Angular power distribution and mean effective gain of mobile antenna in different propagation environments
نویسندگان
چکیده
Abstract − We measured the elevation angle distribution and cross-polarization power ratio of the incident power at the mobile station in different radio propagation environments at 2.15 GHz frequency. A novel measurement technique was utilized, based on a wideband channel sounder and a spherical dualpolarized antenna array at the receiver. Data was collected along over 9 km of continuous measurement routes, both indoor and outdoor. Our results show that in NLOS situations the power distribution in elevation has a shape of a double-sided exponential function, with different slopes on the negative and positive sides of the peak. The slopes and the peak elevation angle depend on the environment and base station antenna height. The cross-polarization power ratio varied within 6.6 and 11.4 dB, being lowest for indoor, and highest for urban microcell environments. We applied the experimental data for analysis of the mean effective gain (MEG) of several mobile handset antenna configurations, with and without user’s head. The obtained MEG values varied from approximately −5 dBi in free space to less than −11 dBi beside the head model. These values are considerably lower than what is typically used in system specifications. The result shows that considering only the maximum gain or total efficiency of the antenna is not enough to describe its performance in practical operating conditions. For most antennas the environment type has little effect on the MEG, but clear differences exist between antennas. The effect of user’s head on the MEG depends on the antenna type, and on which side of the head the user holds the handset.
منابع مشابه
ANGULAR SIGNAL DISTRIBUTION AND CROSS-POLARIZATION POWER RATIO SEEN BY A MOBILE RECEIVER AT 2.15 GHz
In mobile radio reception, signals typically arrive at the receiver antenna from a wide range of directions due to multipath propagation. This can be described by a direction-of-arrival (DoA) distribution of the propagation environment. If the DoA distribution is known, the Doppler spectrum and the autocorrelation function can be directly computed [1]. Furthermore, handset antenna performance c...
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عنوان ژورنال:
- IEEE Trans. Vehicular Technology
دوره 51 شماره
صفحات -
تاریخ انتشار 2002