论文标题

在两个基于VO2的振荡器系统中,谐波同步的热耦合和效应

Thermal coupling and effect of subharmonic synchronization in a system of two VO2 based oscillators

论文作者

Velichko, Andrei, Belyaev, Maksim, Putrolaynen, Vadim, Perminov, Valentin, Pergament, Alexander

论文摘要

我们探索基于二氧化钒开关设备的振荡神经网络(ONN)的原型。研究中的模型系统代表基于热耦合VO2开关的两个振荡器。数值模拟表明,耦合的有效动作半径RTC均取决于切换过程中释放的总能量和平均功率。在实验和数值上证明,温度变化DT几乎与释放的功率峰同步开始,T耦合揭示了自己的频率约为10 kHz。对于研究的开关结构配置,RTC值在4到45 mkm的范围内变化,具体取决于外部电路电容C和电阻RI,但是从实际角度来看,RI的变化更有希望。在“弱”耦合的情况下,同步伴随着吸引效应和主光谱谐波宽度的减小。在“强”耦合的情况下,效果的数量增加,同步可能会对亚肝素发生,从而导致两个振荡器的多级稳定同步。提出了一种用于同步效率和亚谐波比率计算的晚期算法。结果表明,在两个振荡器中,领先的是主频率较高,此外,观察到频率稳定效应。同样,在强烈的热耦合的情况下,振荡存在的供应电流参数的极限扩大了约10%。获得的结果具有通用特征,并在ONN中打开了一种新型的耦合,即T耦合,可以轻松从2D到3D集成。亚谐波同步的影响有望在分类和模式识别中应用。

We explore a prototype of an oscillatory neural network (ONN) based on vanadium dioxide switching devices. The model system under study represents two oscillators based on thermally coupled VO2 switches. Numerical simulation shows that the effective action radius RTC of coupling depends both on the total energy released during switching and on the average power. It is experimentally and numerically proved that the temperature change dT commences almost synchronously with the released power peak and T-coupling reveals itself up to a frequency of about 10 kHz. For the studied switching structure configuration, the RTC value varies over a wide range from 4 to 45 mkm, depending on the external circuit capacitance C and resistance Ri, but the variation of Ri is more promising from the practical viewpoint. In the case of a "weak" coupling, synchronization is accompanied by attraction effect and decrease of the main spectra harmonics width. In the case of a "strong" coupling, the number of effects increases, synchronization can occur on subharmonics resulting in multilevel stable synchronization of two oscillators. An advanced algorithm for synchronization efficiency and subharmonic ratio calculation is proposed. It is shown that of the two oscillators the leading one is that with a higher main frequency, and, in addition, the frequency stabilization effect is observed. Also, in the case of a strong thermal coupling, the limit of the supply current parameters, for which the oscillations exist, expands by ~ 10 %. The obtained results have a universal character and open up a new kind of coupling in ONNs, namely, T-coupling, which allows for easy transition from 2D to 3D integration. The effect of subharmonic synchronization hold promise for application in classification and pattern recognition.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源