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Impact of Base Station Site, Antenna Configuration and Power Control in LTE Network

机译:LTE网络中基站站点,天线配置和功率控制的影响

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This study analyzed the impact of spatial distribution of APs/Base stations, antenna configuration and power control in a dense populated area like Owerri (Nigeria), using link planner network simulator and Google-Earth Software. High-effective data capacity at hotspots in conjunction with bandwidth and the predicted power at the receiver for LTE network are required to capture some number of users and provide high data rates over the Wi-Fi interface. The data rates are influenced by the terrain, which loses throughput due to delays, path loss and interference. The hotspot range which determines the number of users, that can associate, is limited by the power of the client and the access point. The variables that affect link performance, such as: band, region, equipment, antenna, height, terrain and obstructions towards providing enhanced capacity and coverage are measured by the link planner. The characteristics like gain, beam, width and frequency, for evaluation of results in terms of coverage and capacity for different antenna configurations, receive-Power, terrain, bandwidth and distances are also observed respectively. The results show that pathloss increases or decreases with these factors between nodes. The strategy to place the transmitter in the highest position has also proven better performance for implementation of the LTE system and its long run operation.
机译:这项研究使用链接计划器网络模拟器和Google-Earth软件分析了人口稠密地区(如Owerri(尼日利亚))中AP /基站的空间分布,天线配置和功率控制的影响。为了吸引一定数量的用户并通过Wi-Fi接口提供高数据速率,需要热点的高效数据容量,带宽以及LTE网络接收器的预计功率。数据速率受地形的影响,由于延迟,路径损耗和干扰,地形会损失吞吐量。决定可以关联的用户数量的热点范围受客户端和访问点的能力限制。影响链路性能的变量,例如:频段,区域,设备,天线,高度,地形和阻碍提供增强容量和覆盖范围的障碍物,由链路规划器测量。还分别观察了诸如增益,波束,宽度和频率之类的特性,以便根据不同天线配置的覆盖范围和容量,接收功率,地形,带宽和距离来评估结果。结果表明,路径损耗随节点之间的这些因素而增加或减少。事实证明,将发射机置于最高位置的策略对于LTE系统的实现及其长期运行具有更好的性能。

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