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Dynamic femtocell resource allocation for managing inter-tier interference in downlink of heterogeneous networks

机译:动态毫微微小区资源分配,用于管理异构网络下行链路中的层间干扰

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摘要

This study investigates the downlink resource allocation problem in orthogonal frequency division multiple access heterogeneous networks consisting of macrocells and femtocells sharing the same frequency band. The focus is to devise optimised policies for femtocells' access to the shared spectrum, in terms of femtocell transmissions, in order to maximise femto-users (FUEs) sum data rate while ensuring that certain level of quality of service (QoS) for the macro-cell users in the vicinity of femtocells is provided. The optimal solution to this problem is obtained by employing the well-known dual Lagrangian method and the optimal femtocell transmit power and resource allocation solution is derived in detail. However, the optimal solution introduces high computational complexity. To this end, a heuristic solution to the problem is proposed. The algorithms to implement both optimal and efficient suboptimal schemes in a practical system are also given in detail while their complexity is compared. Simulation results show that proposed dynamic resource allocation scheme (a) ensures the macro-users QoS requirements compared with the Reuse-1 scheme, where femtocells are allowed to transmit at full power and bandwidth; (b) can maintain FUE data rates at high levels; (c) provides performance close to the optimal solution, while introducing much lower complexity.
机译:本研究研究了由共享相同频带的宏小区和毫微微小区组成的正交频分多址异构网络中的下行链路资源分配问题。重点是针对毫微微小区的传输,为毫微微小区访问共享频谱制定优化策略,以最大程度地提高毫微微用户(FUE)的总数据速率,同时确保为宏提供一定水平的服务质量(QoS)提供了在飞蜂窝附近的蜂窝用户。通过采用众所周知的双重拉格朗日方法可以获得该问题的最佳解决方案,并详细推导了最佳毫微微小区发射功率和资源分配解决方案。然而,最佳解决方案引入了高计算复杂性。为此,提出了对该问题的启发式解决方案。在比较它们的复杂性的同时,还详细给出了在实际系统中实现最佳和高效次优方案的算法。仿真结果表明,所提出的动态资源分配方案(a)与允许毫微微小区以全功率和全带宽传输的Reuse-1方案相比,可以满足宏用户的QoS要求; (b)可以保持较高的FUE数据速率; (c)提供的性能接近最佳解决方案,同时降低了复杂性。

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