine interaction and wireless communication, interactivity is possible in real time with virtual objects that makes some other technology needs to be developed which maximizes robot use to assist people with their work in an efficient way. The main objective of this project is to develop and design an interface of Internet of Things controller for robotic arm. The main purpose of making this interface is to remotely control the robotic arm using internet facilities. The robotic arm has four servo motor where all servo motor are assigned with single pulse width modulation which can be control separately. Furthermore, the NodeMCU board was used to receive signal from the Blynk app that authorizes monitoring and controlling the movement of the robotic arm to perform pick and place operations. Meanwhile, the results of this study are verified through manual test implementation. Two type of manual test were done for this project that is pick and place application and time delay to send the data. The pick and place operation of the robotic arm was observed to see whether the robotic arm capable to conduct the instruction precisely to move within their desired angular displacement degree. The time delay to send the data shows that the respond at each of the servo motor to move 180 degrees with no load was influenced by the Wi-Fi signal strength at particular places. Hence, this prototype of the robotic arm showed that the operational to control the robotic arm to perform pick and place application using internet facilities was successful. Penerbit Akademia Baru 2020-06 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/24881/2/MJCSMV2_N1_P12_20.PDF Maslan, Mohd Nazmin and Sudianto, Agus and Laman, Edward and Mat Ali, Mahasan and Abdullah, Lokman and Zamri, Ruzaidi and Syed Mohamed, Muhammad Syafiq and Zainon, Maslan and Noorazizi, Mohd Samsuddin (2020) Design Of An Internet Of Things Based Electromagnetic Robotic Arm For Pick And Place Applications. Malaysian Journal on Composite Science and Manufacturing, 2 (1). pp. 12-20. ISSN 2716-6945 http://www.akademiabaru.com/doc/MJCSMV2_N1_P12_20.pdf 10.37934/mjcsm.2.1.1220 |
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In this generation, industrial robotic arm has been widely used in fields separated from the human society. It is limited because it is not possible to manipulate and interact with people. To depict robotics technology with human-machine interaction and wireless communication, interactivity is possible in real time with virtual objects that makes some other technology needs to be developed which maximizes robot use to assist people with their work in an efficient way. The main objective of this project is to develop and design an interface of Internet of Things controller for robotic arm. The main purpose of making this interface is to remotely control the robotic arm using internet facilities. The robotic arm has four servo motor where all servo motor are assigned with single pulse width modulation which can be control separately. Furthermore, the NodeMCU board was used to receive signal from the Blynk app that
authorizes monitoring and controlling the movement of the robotic arm to perform pick and place operations. Meanwhile, the results of this study are verified through manual test implementation. Two type of manual test were done for this project that is pick and place application and time delay to send the data. The pick and place
operation of the robotic arm was observed to see whether the robotic arm capable to conduct the instruction precisely to move within their desired angular displacement degree. The time delay to send the data shows that the respond at each of the servo motor to move 180 degrees with no load was influenced by the Wi-Fi signal strength at particular places. Hence, this prototype of the robotic arm showed that the operational to control the robotic arm to perform pick and place application using internet facilities was successful. |
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Article |
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Maslan, Mohd Nazmin Sudianto, Agus Laman, Edward Mat Ali, Mahasan Abdullah, Lokman Zamri, Ruzaidi Syed Mohamed, Muhammad Syafiq Zainon, Maslan Noorazizi, Mohd Samsuddin |
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Maslan, Mohd Nazmin Sudianto, Agus Laman, Edward Mat Ali, Mahasan Abdullah, Lokman Zamri, Ruzaidi Syed Mohamed, Muhammad Syafiq Zainon, Maslan Noorazizi, Mohd Samsuddin Design Of An Internet Of Things Based Electromagnetic Robotic Arm For Pick And Place Applications |
author_facet |
Maslan, Mohd Nazmin Sudianto, Agus Laman, Edward Mat Ali, Mahasan Abdullah, Lokman Zamri, Ruzaidi Syed Mohamed, Muhammad Syafiq Zainon, Maslan Noorazizi, Mohd Samsuddin |
author_sort |
Maslan, Mohd Nazmin |
title |
Design Of An Internet Of Things Based Electromagnetic Robotic Arm For Pick And Place Applications |
title_short |
Design Of An Internet Of Things Based Electromagnetic Robotic Arm For Pick And Place Applications |
title_full |
Design Of An Internet Of Things Based Electromagnetic Robotic Arm For Pick And Place Applications |
title_fullStr |
Design Of An Internet Of Things Based Electromagnetic Robotic Arm For Pick And Place Applications |
title_full_unstemmed |
Design Of An Internet Of Things Based Electromagnetic Robotic Arm For Pick And Place Applications |
title_sort |
design of an internet of things based electromagnetic robotic arm for pick and place applications |
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Penerbit Akademia Baru |
publishDate |
2020 |
url |
http://eprints.utem.edu.my/id/eprint/24881/2/MJCSMV2_N1_P12_20.PDF http://eprints.utem.edu.my/id/eprint/24881/ http://www.akademiabaru.com/doc/MJCSMV2_N1_P12_20.pdf |
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