Title :
Design and Implementation of Grid Multiwing Hyperchaotic Lorenz System Family via Switching Control and Constructing Super-Heteroclinic Loops
Author :
Yu, Simin ; Lu, Jinhu ; Yu, Xinghuo ; Chen, Guanrong
Author_Institution :
Coll. of Autom., Guangdong Univ. of Technol., Guangzhou, China
fDate :
5/1/2012 12:00:00 AM
Abstract :
This paper initiates a systematic methodology for generating various grid multiwing hyperchaotic attractors by switching control and constructing super-heteroclinic loops from the piecewise linear hyperchaotic Lorenz system family. By linearizing the three-dimensional generalized Lorenz system family at their two symmetric equilibria and then introducing the state feedback, two fundamental four-dimensional linear systems are obtained. Moreover, a super-heteroclinic loop is constructed to connect all equilibria of the above two fundamental four-dimensional linear systems via switching control. Under some suitable conditions, various grid multiwing hyperchaotic attractors from the real world applications can be generated. Furthermore, a module-based circuit design approach is developed for realizing the designed piecewise linear grid multiwing hyperchaotic Lorenz and Chen attractors. The experimental observations validate the proposed systematic methodology for grid multiwing hyperchaotic attractors generation. Our theoretical analysis, numerical simulations and circuit implementation together show the effectiveness and universality of the proposed systematic methodology.
Keywords :
chaos; network analysis; state feedback; Chen attractor; four-dimensional linear system; grid multiwing hyperchaotic Lorenz system family; grid multiwing hyperchaotic attractor; module-based circuit design; piecewise linear hyperchaotic Lorenz system; state feedback; super-heteroclinic loops; switching control; symmetric equilibria; three-dimensional generalized Lorenz system; Chaos; Eigenvalues and eigenfunctions; Linear systems; Manifolds; Steady-state; Switches; Circuit implementation; grid multiwing hyperchaotic attractor; piecewise linear hyperchaotic Lorenz system family; super-heteroclinic loop; switching control;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2011.2180429