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Channel reallocation for reducing power consumption in femtocell mobile networks

机译:信道重新分配以减少毫微微小区移动网络中的功耗

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Future mobile networks are known to deploy a two-tier architecture of macrocell - femtocell [1]. In the two-tier architecture, femtocell downlink channels can cause strong co-channel interference to downlink transmission of macrocell users (MUs) which use the same frequency. The co-channel downlink interference to the MU might cause the MU's QoS degradation. To maintain the QoS of the MU's connection, the serving macro base station (MBS) has to increase the transmission power of the macrocell downlink. The power increment will also cause more co-channel interference to other MUs of the neighbor MBSs thus results in increasing downlink transmission power of the macrocell subsystem. In this paper, we analyze the co-channel downlink interference and then propose downlink channel reallocation schemes, denoted as MBS-sensing and CFAP-sensing schemes, in order to reduce the power consumption of the macrocell subsystem. Simulation results prove that using channel reallocation schemes provide much better downlink power consumption efficiency than the case when the channel reallocation is not deployed. In general, the CFAP-sensing scheme has better performance than the MBS-sensing scheme. However, when femtocells have long coverage radius, the MBS-sensing scheme is the better solution because it is less complex and has similar performance.
机译:已知未来的移动网络将部署宏蜂窝的两层体系结构-毫微微蜂窝[1]。在两层体系结构中,毫微微小区下行链路信道可能会对使用相同频率的宏小区用户(MU)的下行链路传输造成强烈的同信道干扰。对MU的同信道下行链路干扰可能会导致MU的QoS下降。为了维持MU连接的QoS,服务宏基站(MBS)必须增加宏小区下行链路的传输功率。功率增量还将导致对相邻MBS的其他MU的更多的同信道干扰,因此导致宏小区子系统的下行链路传输功率增加。在本文中,我们分析了同信道下行链路干扰,然后提出了下行信道重新分配方案,分别称为MBS感知和CFAP感知方案,以减少宏小区子系统的功耗。仿真结果证明,与未部署信道重新分配的情况相比,使用信道重新分配方案可提供更好的下行链路功耗效率。通常,CFAP传感方案的性能优于MBS传感方案。但是,当毫微微小区具有长覆盖半径时,MBS感应方案是更好的解决方案,因为它不那么复杂并且具有相似的性能。

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