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NB-DOPED BARIUM TITANATE: CONCENTRATION-PROPERTIES RELATIONS

机译:NB掺杂的钛酸钡:浓度-特性关系

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Nb doped barium titanate (BT) experiences unique phenomena over a range of dopant concentrations. One important phenomenon is the resisth ity behavior as a function of donor concentration. The role of the grains and the grain boundaries in this system is not fully established yet. There are diverse opinions on this subject, since this system is usually only in partial equilibrium and hence very complex. We examine the system using Impedance Spectroscopy (IS). Two new amalysis methods for IS based on evolutionary programming techniques, which are inspired by biological evolution, have been developed in our lab. Those evolutionary programming techniques are called Genetic Programming (GP) and Genetic Algorithm (GA). This is an approach to solve (or in the case of GA suggest solution for) such ill-posed inverse problems. By implementation and improvement of the use of those techniques for analyzing IS results, we believe that the role of the grains and the grain boundaries can be separated and the physical processes occur can be analyzed.
机译:Nb掺杂的钛酸钡(BT)在一定范围的掺杂剂浓度下会经历独特的现象。一个重要的现象是电阻率行为随供体浓度的变化而变化。晶粒和晶界在该系统中的作用尚未完全确立。由于该系统通常仅处于部分平衡状态,因此非常复杂,因此对此问题有不同的意见。我们使用阻抗谱(IS)检查系统。在我们的实验室中,开发了两种基于进化编程技术的IS的新分析方法,这些方法是受生物进化启发的。这些进化编程技术称为遗传编程(GP)和遗传算法(GA)。这是一种解决此类不适定逆问题(或在GA的情况下建议解决方案)的方法。通过实施和改进使用这些技术来分析IS结果的方法,我们认为可以分离晶粒的作用和晶界,并且可以分析发生的物理过程。

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