PurposeThis study presents a novel optimizationalgorithm which optimize the controller parameters of a nonlinear ball balancer system. Proposed approach is successfully balancing a ball over a rectangular plate under...
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PurposeThis study presents a novel optimizationalgorithm which optimize the controller parameters of a nonlinear ball balancer system. Proposed approach is successfully balancing a ball over a rectangular plate under the presence of continuous *** develop the proposed computational technique, Giza pyramid construction algorithm is improved by introducing "Command Phase" and "Co-operate Phase". This improvement is responsible for the development of proposed HGPCTLBO (Hybrid Giza Pyramid Construction Teaching Learning basedoptimization) algorithm. The developed algorithm is optimizing the unconstrained parameters of proportional integral and derivative controller, which controls the nonlinear vibrations of rectangular plate and achieves proper balancing of ball over this rectangular plate. This scheme is capable of handling the unknown but bounded disturbances/vibrations with comfort. Initially, the mathematical modelling of balancer system is obtained using a two degree of freedom ball balancer system under the presence of unknown but bounded *** Square Error (ISE), Integral of Absolute Error (IAE) and Integral of the Time weighted Absolute Error (ITAE) are used as control fitness functions. MATLAB/Simulink platform is used to demonstrate the simulation as well as real time results while proving the dominance of proposed work over the work available in literature.
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