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CMOS circuits generating arbitrary chaos by using pulsewidthmodulation techniques

机译:使用脉宽调制技术产生任意混沌的CMOS电路

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This paper describes CMOS circuits generating arbitrary chaotic signals. The proposed circuits implement discrete-time continuous-state dynamics by means of analog processing in a time domain. Arbitrary nonlinear transformation functions can be generated by using the conversion from an analog voltage to a pulsewidth modulation (PWM) signal; for the transformation, time-domain nonlinear voltage waveforms having the same shape as the inverse function of the desired transformation function are used. The circuit simultaneously outputs both voltage and PWM signals following the desired dynamics. If the nonlinear voltage waveforms are generated by digital circuits and D/A converters with low-pass filters, high flexibility and controllability are obtained. Moreover, the nonlinear dynamics can be changed in real time. Common waveform generators can be shared by many independent chaos generator circuits. Because the proposed circuits mainly consist of capacitors, switches, and CMOS logic gates, they are suitable for scaled VLSI implementation. CMOS circuits generating arbitrary chaos with up to third-order nonlinearity and two variables have been designed and fabricated using a 0.4 μm CMOS process. Chaos has been successfully generated by using tent, logistic, and Henon maps, and a chaotic neuron model
机译:本文描述了产生任意混沌信号的CMOS电路。所提出的电路通过时域中的模拟处理来实现离散时间连续状态动态。通过使用从模拟电压到脉宽调制(PWM)信号的转换,可以生成任意的非线性变换函数。对于该变换,使用具有与期望的变换函数的反函数相同的形状的时域非线性电压波形。该电路根据所需的动态特性同时输出电压和PWM信号。如果非线性电压波形是由数字电路和带有低通滤波器的D / A转换器生成的,则可以获得很高的灵活性和可控制性。而且,非线性动力学可以实时改变。常见的波形发生器可以由许多独立的混沌发生器电路共享。由于建议的电路主要由电容器,开关和CMOS逻辑门组成,因此它们适用于按比例缩放的VLSI实现。 CMOS电路使用0.4μmCMOS工艺设计和制造了具有高达三阶非线性和两个变量的任意混沌。通过使用帐篷图,逻辑图和亨农图以及混沌神经元模型已成功生成了混沌

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