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Fractional Order Memristor No Equilibrium Chaotic System with Its Adaptive Sliding Mode Synchronization and Genetically Optimized Fractional Order PID Synchronization

机译:具有自适应滑模同步和遗传优化分数阶PID同步的分数阶忆阻器无平衡混沌系统

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This paper introduces a fractional order memristor no equilibrium (FOMNE) chaotic system and investigates its adaptive sliding mode synchronization. Firstly the dynamic properties of the integer order memristor no equilibrium system are analyzed. The fractional order memristor no equilibrium system is then derived from the integer order model. Lyapunov exponents and bifurcation with fractional order are investigated. An adaptive sliding mode control algorithm is derived to globally synchronize the identical fractional order memristor systems and genetically optimized fractional order PID controllers are designed and used to synchronize the FOMNE systems. Finally the fractional order memristor no equilibrium system is realized using FPGA.
机译:本文介绍了分数阶忆阻器无平衡(FOMNE)混沌系统,并研究了其自适应滑模同步。首先分析了整数阶忆阻器无平衡系统的动力学特性。然后从整数阶模型导出分数阶忆阻器无平衡系统。研究了Lyapunov指数和分数阶分叉。推导了自适应滑模控制算法以全局同步相同的分数阶忆阻器系统,并设计了遗传优化的分数阶PID控制器,并将其用于同步FOMNE系统。最后,利用FPGA实现了分数阶忆阻器不平衡系统。

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