شماره ركورد كنفرانس
3723
عنوان مقاله
كنترل مد لغزشي براي مكانيزم شش درجه آزادي استورات
عنوان به زبان ديگر
Position control of six-DOF Stewart mechanism using the sliding mode control
پديدآورندگان
شيخ احمدي سهيل soheil.sheikhahmadi@gmail.com دانشگاه تبريز; , رحماني رضائيه آرش arash.rahmani@uut.ac.ir دانشگاه صنعتي اروميه;
تعداد صفحه
15
كليدواژه
Stewart Mechanism , Sliding Mode Control , the Principle of Virtual Work , Chattering
سال انتشار
1396
عنوان كنفرانس
دومين كنفرانس بين المللي در مهندسي برق
زبان مدرك
انگليسي
چكيده فارسي
In this paper, we investigated the sliding mode controller for six degrees of freedom (6-DOF) Stewart mechanism. The design of mechanical systems in order to move loads precisely and with high accuracy is of the most important subjects in robotics. Nowadays, the use of skilled robotic arms has a many different applications, however in all the applications there are important tips in the designing including simple structure, optimized energy consumption, obtaining high speed and acceleration for the final executer, simple implementation of controlling law, and the ability of system to following the path in the future, adequately. In the current paper, kinematic, dynamic, and controlling a parallel mechanism based on Stewart platform, have been investigated. For the dynamic of Stewart robot, the method of virtual work principle is used, which is more accurate and has less computational volume compared to the other methods. The sliding mode control is a nonlinear controlling method, which ensures the control strategy against uncertainties. In this method, stabilities are achieved by keeping the system states on the sliding surface. Results of the simulation are also indicating that this controller is able to maintain its stability against uncertainties, perfectly, and the final executer follows the final path as well.
چكيده لاتين
In this paper, we investigated the sliding mode controller for six degrees of freedom (6-DOF) Stewart mechanism. The design of mechanical systems in order to move loads precisely and with high accuracy is of the most important subjects in robotics. Nowadays, the use of skilled robotic arms has a many different applications, however in all the applications there are important tips in the designing including simple structure, optimized energy consumption, obtaining high speed and acceleration for the final executer, simple implementation of controlling law, and the ability of system to following the path in the future, adequately. In the current paper, kinematic, dynamic, and controlling a parallel mechanism based on Stewart platform, have been investigated. For the dynamic of Stewart robot, the method of virtual work principle is used, which is more accurate and has less computational volume compared to the other methods. The sliding mode control is a nonlinear controlling method, which ensures the control strategy against uncertainties. In this method, stabilities are achieved by keeping the system states on the sliding surface. Results of the simulation are also indicating that this controller is able to maintain its stability against uncertainties, perfectly, and the final executer follows the final path as well.
كشور
ايران
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