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DoF analysis in a two-layered heterogeneous wireless interference network

机译:两层异构无线干扰网络中的DoF分析

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Degrees of freedom (DoF) is studied in the downlink of a heterogenous wireless network modeled as a two-layered interference network. The first layer of the interference network is the backhaul layer between macro base stations (MBs) and small cell base stations (SBs), which is modeled as a Wyner type linear network. The second layer is the transmission layer between SBs and mobile terminals (MTs), which is modeled as a linear Wyner L network. The SBs are assumed to be half-duplex, thus restricting the per user degrees of freedom (puDoF) in the system to 1/2. It is established that the optimal puDoF of 1/2 can be achieved in the linear network with sufficient number of antennas using only interference avoidance schemes. For the case of higher connectivity in the transmission layer, it is shown that the optimal puDoF is achieved by sending an appropriate linear combination to the SB to zero-force interference at the intended user. These results are also extended to a more realistic hexagonal cellular model.
机译:在建模为两层干扰网络的异构无线网络的下行链路中研究自由度(DoF)。干扰网络的第一层是宏基站(MBs)和小型小区基站(SBs)之间的回程层,其建模为Wyner型线性网络。第二层是SB与移动终端(MT)之间的传输层,其建模为线性Wyner L网络。假定SB是半双工的,因此将系统中每个用户的自由度(puDoF)限制为1/2。已经确定,仅使用干扰避免方案,在具有足够数量天线的线性网络中,可以实现1/2的最佳puDoF。对于传输层中更高的连接性情况,可以证明,通过向SB发送适当的线性组合以达到预期用户的零力干扰,可以实现最佳的puDoF。这些结果也扩展到更现实的六角形细胞模型。

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