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Prediction based interference management and distributed trajectory regulation in amorphous cells

机译:非晶电池中基于预测的干扰管理和分布式轨迹调节

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The amorphous cells have emerged as a new paradigm to meet the fast increasing wireless capacity and coverage demands. Compared with the traditional cellular networks with hexagon-based deployments, the amorphous cells support mobile base stations (MBS) to form dynamic cell topologies, which can adapt to the group-movement behaviors of network loads. These amorphous cells are required to be self-organized so as to facilitate distributed coordination between MBSs, whereby the operational costs can be effectively reduced. Moreover, the management of cochannel interferences needs to take MBSs' movement into account, which is the new challenge not encountered in traditional cellular networks. In this paper, we propose a distributed trajectory regulation algorithm aiming at enhancing the reliability of communications for multiple mobile-host (MH) groups, while not violating the required travel time budgets. For this purpose, we jointly consider the prediction of channel conflicts across MBSs', the channel collision costs, and cooperative channel allocation for trajectory control. Simulation evaluations show that our algorithm can well balance the reliability and travel time. The simulation results also demonstrate the reduction of failure rate for incoming calls compared with the conventional approach, especially when the network load is high.
机译:非晶电池已经成为满足快速增长的无线容量和覆盖范围需求的新范例。与具有基于六边形部署的传统蜂窝网络相比,非晶蜂窝支持移动基站(MBS)形成动态蜂窝拓扑,可以适应网络负载的组移动行为。这些无定形单元需要自组织,以便于MBS之间的分布式协调,从而可以有效地降低运营成本。此外,同信道干扰的管理需要考虑MBS的移动,这是传统蜂窝网络中未遇到的新挑战。在本文中,我们提出了一种分布式轨迹调节算法,旨在提高多个移动主机(MH)组的通信可靠性,同时又不违反所需的旅行时间预算。为此,我们共同考虑了跨MBS的信道冲突的预测,信道冲突成本以及用于轨迹控制的协作信道分配。仿真评估表明,我们的算法可以很好地平衡可靠性和行驶时间。仿真结果还表明,与传统方法相比,尤其是在网络负载较高时,降低了传入呼叫的​​故障率。

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