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Ditemukan 4621 dokumen yang sesuai dengan query
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Asfahl, C. Ray
New York: John Wiley & Sons, 1992
670.427 ASF r
Buku Teks  Universitas Indonesia Library
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Simons, Geoffrey L.
England: The National Computing Centre, 1980
629.862 Sim r
Buku Teks  Universitas Indonesia Library
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Morgan, Chris
Berlin: Springer-Verlag, 1984
629.892 Mor r
Buku Teks  Universitas Indonesia Library
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Lammineur, P.
Oxford: Pergamon Press, 1984
629.892 LAM i
Buku Teks  Universitas Indonesia Library
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Groover, Mikell P.
Englewood Cliffs, N.J.: Prentice-Hall, 1987
670.427 GRO a
Buku Teks  Universitas Indonesia Library
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Groover, Mikell P.
New Delhi: Prentice-Hall of India, 1996
670.427 GRO a
Buku Teks  Universitas Indonesia Library
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Hershey: IGI Global, 2012
629.892 SER
Buku Teks  Universitas Indonesia Library
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Koren, Yoram
New York: McGraw-Hill, 1983
670.427 KOR c (1)
Buku Teks  Universitas Indonesia Library
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"[Autonomous robots must carry out useful tasks all by themselves relying entirely on their own perceptions of their environment. The cognitive abilities required for autonomous action are largely independent of robot size, which makes mini robots attractive as artefacts for research, education and entertainment. Autonomous mini robots must be small enough for experimentation on a desktop or a small laboratory. They must be easy to carry and safe for interaction with humans. They must not be expensive. Mini robot designers have to work at the leading edge of technology so that their creations can carry out purposeful autonomic action under these constraints. Since 2001 researchers have met every two years for an international symposium to report on the advances achieved in Autonomous Mini Robots for Research and Edutainment (AMiRE). The AMiRE Symposium is a single track conference that offers ample opportunities for discussion and exchange of ideas. This volume contains the contributed papers of the 2011 AMiRE Symposium held from 23 to 25 May 2011 at Bielefeld University, Germany. The contributions in this volume represent the state-of-the-art of autonomous mini robots; they demonstrate what is currently technically feasible and show some of the applications for autonomous mini robots. , Autonomous robots must carry out useful tasks all by themselves relying entirely on their own perceptions of their environment. The cognitive abilities required for autonomous action are largely independent of robot size, which makes mini robots attractive as artefacts for research, education and entertainment. Autonomous mini robots must be small enough for experimentation on a desktop or a small laboratory. They must be easy to carry and safe for interaction with humans. They must not be expensive. Mini robot designers have to work at the leading edge of technology so that their creations can carry out purposeful autonomic action under these constraints. Since 2001 researchers have met every two years for an international symposium to report on the advances achieved in Autonomous Mini Robots for Research and Edutainment (AMiRE). The AMiRE Symposium is a single track conference that offers ample opportunities for discussion and exchange of ideas. This volume contains the contributed papers of the 2011 AMiRE Symposium held from 23 to 25 May 2011 at Bielefeld University, Germany. The contributions in this volume represent the state-of-the-art of autonomous mini robots; they demonstrate what is currently technically feasible and show some of the applications for autonomous mini robots. ]"
Berlin : [Springer, ], 2012
e20397756
eBooks  Universitas Indonesia Library
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Bagas Pratomo
"Lengan robot merupakan salah satu teknologi yang sangat penting bagi industri. Pada industri 4.0 ini, hampir setiap industri menggunakan tangan robot untuk mengotomasikan pekerjaannya. Sebelum tangan robot tersebut digunakan pada industri, diperlukan prototipe skala kecil agar membuat lengan robot tersebut mendapatkan gambaran pada hasil akhir yang akan diproduksi. Penelitian ini dilakukan untuk mengukur adanya sebuah error pada lengan robot skala kecil. Dalam penelitian ini, lengan robot skala kecil dibuat dengan cara percetakan 3D, yang lalu akan dirakit. Pengoprasian lengan robot ini dilakukan menggunakan servo motor yang diprogram melalui Arduino. Pengujian error lalu dilakukan pada lengan robot dengan cara mengukur perbedaan sudut yang telah dimasukan ke Arduino dengan sudut aktual yang didapatkan melalui foto. Foto tersebut lalu diproses dengan perangkat lunak ImageJ untuk mengetahui sudut aktual yang terjadi pada servo motor. Pengujian error pada servo motor dilakukan pada rentang 0 ̊ sampai 130 ̊ dengan servo motor yang lainnya tidak bergerak. Setelah eksperimen dilakukan, dapat dilihat bahwa servo motor memiliki error sebesar 0.94%.

Robotic arm is one of the most important technologies for industry. In industry 4.0, almost every industry uses robotic hands to automate their work. Before the robot arm is used in industry, a small-scale prototype is needed so that the robot arm maker can get an idea of the final product that will be produced. This study was conducted to measure the presence of an error in the small-scale robotic arm. In this study, a small-scale robotic arm is made by 3D printing, which will then be assembled. The operation of this robotic arm is carried out using a servo motor programmed via Arduino. Error testing is then carried out on the robot arm by measuring the difference in the angle that has been entered into the Arduino with the actual angle obtained through the photo. The photo is then processed with ImageJ software to determine the actual angle that occurs in the servo motor. Error testing on the servo motor is carried out in the range of 0 ̊ to 130 ̊ with the other servo motors not moving. After the experiment was conducted, it can be seen that the servo motor has an error of 0.94%.
"
Depok: Fakultas Teknik Universitas Indonesia, 2022
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UI - Skripsi Membership  Universitas Indonesia Library
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