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Inter-Cell Interference Coordination for Control Channels in LTE Heterogeneous Networks

机译:LTE异构网络中控制信道的小区间干扰协调

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In heterogeneous cellular networks for mobile communications, small cells are deployed within the coverage range of primary macro cells to provide for a localized capacity boost in traffic hotspots. Sharing of communication channels among the small-cell and macro-cell tiers is spectrally efficient, but causes failures of control signaling and data channels due to unmitigated co-channel interference. Consequently, the small-cell coverage range and capacity deteriorate. In Long Term Evolution (LTE) networks, the performance of control channels such as the physical downlink control channels (PDCCH) is of particular concern because they are protected only by simple interference averaging based on pseudo-random subcarrier allocation. Observing that the randomization algorithms are primarily seeded by the physical cell identifiers (PCIs) and cell radio network temporary identifier (C-RNTIs), we show that efficient interference-aware scheduling of control transmissions can be enabled by optimized allocation of PCIs, C-RNTIs and PDCCH resources. Simulations of a 3 GPP-compliant heterogeneous network show that the small-cell size can be doubled for a better macro-cell traffic offload by trading the number of active PDCCHs for a higher small-cell expansion bias. Alternatively, the small-cell PDCCH capacity can be at least tripled for high-load applications such as Voice over LTE by using selective macro-cell PDCCH muting.
机译:在用于移动通信的异构蜂窝网络中,在主要宏小区的覆盖范围内部署了小型小区,以提高流量热点中的局部容量。在小蜂窝和宏蜂窝层之间共享通信信道在频谱上是有效的,但是由于未缓解的同信道干扰而导致控制信令和数据信道的故障。因此,小小区的覆盖范围和容量变差。在长期演进(LTE)网络中,诸如物理下行链路控制信道(PDCCH)之类的控制信道的性能受到特别关注,因为它们仅通过基于伪随机子载波分配的简单干扰平均来保护。观察到随机化算法主要由物理小区标识符(PCI)和小区无线电网络临时标识符(C-RNTI)播种,我们表明可以通过优化PCI,C- RNTI和PDCCH资源。符合3GPP的异构网络的仿真表明,通过将活动PDCCH的数量换成更高的小小区扩展偏差,可以将小小区大小增加一倍,以实现更好的宏小区流量卸载。备选地,对于小负载PDCCH,对于高负载应用,例如,通过使用选择性宏小区PDCCH静音,可以在LTE语音上至少增加三倍。

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