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LabVIEW based HP memristor simulator with hardware connectivity for real time circuit operation

机译:基于LabVIEW的HP忆阻器仿真器,具有硬件连接功能,可实现实时电路操作

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Memristor has emerged as fourth fundamental element in electronics. However, all the characteristics and functionalities of a memristor are yet to be understood. Main restriction behind wide spread research on this is lack of availability of a physical memristor. This paper presents an easy way to implement memristor simulator using LabVIEW, a powerful virtual instrumentation platform. Here ideal HP memristor model is implemented. Input signal is taken from a physical function generator. It is interfaced with the LabVIEW using an analog to digital converter (ADC) module. Mathematical model of the memristor is implemented virtually in LabView. Output is shown in Digital Storage Oscilloscope (DSO) which is interfaced with LabVIEW using a Digital to Analog converter (DAC) module. Using this setup, a pinched hysteresis loop in Voltage - Current (V - I) characteristics curve which is the signature of a memristor is observed. Shrinkage of loop area with the increment of input frequency is also been observed which concludes success full implementation of the model. Other Input-output parameters are plotted using waveform graph block in software interface. LabViewgraphical coding is used for all the necessary programmes to implement the model. Although, here ideal HP memristor model is implemented, it can be easily extended to any other memristor models.
机译:忆阻器已成为电子领域的第四大基本要素。但是,忆阻器的所有特性和功能仍有待了解。对此进行广泛研究的主要限制是缺乏物理忆阻器。本文介绍了使用功能强大的虚拟仪器平台LabVIEW实现忆阻器仿真器的简便方法。在这里实现了理想的HP忆阻器模型。输入信号来自物理函数发生器。它使用模数转换器(ADC)模块与LabVIEW连接。忆阻器的数学模型实际上是在LabView中实现的。输出显示在数字存储示波器(DSO)中,该示波器使用数模转换器(DAC)模块与LabVIEW相连。使用此设置,可以观察到电压-电流(V-I)特性曲线中的收缩磁滞回线,这是忆阻器的特征。还观察到环路面积随输入频率的增加而缩小,从而得出该模型的完整实施成功的结论。使用软件界面中的波形图块可以绘制其他输入输出参数。 LabViewgraphical编码用于实现模型的所有必需程序。尽管在这里实现了理想的HP忆阻器模型,但可以轻松地将其扩展到任何其他忆阻器模型。

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