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首页> 外文期刊>IEICE Transactions on Communications >Interference Management for LTE Femtocell System Using Power Control
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Interference Management for LTE Femtocell System Using Power Control

机译:使用功率控制的LTE Femtocell系统的干扰管理

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Since femtocells are deployed in a two tier cellular network, along with macrocells operating on the same channel, interference between them limits the overall performance of the network. Without any control of the femtocell operation, pre-deployed macrocells will experience severe interference, which is not consistent with the current femtocell deployment principle. In this paper, to resolve this problem, a mathematical framework that optimizes the downlink transmission power of femtocells is formulated. Based on the formulated framework, we derive the optimal value of the transmission power so that the transmission affects the pre-deployed macroceU's downlink performance at a minimum scale, while providing sufficient Quality of Service (QoS) to its served users. Furthermore, to reduce the complexity of the power control process, we propose an Interference Estimation scheme which approximates the interference levels between different pairs of macrocell and femtocell base stations. The feasibility of this estimation process is shown by deriving the lower and upper bound of the estimation error. Through simulations, compared to no power control, we show that our proposed method provides a 17.64% reduction in macro user's outage probability, 5.9 dB decrease of interference on cell-edge macrocell users, and a 1.41 times increase in average user throughput.
机译:由于毫微微小区与在同一信道上运行的宏小区一起部署在两层蜂窝网络中,因此它们之间的干扰限制了网络的整体性能。如果没有对毫微微小区操作的任何控制,则预先部署的宏小区将遭受严重的干扰,这与当前的毫微微小区部署原理不符。在本文中,为了解决这个问题,提出了一个优化毫微微小区的下行链路传输功率的数学框架。基于制定的框架,我们得出最佳的传输功率值,以便传输以最小的规模影响预部署的macroceU的下行链路性能,同时为其服务的用户提供足够的服务质量(QoS)。此外,为了降低功率控制过程的复杂性,我们提出了一种干扰估计方案,该方案近似于宏小区和毫微微小区基站的不同对之间的干扰电平。通过推导估计误差的下限和上限来显示此估计过程的可行性。通过仿真,与无功率控制相比,我们证明了我们提出的方法可将宏用户的中断概率降低17.64%,对小区边缘宏小区用户的干扰降低5.9 dB,平均用户吞吐量提高1.41倍。

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