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A Study of Radio Zone Length of Dual-Polarized Omnidirectional Antennas Mounted on Rooftop for Personal Handy-Phone System

机译:安装在屋顶上的个人手持电话系统双极化全向天线的无线电区域长度的研究

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This paper proposes a dual-polarized omnidirectional antenna for base-station antennas that are mounted on the rooftops of buildings. The antenna suppresses the degradation in the received-signal level due to the inclination of mobile antennas in the personal handy-phone system (PHS). The proposed polarization-diversity antenna is comprised of a dielectric-loaded slotted-cylinder antenna for horizontally polarized waves and a conventional collinear array antenna for vertically polarized waves in a height-diversity configuration. The structure of the proposed antenna and its fundamental characteristics, such as the input impedance and radiation pattern, are shown. The change in the radio zone length (RZL) due to the inclination angle of the mobile antenna is measured to estimate the improvement offered by the proposed antenna in an urban area. It is shown that the RZLs of the collinear antennas in line-of-sight (LOS) environments are decreased by 73% when the mobile antenna is inclined at 90 $^{circ}$, whereas the proposed polarization-diversity antenna restrains the degradation to approximately 20%, regardless of the inclination angle without downtilt and from 20% to 40% for a 15$^{circ}$ downtilt. The RZLs of the collinear tilt antennas in non-LOS (NLOS) environments are below approximately 20%, compared to those of the collinear tilt antennas for the LOS route. We show that the RZLs in the NLOS environments are short compared to those for the LOS environments in microcell systems such as PHS with a high-elevation base station, even when the polarization-diversity technique is applied to the base station.
机译:本文提出了一种双极化全向天线,用于安装在建筑物屋顶上的基站天线。天线抑制了由于个人手持电话系统(PHS)中的移动天线的倾斜而导致的接收信号电平的下降。所提出的极化分集天线由用于水平极化波的电介质加载的开槽圆柱天线和用于垂直极化波的传统共线阵列天线组成,该天线在高度分集配置中。显示了所建议天线的结构及其基本特性,例如输入阻抗和辐射方向图。测量由于移动天线的倾斜角度引起的无线电区域长度(RZL)的变化,以估计拟议天线在市区中提供的改进。结果表明,当移动天线倾斜90°时,共线天线在视线(LOS)环境中的RZL降低了73%,而所提出的极化分集天线则抑制了退化不管倾斜角是什么角度而没有下倾角的情况下,倾斜角度都可从大约20%增至大约20%;对于15°下倾角的倾斜角度,则为20%至40%。与用于LOS路线的共线倾斜天线相比,非LOS(NLOS)环境中的共线倾斜天线的RZL低于大约20%。我们显示,即使将极化分集技术应用于基站,NLOS环境中的RZL短于微蜂窝系统(如带有高海拔基站的PHS)中的LOS环境中的RZL。

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