Faiza Zaamoune, Imad Eddine Tinedert, Kashif Ali Abro, Muhammad Faizan
ABSTRACT This study presents a new three‐dimensional chaotic system characterized by a solitary unstable equilibrium point and introduces the direct derivative integration (DDI) approach for attaining accurate control of multistable dynamics. The direct derivative integration (DDI) method expands the 3D seed system into a six‐dimensional framework by incorporating its derivatives, maintaining the inherent chaotic behavior, but facilitating ongoing offset enhancement to create a structured lattice of coexisting attractors. A physical implementation of the system was executed using a breadboard prototype to validate the theoretical study, with findings corroborated by circuit simulations. The results indicate that the suggested method successfully produces an unlimited array of coexisting attractors organized in a structured grid, underscoring the practical viability and dependability of the direct derivative integration (DDI) approach for the creation of chaotic systems with manageable multistability.