倾斜天线对天线覆盖面积的影响分析4G LTE网络(以丁加勒区为例)

Rizal Aji Istantowi
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引用次数: 0

摘要

大城市的4G LTE网络已经普及。与此同时,在中小城市,4G LTE网络的分布并不均匀和最大化。本研究选择可变倾斜天线来覆盖区域,因为在使用天线从基站发送信息时。计算中现有基站在距离为200 m时的平均RSRP值(dBm)为-122.90 dBm,距离为500 m时的平均RSRP值为-136.79 dBm,距离为1000 m时的平均RSRP值为-147.30 dBm。同时,在距离为200 m时-108.22 dBm,距离为500 m时-121.81 dBm,距离为1000 m时-132.69 dBm的仿真中。计算中现有基站的覆盖面积值为5.29%,仿真中覆盖面积值为11.18%。在最优条件下,距离200 m时的平均RSRP值(dBm)为-80.13 dBm,距离500 m时的平均RSRP值为-94.03 dBm,距离1000 m时的平均RSRP值为-104.56 dBm。同时,在距离为200 m时仿真值为-98.09 dBm,距离为500 m时仿真值为-112.79 dBm,距离为1000 m时仿真值为-123.31 dBm。计算的覆盖面积为20.32%,模拟的覆盖面积为15.01%。目前,丁加勒克地区对基站的需求已达到68%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the Effect of Tilting Antenna on the Coverage Area of ??the 4G LTE Network (Case Study of Trenggalek District)
4G LTE networks in big cities are already well available. Meanwhile, on small to medium-sized cities, the 4G LTE network is not evenly distributed and maximized. This study chooses the variable tilting antenna to the coverage area, because in sending information from a base station using an antenna. The average RSRP value (dBm) of the existing base station in the calculation with a distance of 200 m is -122.90 dBm, a distance of 500 m is -136.79 dBm, and a distance of 1000 m -147.30 dBm. Meanwhile, in the simulation with a distance of 200 m of -108.22 dBm, a distance of 500 m of -121.81 dBm, and a distance of 1000 m of -132.69 dBm. The coverage area value of the existing base station in the calculation is 5.29%, while in the simulation it is 11.18%. The average RSRP value (dBm) at optimal conditions for calculations at a distance of 200 m is -80.13 dBm, at a distance of 500 m is -94.03 dBm and at a distance of 1000 m is -104.56 dBm. Meanwhile, the simulation at a distance of 200 m is -98.09 dBm, at a distance of 500 m is -112.79 dBm and at a distance of 1000 m is -123.31 dBm. The value of the coverage area for the calculation is 20.32%, while for the simulation it is 15.01%. The current need for base stations in Trenggalek District that has been met is 68%.
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