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Statistical interference description in 4G mobile communications networks

机译:4G移动通信网络中的统计推理描述

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Routing multiple signals is a capital goal for an operator. For that, network's generations' architectures are continuously reviewed in order to overcome various encountered challenges. Efforts remain however limited despite notable introduced enhancements. Operators must guarantee sufficient protection for every terminal even when multiple signals are simultaneously routed. The offered quality in each case will be indicated to see how the solution becomes difficult when cell's size goes shorter. Unfortunately, we will show how various added signals appear jointly with those useful ones. These added and unwanted parts define interference and affect needed signals. Quality manifests a decrease when customers move from wide and clearer space to a narrower one. This situation characterizes particularly urban contexts i.e. cities. In response to these challenges, technicians try to enhance the established solutions giving a better Quality of Service (QoS). From one mobile network's generation to another, cell's radius becomes smaller. Recently, we hope to approach punctual sites as previewed in D2D communications. Operators look to provide their customers satisfaction. They aim mainly increasing the offered data rates. The aim of this paper is to verify that the received power in radio mobile communications follows Rayleigh distribution. The rest of this paper is organized as follows. Section II will recall the data rate enhancements. Interference problem is described in second mobile network's generation up to fourth's one in section III. Section IV gives simulation results showing a perfect correspondence between theoretical and practiced approaches. Finally, the last section concludes the paper.
机译:路由多个信号是操作员的资本目标。为此,不断审查网络的几代架构,以克服各种遇到的挑战。尽管有显着的引入增强,但努力仍然有限。即使同时路由多个信号,运营商必须保证对每个终端的充分保护。每种情况下提供的质量将被指示,以便在单元格的尺寸更短时,了解解决方案如何变得困难。不幸的是,我们将展示各种添加的信号如何与这些有用的信号共同出现。这些添加和不需要的部分定义干扰并影响所需的信号。当客户从宽阔的空间移动到较窄的空间时,质量会减少。这种情况特别是特别是城市背景。城市。为了应对这些挑战,技术人员试图加强既定的解决方案,提供更好的服务质量(QoS)。从一个移动网络的生成到另一个移动网络,细胞的半径变小。最近,我们希望在D2D通信中接近预览的准时网站。操作员希望为客户提供满意度。他们的目标主要增加提供的数据速率。本文的目的是验证无线电移动通信的接收功率跟随瑞利分布。本文的其余部分安排如下。第二节将回顾数据速率增强。干扰问题在第二部分中的第二个移动网络的一代中描述了第III中的第四个。第四节给出了仿真结果,显示了理论和实践方法之间的完美对应。最后,最后一节结束了论文。

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