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Soft Materials, Stretchable Mechanics, and Optimized Designs for Body-Wearable Compliant Antennas

机译:柔软的材料,可伸展力学,以及用于身体可穿戴的天线的优化设计

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摘要

Among the various methods to develop flexible wearable antennas, a serpentine, mesh structure has been a great interest because of its mechanical reliability upon applied strain. However, there is still a significant lack of design guidelines for the open-mesh concept that account for both material and electromagnetic (EM) properties of antennas. In this work, we introduce a comprehensive study of materials, mechanics, fabrication, and system integration for the development of stretchable dipole and patch antennas that have networks of two-dimensional serpentine patterns. A set of computational modeling and experimental validation of open-mesh structures provides the key design guidelines to offer the maximum mechanical stretchability and minimum effective moduli of wearable antennas. Integration of the thin-film antenna traces with various substrates captures the versatility of the deterministic fabrication and material transfer printing methods. The influence of antenna stretching on the EM properties, including return loss, electric and magnetic fields, and far-field radiation patterns, is investigated. EM characterization with mechanical stretching results in different properties of fabricated antennas. The simulation study of specific absorption rates shows a potential for safe applications of dipole and patch stretchable antennas on the human skin.
机译:在开发灵活的可穿戴天线的各种方法中,由于其在施加应变时的机械可靠性上,蛇形结构是一种很大的兴趣。然而,仍然存在显着缺乏设计指南的开放网眼概念,该概念考虑了天线的材料和电磁(EM)属性。在这项工作中,我们介绍了对具有二维蛇形图案网络的可拉伸偶极子和贴片天线的材料,力学,制造和系统集成的全面研究。开放网格结构的一组计算建模和实验验证提供了关键设计指南,以提供最大的机械拉伸性和可穿戴天线的最小有效模态。具有各种基板的薄膜天线迹线的整合捕获确定性制造和材料转印方法的多功能性。研究了天线伸展对EM性能的影响,包括回损损耗,电磁场和远场辐射图案。用机械拉伸的EM表征导致制造天线的不同性质。特定吸收率的仿真研究显示了偶极子和贴片伸展天线在人体皮肤上的安全应用的潜力。

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