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A General Chaotic Circuit Design and Hardware Implementation via the Inductance Integrators

机译:通过电感集成商的一般混沌电路设计和硬件实现

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This paper presents a scheme for the modified chaotic circuits based on inductance integration. In view of the fact that the DC resistance of an inductor in the circuit cannot be ignored, this way of constructing the circuits is provided that can eliminate its influence on the integral circuits. By means of cascading an inverting adder circuit and inductance integral circuit, the output signal of the integral circuit is fed back to the inverting adder circuit, and its additive term is artificially added to match the actual inductance integrated circuit to achieve integral circuit based on the actual inductor which can offset the effect of its DC resistance. In order to verify the generality of the design, the process of designing Lorenz chaotic circuit is given and its attractors can also be observed from the oscilloscope.
机译:本文介绍了基于电感集成的改进的混沌电路的方案。鉴于电路中电感器的直流电阻不能忽略,提供了这种构建电路的方式,这可以消除其对整体电路的影响。借助于级联反相加法器电路和电感整体电路,整体电路的输出信号被反馈回反相加法器电路,并且其附加术语是人工添加的,以匹配实际电感集成电路以实现基于的整体电路实际电感器可以抵消其直流电阻的效果。为了验证设计的一般性,给出了设计Lorenz混沌电路的过程,并且还可以从示波器观察其吸引子。

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