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FPGA implementation of novel fractional-order chaotic systems with two equilibriums and no equilibrium and its adaptive sliding mode synchronization

机译:FPGA实施具有两种平衡的新型分数秩序混沌系统,没有平衡及其自适应滑模同步

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摘要

This paper introduces two novel fractional-order chaotic systems with cubic nonlinear resistor and investigates its adaptive sliding mode synchronization. Firstly the novel two equilibrium chaotic system with cubic nonlinear resistor (NCCNR) is derived and its dynamic properties are investigated. The fractional-order cubic nonlinear resistor system (FONCCNR) is then derived from the integer-order model and its stability and fractional-order bifurcation are discussed. Next a novel no-equilibrium chaotic cubic nonlinear resistor system (NECNR) is derived from NCCNR system. Dynamic properties of NECNR system are investigated. The fractional-order no equilibrium cubic nonlinear resistor system (FONECNR) is derived from NECNR. Stability and fractional-order bifurcation are investigated for the FONECNR system. The non-identical adaptive sliding mode synchronization of FONCCNR and FONECNR systems are achieved. Finally the proposed systems, adaptive control laws, sliding surfaces and adaptive controllers are implemented in FPGA.
机译:本文介绍了两种具有三次非线性电阻的小型分数秩序混沌系统,并研究了其自适应滑模同步。首先,推导出具有立方非线性电阻(NCCNR)的二种平衡混沌系统,并研究其动态性质。然后讨论了从整数阶模型导出了分数级立方非线性电阻系统(FONCCNR),并且讨论了其稳定性和分数级分叉。接下来,从NCCNR系统导出新的NO平衡混沌立方非线性电阻系统(NECNR)。研究了NECNR系统的动态特性。 Fractional-unser und No平衡立方非线性电阻系统(FONECNR)衍生自NECNR。针对FONECNR系统研究了稳定性和分数级分叉。实现了FONCCNR和FONECNR系统的非相同自适应滑模同步。最后,在FPGA中实现了所提出的系统,自适应控制法,滑动表面和自适应控制器。

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