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Application of the maximum entropy production principle to electrical systems

机译:最大熵产生原理在电气系统中的应用

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For a simple class of electrical systems, the principle of the maximum entropy production rate (MaxEP) is discussed. First, we compare the MaxEP principle and the principle of the minimum entropy production rate and illustrate the superiority of the MaxEP principle for the example of two parallel constant resistors. Secondly, we show that the Steenbeck principle for the electric arc as well as the ohmic contact behaviour of space-charge limited conductors follow from the MaxEP principle. In line with work by Dewar, the investigations seem to suggest that the MaxEP principle can also be applied to systems far from equilibrium, provided appropriate information is available that enters the constraints of the optimization problem. Finally, we apply the MaxEP principle to a mesoscopic system and show that the universal conductance quantum, e(2)/h, of a one-dimensional ballistic conductor can be estimated.
机译:对于一类简单的电气系统,讨论了最大熵生产率(MaxEP)的原理。首先,我们比较了MaxEP原理和最小熵产生率的原理,并以两个并联的恒定电阻器为例,说明了MaxEP原理的优越性。其次,我们表明电弧的Steenbeck原理以及受空间电荷限制的导体的欧姆接触行为都遵循MaxEP原理。与杜瓦(Dewar)的工作相一致,研究似乎表明,只要有适当的信息输入优化问题的约束条件,MaxEP原理也可以应用于远离平衡的系统。最后,我们将MaxEP原理应用于介观系统,并表明可以估计一维弹道导体的普遍电导量子e(2)/ h。

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