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Hasil Pencarian

Ditemukan 5260 dokumen yang sesuai dengan query
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Sciavicco, L
New York : McGraw-Hill, 1996
629.892 SCI m
Buku Teks  Universitas Indonesia Library
cover
Sciavicco, Lorenzo
New York: McGraw-Hill, c1996
629.892 Sci m
Buku Teks  Universitas Indonesia Library
cover
Tokhi, M. Osman
"The ever increasing utilisation of robotic manipulators for various applications in recent years has been motivated by the requirements and demands of industrial automation. Among these, attention is focused more towards flexible manipulators, due to various advantages they offer compared to their rigid counterparts. Flexural dynamics have constituted the main research challenge in modelling and control of such systems; research activities have accordingly concentrated on the development of methodologies to cope with this."
London: Institution of Engineering and Technology, 2008
e20451662
eBooks  Universitas Indonesia Library
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Lewis, F. L.
West Sussex: Taylor and Francis, 1999
629.892 LEW n
Buku Teks  Universitas Indonesia Library
cover
"Robot motion control 2011 presents very recent results in robot motion and control. Forty short papers have been chosen from those presented at the sixth International Workshop on Robot Motion and Control held in Poland in June 2011. The authors of these papers have been carefully selected and represent leading institutions in this field. The following recent developments are discussed, design of trajectory planning schemes for holonomic and nonholonomic systems with optimization of energy, torque limitations and other factors, new control algorithms for industrial robots, nonholonomic systems and legged robots, and different applications of robotic systems in industry and everyday life, like medicine, education, entertainment and others, multiagent systems consisting of mobile and flying robots with their applications.
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London : Springer, 2012
e20421066
eBooks  Universitas Indonesia Library
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Silva, Clarence W. de
Boca Raton: CRC Press, 2009
629.8 DES m
Buku Teks  Universitas Indonesia Library
cover
Spong, Mark W.
New York: John Wiley & Sons, 1989
629.892 SPO r
Buku Teks  Universitas Indonesia Library
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Yunike Levina
"Dalam kehidupan sehari-hari tak jarang ditemukan pekerjaan yang membutuhkan lebih dari satu orang dalam penyelesaiannya. Konsep tersebut diadaptasikan ke penyelesaian tugas kompleks untuk sistem otonomi dengan lebih dari satu mobile robot atau disebut juga mobile robot kooperatif. Dalam mengakomodasi sistem mobile robot kooperatif yang baik, beberapa aspek perlu diperhatikan terutama komunikasi antar anggotanya.Pada skripsi ini, mobile robot akan dirancang dengan menggunakan trayektori linier dan sinusoidal sebelum antar robotnya dikomunikasikan untuk bertukar informasi.
Sistem meggunakan protokol komunikasi nirkabel internet socket sebagai media pertukaran informasi antar robotnya sehingga pengujian terhadap komunikasi juga perlu dilakukan.Berdasarkan hasil pengujian dapat diketahui bahwa setiap mobile robot mempunyai karakteristik dan pergerakan yang berbeda satu sama lain tetapi masih dapat dikendalikan dengan menggunakan nilai pengendali yang sama. Hasil pengujian juga menunjukkan bahwa komunikasi dengan internet socket sudah dapat digunakan dalam aplikasi mobile robot komunikatif.

In daily life, a lot of tasks need more than one people to complete because of it complexity. The concept of using more hand to complete a complex problems is adapted in autonomous system that used more than one robot which often defined as cooperative robot. In order to accommodate a good cooperative mobile robot system, interrobot communication should be carefully designed.In this script, the mobile robot would be design while using linear and sinusoidal trajectory to test whether before being communicated between each other.
The system using wireless internet socket communication protocol as the information exchange's media between the robots, therefore an experiment need to be done to test the communication as well.Accordintg to experiment done, the result show that each robot has its own characteristic and movement dyamics. However, the differences are still tolerable and still can be controlled using the same controllers'constans.The experiment also show that internet socket communication is proven to be able implemented in communicative mobile robots.
"
Depok: Fakultas Teknik Universitas Indonesia, 2017
S68356
UI - Skripsi Membership  Universitas Indonesia Library
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Wildan Firdaus
"Mobile robot dalam aplikasinya sering dimanfaatkan dalam membantu kehidupan manusia. Tetapi mobile robot yang bekerja sendiri tidak bisa diandalkan dalam mengerjakan pekerjaan yang lebih kompleks, maka diperlukan robot yang saling berkoordinasi satu sama lain. Dalam koordinasi robot ini diperlukan kendali formasi. Kendali formasi ini dapat direalisasikan dengan beberapa metode, salah satunya adalah dengan leader-follower. Namun sebelumnya, untuk memastikan multi-mobile robot dapat bekerja dengan baik perlu dipastikan setiap mobile robot dapat mengikuti trayektori yang diperintahkan. Untuk itu pertama kali dilakukan pengujian kemampuan mobile robot dalam mengikuti trayektori garis lurus, sinusoidal, dan triangular. Selanjutnya dilakukan perancangan sistem kendali dengan metode leader-follower untuk mempertahankan formasi berdasarkan kecepatan leader dan jarak relatif follower terhadap leader. Sistem lalu diuji dengan simulasi dan perangkat keras menggunakan ROS (Robot Operating System) dan Gazebo. Hasil eksperimen menunjukkan bahwa mobile robot dapat mengikuti skenario trayektori yang diperintahkan dengan kesalahan mutlak rata-rata maksimal adalah ±5.681 cm dan mampu mempertahankan formasi ketika leader mengikuti trayektori yang diinginkan dengan kesalahan mutlak rata-rata jarak antar-mobile robot adalah ±7.327 cm.

Mobile robots are often used to help human life. But mobile robots that work alone cannot be relied upon to do more complex work, so robots are needed to coordinate with each other. In coordination this robot requires formation control. This formation control can be realized by several methods, one of which is leader-follower. But beforehand, to ensure multi-mobile robots can work properly it is necessary to ensure that each mobile robot can follow the trajectory that is ordered. For the first, one mobile robot is tested to follow a straight line, sinusoidal, and triangular trajectory. Then the control system with leader-follower method is designed to maintain formation based on leader speed and relative distance of the follower to the leader. The system is then tested with simulations and hardware using ROS (Robot Operating System) and Gazebo. The experimental results show that the mobile robot can follow the desired trajectory with the maximum mean absolute error of ±5.681 cm and is able to maintain the formation as the leader follows the desired trajectory with mean absolute error of ±7.327 cm"
Depok: Fakultas Teknik Universitas Indonesia, 2019
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
"The book introduces the main problems, key methods, and milestone results in singularity analysis of mechanisms. It provides a comprehensive and concise overview of basic results while also addressing a few advanced topics of singularities in mechanical systems and robots."
Switzerland: Springer Nature, 2019
e20509784
eBooks  Universitas Indonesia Library
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