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ANALYSIS AND DESIGN OF SMART ELECTROMAGNETIC STRUCTURES

机译:智能电磁结构的分析与设计

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摘要

Use of ferroelectric materials to improve antenna performance is an area of active research. Applying an electric field across a ferroelectric used as the dielectric in an antenna enables tuning the antenna performance. Ferroelectrics also have coupled electromechanical behavior due to which it is sensitive to mechanical strains and fluctuations in ambient temperature. Use of ferroelectrics in antenna structures, especially those subject to mechanical and thermal loads, requires knowledge of the phenomenological relationship between the ferroelectric properties of interest (especially dielectric permittivity) and the external physical variables, viz. electric field(s), mechanical strains and temperature. To this end, a phenomenological model of ferroelectric materials based on the Devonshire thermodynamic theory is presented. This model is then used to obtain a relationship expressing the dependence of the dielectric permittivity on the mechanical strain, applied electric field and ambient temperature. The relationship is compared with published experimental data and other models in literature. Subsequently, a relationship expressing the dependence of antenna performance on those physical quantities is described.
机译:使用铁电材料来改善天线性能是积极研究的领域。在用作天线中电介质的铁电体上施加电场可调节天线性能。铁电体还具有耦合的机电行为,因此,它对机械应变和环境温度波动敏感。在天线结构(尤其是承受机械和热负荷的天线结构)中使用铁电体,需要了解相关铁电特性(尤其是介电常数)与外部物理变量之间的现象学关系。电场,机械应变和温度。为此,提出了基于德文郡热力学理论的铁电材料现象学模型。然后,使用该模型来获得表示介电常数对机械应变,施加的电场和环境温度的依赖性的关系。将该关系与已发表的实验数据和文献中的其他模型进行了比较。随后,描述表达天线性能对那些物理量的依赖性的关系。

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