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Interference Management using power control for uplink transmission in femtocell-macrocell cellular communication network

机译:用于毫微微小区 - 宏小区蜂窝通信网络中的上行链路传输功率控制的干扰管理

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Femtocell is a small cell of 10-30 meters radius deployed in the existing larger cell (macrocell) forming two-tier femtocell-macrocell cellular network. However, the deployment of femtocell into the existing macrocell cellular network is facing more complex interference problems. This paper focuses on interference management using power control methods for the uplink transmission of such two-tier cellular networks. Types of interferences considered in this paper are co-tier (femtocell-to-femtocell and macrocell-to-macrocell), cross-tier (femtocell-to-macrocell and macrocell-to-femtocell), and total interferences. This paper considers multi-cell scenario of cellular communication network consisting of three macrocell cellular networks in which each macrocell is deployed 10 femtocells. This paper analyzes one of three macrocells on the uplink transmission with the other two macrocells on downlink transmissions. All femtocells are on the same transmission conditions as its co-located macrocells. This paper observes one of ten uplink femtocells on the observed uplink macrocell. Through simulation, this paper firstly analyzes co-tier, cross-tier, and total interferences for the system without power control. The results of Signal to Interference plus Noise Ratio (SINR) in term of its Cumulative Distribution Function (CDF) for the system without power control are used as a baseline system. Then, this paper proposes the use of two power controls namely PC-1 and PC-2 in this paper which both power controls work based on the estimated current SINR. Both power control methods are also to make sure that the transmitting power of the users in the observed base stations (eNB/HeNB in 4G cellular network terminology) will not exceed maximum or minimum of its allowed transmitting power (uplink transmission case). The simulation has been carried out and the SINR results were collected and compared to baseline system. The simulation results show that PC-1 and PC-2 outperform the baseline system in terms of CDF of SINR.
机译:Femtocell是在现有的较大细胞(宏小区)中部署的10-30米半径的小电池,形成二层毫微微小区 - 宏小区蜂窝网络。然而,将毫微微小区部署到现有的宏小区蜂窝网络中面临更复杂的干扰问题。本文侧重于利用这种双层蜂窝网络的上行链路传输的功率控制方法的干扰管理。本文考虑的干扰类型是共同(Femtocell-to-Femtocell和Macrocell - 宏小区),交叉层(Femtocell到Macrocell和Macrocell - Femtocell)和总干扰。本文考虑了由三个宏小区蜂窝网络组成的蜂窝通信网络的多小区场景,其中每个宏小区部署10毫微微小区。本文在下行链路传输上分析了上行链路传输上的三个宏小区中的一个。所有毫微微蜂窝都与其共同定位的宏小区相同的传输条件。本文观察观察到的上行链路宏小区上的十个上行链路毫微微小区中的一个。通过仿真,本文首先分析了对系统的共同,交叉层和完全干扰而没有功率控制。在没有电源控制的系统累积分布函数(CDF)中,信号与干扰加噪声比(SINR)的结果用作基线系统。然后,本文提出了使用两个功率控制,即PC-1和PC-2,这篇文章中的功率控制都基于估计的电流SINR。这两种功率控制方法也确保了用户在观察到的基站的发射功率(ENB / HeNB的在4G蜂窝网络的术语)也不会超过最大或最小容许其发射功率(上行链路传输的情况下)的。已经进行了模拟,并将SINR结果与基线系统进行了比较。仿真结果表明,PC-1和PC-2在SINR的CDF方面优于基线系统。

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