scholarly journals Dagu RS003B75 Chassis Mobile Robot Platform sebagai Purwarupa MINION Mobile Mines & Intelligent Remote Detonator Robot

2021 ◽  
Vol 7 (2) ◽  
pp. 120-133
Author(s):  
Aditya Kurniawan ◽  
Kholilatul Wardani

Dilihat dari jenis alutsista dan jumlah komponen peralatan pertahanan, Matra Darat Republik Indonesia memiliki komposisi 61% armored vehicles, 15% towed artillery, 14% tanks, 6.5% self-propelled guns dan sisanya adalah rocket projectors. Dilihat dari jenis alutsista yang dimiliki oleh matra darat, keseluruhanya adalah jenis alutsista yang sudah digunakan sejak jaman perang dunia kedua, sehingga untuk alutsista yang memiliki teknologi kendali jarak jauh atau otonom masih belum terlihat dalam data tersebut. Oleh karen itu pengembangan dalam alutsista jenis ini adalah hal strategis untuk dilakukan. Robot mobile kendali jarak jauh yang semi otonom MINION (Mobile mINes Intelligent remOte detoNator) adalah sebuah mobile robot yang dikendalikan jarak jauh dengan jaringan telekomunikasi nirkabel yang berfungsi sebagai mobile mines atau komponen alutsista berbahan peledak yang memiliki daya gempur massif. Robot mobile ini diharapkan menjadi sebuah prototipe alutsista kendali jarak jauh yang akan menambah daya gempur Angkatan Darat Republik Indonesia. Hasil dari penelitian ini diantaranya adalah sebuah prototipe mobile robot (MINION) dengan level TKT 5 dengan kesimpulan pengembangan yaitu 1) Material chassis yang digunakan untuk Minion adalah anodized aluminium yang tahan korosif berbentuk braket modular dengan tebal 2mm, 10mm pitch grid dengan lubang 4mm. 2) roda menggunakan material rubber dan didesain memiliki individual damper / shock absorber pada setiap roda dengan ukuran roda 120 mm x 60 mm untuk meningkatkan traksi pada tanah jenis entisol dan inceptisol 3) catu daya menggunakan baterai lithium polymer 5000mAh tipe 2S 1P 20C dengan kapasitas discharge current sebesar 100A yang akan di charge oleh Polycrystalline solar panel 20wp yang mampu melakukan pengisian baterai Minion sebesar 20% per hari. Judging from the type of defense equipment and the number of components of defense equipment, TNI has a composition of 61% armored vehicles, 15% towed artillery, 14% tanks, 6.5% self-propelled guns and the rest are rocket projectors. Types of defense equipment owned by the ground forces, all of them are types of defense equipment that have been used since the era of the second world war, thus equipment that has remote control or autonomous technology is still not visible in the data. Therefore, the development of this type of defense equipment is strategic and crucial. The semi-autonomous remote-controlled mobile robot MINION (Mobile Mines Intelligent Remote Detonator) is a remote-controlled mobile robot with a wireless telecommunications network that functions as mobile mines or components of explosive defense equipment that have massive firepower. This mobile robot is expected to become a prototype of a remote control defense system that will increase the fighting power of TNI. The results of this study include a prototype mobile robot (MINION) with TKT level 5 with development conclusions as follows 1) Chassis material used for Minion is a modular bracket corrosive resistant anodized aluminum with 2mm thick, 10mm pitch grid and 4mm holes. 2) the wheels are rubber material and designed to have individual dampers / shock absorbers on each wheel with a wheel size of 120 mm x 60 mm to increase traction on entisol and inceptisol soils 3) 5000mAh lithium polymer battery type 2S 1P 20C with discharge capacity current of 100A is used for power supply system charged by a 20wp Polycrystalline solar panel capable of charging the Minion battery by 20% per day.

2014 ◽  
Vol 532 ◽  
pp. 170-174 ◽  
Author(s):  
Fang Liu ◽  
Chang Qing Shen ◽  
Yong Bin Liu ◽  
Fan Rang Kong

This paper depicts the system design of a basketball-playing robot named BPR. BPR is a wheeled mobile robot equipped with a 3-DOF manipulator and a mechanical claw. The robot can grasp one basketball and then dunk under the players remote control. In this paper, the hardware design including the mechanical structure and the electrical system are introduced firstly. Then, the kinematic analysis of the manipulator is proposed to decide the manipulators posture control. Finally, simulation of the manipulator is implemented in ADAMS to verify the design efficiency of posture planning. BPR has been exhibited in a science museum in China and it is well welcomed by the audiences.


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