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In-Phase Versus Out-of-Phase Distributed Antenna Systems for Wireless Handheld Devices

机译:无线手持设备的同相与异相分布式天线系统

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摘要

Hand loading usually degrades the performance of handset antennas. With the aim of providing a solution robust to the human presence, this paper discloses a distributed antenna system fed in-phase capable of mitigating undesirable hand loading effects while providing enhanced performance. The solution consists of a passive array of two resonant coplanar monopole antennas inspired in the Hilbert geometry. Input impedances of both monopoles are combined into a single input–output port through two transmission lines featuring equal phases. This combination allows not only improving the performance of the radiating system with respect to that attained by a single monopole antenna, but also providing a symmetric solution immune to the finger location. The solution is compared with a single monopole and a distributed antenna system fed out-of-phase. Simulated and measured results demonstrate that the proposed design is capable of providing operation in the communication standards GSM850/GSM900 as well as in the UHF part of the LTE-Advanced while maintaining the same electromagnetic performance with certain independence of the finger location.
机译:手动加载通常会降低手机天线的性能。为了提供一种对人类存在的鲁棒性的解决方案,本文公开了一种同相馈电的分布式天线系统,该系统能够减轻不良的手负载影响,同时提供增强的性能。该解决方案由两个以希尔伯特几何学为灵感的谐振共面单极天线的无源阵列组成。两个单极的输入阻抗通过两条具有相同相位的传输线组合成一个输入-输出端口。这种组合不仅允许相对于单个单极天线所获得的性能提高辐射系统的性能,而且还可以提供不受手指位置影响的对称解决方案。将该解决方案与单相单极天线和异相馈电的分布式天线系统进行了比较。仿真和测量结果表明,所提出的设计能够在GSM850 / GSM900通信标准以及LTE-Advanced的UHF部分中提供操作,同时保持相同的电磁性能,并且手指位置具有一定的独立性。

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