Network Planning optimization of Long Term Evolution Radio Transmitter Using Taguchi’s Method

S. Rahmatia, Ali Akbar Tanjung, Octarina Nur Samijayani, W. N. Tanjung
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引用次数: 2

Abstract

Long Term Evolution (LTE) is newest technology for mobile telecommunication, it has some advantages that are high data rates, low Iatency and using all Internet Protocols (IP) network architecture. The implementation of LTE requires high cost and takes a long time therefore we need network planning to reduce the risks, some calculations, simulations and optimization is done in network planning. We use software named Atoll as tool for network planning and use Taguchi’s Method (TM) as optimization technique. The objective of this paper is to obtain the optimal parameters value of azimuth, mechanical downtilt, antenna gain and antenna height. The result is the responses that determine the most influential factors due to result depending on their delta value. From this paper, the most influential factor based on SN ratio is antenna height which have delta value 9.47. Then we implement the optimized LTE radio transmitter parameters into LTE network design. The result gave more 12.2% coverage area by signal level, increase average signal received power by 0.69 dBm and increase the coverage area by throughput downlink by 1.5%.
基于田口法的长程演化无线电发射机网络规划优化
长期演进(LTE)技术是移动通信的最新技术,它具有数据传输速率高、时延低和使用全互联网协议(IP)网络架构等优点。LTE的实现成本高,耗时长,因此需要进行网络规划来降低风险,在网络规划中进行了一些计算、仿真和优化。我们使用名为Atoll的软件作为网络规划工具,并使用田口法(TM)作为优化技术。本文的目标是获得方位、机械下倾角、天线增益和天线高度的最优参数值。结果是根据其delta值确定结果中最具影响力的因素的响应。从本文来看,基于SN比的影响最大的因素是天线高度,其δ值为9.47。然后将优化后的LTE无线发射机参数应用到LTE网络设计中。结果表明,按信号电平计算的覆盖面积增加了12.2%,平均接收信号功率增加了0.69 dBm,吞吐量下行覆盖面积增加了1.5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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