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Design and Analysis of Conformal Antenna for Future Public Safety Communications: Enabling Future Public Safety Communication Infrastructure

机译:未来公共安全通信保形天线的设计与分析:未来公共安全通信基础设施

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摘要

Future 4G wireless communication systems include, in their capabilities portfolio, emergency-specific needs, such as data support, broadband communication, and extremely high reliability. An emergency situation can be addressed with undoubtedly more chances of success if augmented information is enabled within the public safety communication novel capabilities. In this article, for a fully augmented information provision based on broadband transmission, a user-end (UE) communication-capabilities enhancement is addressed by deploying multiple antennas without compromising the portability and light weight of first-responder equipment. With this aim, we propose the design of a 4.9-GHz conformal antenna array at the rescuer side (integrated in a helmet) and evaluate its performance in terms of relative data rate gain. The conformal array design is based on traditional patch antennas that consider the need for deployment over an ellipsoidal surface. The antenna array is simulated and then built, and several parameter characterizations (bandwidth, radiation pattern, reflection coefficient, and MC) and measurements are undertaken to ensure the suitability of the design. Furthermore, an analysis of the specific absorption rate (SAR) is performed to guarantee that the exposure to electromagnetic fields is below the standardized levels.
机译:未来的4G无线通信系统包括在他们的能力中,包括特定于紧急特定需求,例如数据支持,宽带通信和极高的可靠性。如果在公共安全通信新颖功能中启用增强信息,则可以通过毫无疑问地解决了紧急情况。在本文中,对于基于宽带传输的全增强信息提供,通过在不影响第一响应器设备的便携性和重量的情况下部署多亿天线来寻址用户端(UE)通信能力增强。通过此目的,我们提出了在救援人员侧的4.9-GHz共形天线阵列(集成在头盔中)的设计,并在相对数据速率增益方面评估其性能。保形阵列设计基于传统的贴片天线,以考虑在椭圆形表面上部署的需要。模拟然后建造天线阵列,并进行了几种参数特征(带宽,辐射图案,反射系数和MC)和测量以确保设计的适用性。此外,进行对特定吸收率(SAR)的分析以确保暴露于电磁场低于标准化水平。

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