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- W2108327418 abstract "Robots are often used in industry to handle flexible objects, such as frames, beams, thin plates, rubber tubes, leather goods and composite materials. Moving long flexible objects in a desired path and also precise positioning and orienting the objects need a collaborative action between two robot arms. Most of the earlier studies have dealt with manipulation of rigid objects and only a few have focused on the collaborative manipulators handling flexible objects. Such studies on handling of flexible objects generally used finite element method or assumed mode method for deriving the dynamic model of the flexible objects.These approximation methods require more number of sensors to feedback the vibration measurements or require an observer. Unlike in the earlier studies, this thesis concerns with development of a dynamic model of the flexible object in partial differential equation (PDE) form and design of a robust control strategy for collaborative manipulation of the flexible objects by two rigid robot arms. Two planar rigid manipulators each with three links and revolute joints handling a flexible object is considered during the model development. Kinematic and dynamic equations of the flexible object are derived without using any approximation techniques. The resulting dynamic equation of the flexible object together with the manipulator dynamic equations form the combined dynamic model of the system. The developed complete system of dynamic equations is described by the PDE’s having rigid as well as flexible parameters coupled together. Such a coupled system must be controlled without using any formof approximation techniques and this is accomplished using the singular perturbation approach. By utilizing this technique, slow and fast subsystems are identified in two different time scales and controller is designed for each subsystem. The key issue in developing a control algorithm is that, it should be robust against uncertain parameters of the manipulators and the flexible object and it should also achieve the exponential convergence. Hence, for the slow subsystem, sliding mode control algorithm is developed and for the fast subsystem, a simple feedback control algorithm is designed. In general, usage of singularperturbation technique necessitates exponential stability of the slow and fast subsystems, which is evaluated by satisfying the Tikhnov’s theorem. Hence, the exponential stability analysis for both the subsystems is performed. Simulation results are presented to validatethe composite control scheme. As a further consideration in the improvement of control law for the slow subsystem,two modified control algorithms are suggested. The first one focused on the avoidance of velocity signal measurement which is useful to eliminate the need of velocity sensors and the second controller aims at avoiding the complex regressor in the control law. The capability of those controllers is illustrated through simulation studies. The extension of earlier analysis has been carried out by developing the complete system of dynamic equations injoint space." @default.
- W2108327418 created "2016-06-24" @default.
- W2108327418 creator A5045841076 @default.
- W2108327418 date "2011-03-24" @default.
- W2108327418 modified "2023-09-27" @default.
- W2108327418 title "Modeling and Robust Control of Two Collaborative Robot Manipulators Handling a Flexibile Object" @default.
- W2108327418 cites W1487127700 @default.
- W2108327418 cites W1489224028 @default.
- W2108327418 cites W1509235676 @default.
- W2108327418 cites W1515224583 @default.
- W2108327418 cites W1527296550 @default.
- W2108327418 cites W1554842388 @default.
- W2108327418 cites W1561521774 @default.
- W2108327418 cites W1567373924 @default.
- W2108327418 cites W1583199597 @default.
- W2108327418 cites W1591175830 @default.
- W2108327418 cites W1604036603 @default.
- W2108327418 cites W1859961468 @default.
- W2108327418 cites W1866588859 @default.
- W2108327418 cites W1900034233 @default.
- W2108327418 cites W190584206 @default.
- W2108327418 cites W1913694502 @default.
- W2108327418 cites W1967006815 @default.
- W2108327418 cites W1969301002 @default.
- W2108327418 cites W1970412008 @default.
- W2108327418 cites W1976088699 @default.
- W2108327418 cites W1978656445 @default.
- W2108327418 cites W1981174120 @default.
- W2108327418 cites W1989101546 @default.
- W2108327418 cites W1994284060 @default.
- W2108327418 cites W2003900106 @default.
- W2108327418 cites W2004366941 @default.
- W2108327418 cites W2009178724 @default.
- W2108327418 cites W2010740413 @default.
- W2108327418 cites W2013239800 @default.
- W2108327418 cites W2016958754 @default.
- W2108327418 cites W2019955665 @default.
- W2108327418 cites W2023549590 @default.
- W2108327418 cites W2024004648 @default.
- W2108327418 cites W2031389269 @default.
- W2108327418 cites W2039907488 @default.
- W2108327418 cites W2045617928 @default.
- W2108327418 cites W2056822071 @default.
- W2108327418 cites W2058344149 @default.
- W2108327418 cites W2061099305 @default.
- W2108327418 cites W2062361291 @default.
- W2108327418 cites W2065312260 @default.
- W2108327418 cites W2066156410 @default.
- W2108327418 cites W2067733968 @default.
- W2108327418 cites W2070771142 @default.
- W2108327418 cites W2072611450 @default.
- W2108327418 cites W2076220135 @default.
- W2108327418 cites W2083483041 @default.
- W2108327418 cites W2091727113 @default.
- W2108327418 cites W2092453501 @default.
- W2108327418 cites W2095008336 @default.
- W2108327418 cites W2095215871 @default.
- W2108327418 cites W2099003264 @default.
- W2108327418 cites W2099031560 @default.
- W2108327418 cites W2099073992 @default.
- W2108327418 cites W2100538751 @default.
- W2108327418 cites W2100861624 @default.
- W2108327418 cites W2101033410 @default.
- W2108327418 cites W2102451716 @default.
- W2108327418 cites W2105030558 @default.
- W2108327418 cites W2105999763 @default.
- W2108327418 cites W2106296284 @default.
- W2108327418 cites W2107221565 @default.
- W2108327418 cites W2109067716 @default.
- W2108327418 cites W2110971906 @default.
- W2108327418 cites W2114945409 @default.
- W2108327418 cites W2120212450 @default.
- W2108327418 cites W2122109895 @default.
- W2108327418 cites W2122433679 @default.
- W2108327418 cites W2122739526 @default.
- W2108327418 cites W2124473425 @default.
- W2108327418 cites W2124555411 @default.
- W2108327418 cites W2126628059 @default.
- W2108327418 cites W2126877763 @default.
- W2108327418 cites W2127443809 @default.
- W2108327418 cites W2128647364 @default.
- W2108327418 cites W2128671915 @default.
- W2108327418 cites W2130446590 @default.
- W2108327418 cites W2130913425 @default.
- W2108327418 cites W2135859062 @default.
- W2108327418 cites W2139954670 @default.
- W2108327418 cites W2142452493 @default.
- W2108327418 cites W2149941095 @default.
- W2108327418 cites W2154041731 @default.
- W2108327418 cites W2156227212 @default.
- W2108327418 cites W2157065490 @default.
- W2108327418 cites W2157577511 @default.
- W2108327418 cites W2160090212 @default.
- W2108327418 cites W2161088867 @default.
- W2108327418 cites W2164393460 @default.
- W2108327418 cites W2167339603 @default.
- W2108327418 cites W2170139439 @default.
- W2108327418 cites W2171900491 @default.
- W2108327418 cites W2728824830 @default.
- W2108327418 cites W3022840316 @default.