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Macrocells-User Protected Interference-Aware Transmit Power Control for LTE-A Heterogeneous Networks

机译:宏小区 - 用户保护的干扰感知发射功率控制,用于LTE-A异构网络

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摘要

In Long Term Evolution-Advanced (LTE-A) heterogeneous networks (HetNets), small cells are deployed within the coverage area of macrocells having 1 : 1 frequency reuse. The coexistence of small cells and a macrocell in the same frequency band poses cross-tier interference which causes outage for macrocells users and/or small cell users. To address this problem, in this paper, we propose two algorithms that consider the received interference level at the evolved NodeB (eNB) while allocating transmit power to the users. In the proposed algorithm, the transmit power of all users is updated according to the target and instantaneous signal-to-noise-plus-interference ratio (SINR) condition as long as the effective received interference at the serving eNB is below the given threshold. Otherwise, if the effective received interference at the eNB is greater than the threshold, the transmit power of small cell users is gradually reduced in order to guarantee the target SINR for all macrocells users, aiming for zero-outage for macrocells users at the cost of an increased outage ratio for small cell users. Further, in the second algorithm, the transmit power of all users is additionally controlled by the power headroom report that considers the current channel condition while updating the transmit power which results in the outage ratio decreasing for small cell users. The extensive system-level simulations show significant improvements in the average throughput and outage ratio when compared with the conventional transmit power control technique.
机译:在长期演进 - 先进的(LTE-A)异构网络(Hetnets)中,小区部署在具有1:1频率重用的宏小区的覆盖区域内。小小区和相同频带中的宏小区的共存摆在交叉层干扰,这导致宏小区用户和/或小小区用户的中断。为了解决这个问题,在本文中,我们提出了两种考虑在向用户分配发射功率的演进节点B(eNB)处的接收的干扰电平的算法。在所提出的算法中,只要在服务eNB处的有效接收的干扰低于给定阈值,就根据目标和瞬时信号对噪声 - 加密比(SINR)条件更新所有用户的发射功率。否则,如果eNB处的有效接收的干扰大于阈值,则逐渐减少小小区用户的发射功率,以便保证所有宏小区用户的目标SINR,针对宏小区用户以成本为准小细胞使用者的中断比例增加。此外,在第二算法中,所有用户的发射功率另外由考虑当前信道条件的电源余量报告控制,同时更新发射功率,从而导致小小区用户的中断比率降低。与传统发射功率控制技术相比,广泛的系统级模拟显示平均产量和中断比率的显着改进。

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