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A conflict avoidance scheme between mobility load balancing and mobility robustness optimization in self-organizing networks

机译:自组织网络中移动负载平衡与移动鲁棒性优化之间的冲突避免方案

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摘要

In the self-organizing networks, mobility load balancing (MLB) and mobility robustness optimization are two significant functions. There is a close relationship between them, as they both adjust the handover parameters to achieve their respective goals. The conflict may happen when both of them adjust the same handover parameters in the opposite directions. Conflict avoidance methods have been proposed in the existing literature. However, all of the existing methods cannot get the optimum values of handover parameters. Moreover, the load distribution of the neighbor cells is neglected, which has a great impact on the network performance. To address these issues, an effective scheme based on the load level of neighbor cells is presented. Firstly, the objectives for MLB are designed and the MLB problem is formulated as a linear programming problem, which can be readily solved by the well-established methods. Furthermore, considering the load distribution of the neighbor cells, the appropriate values of handover parameters for MLB can be obtained. Finally, we provide the framework of MLB procedures. The simulation results verify the performance of the proposed scheme outperforms the exiting methods.
机译:在自组织网络中,移动性负载平衡(MLB)和移动性鲁棒性优化是两个重要功能。它们之间都有密切的关系,因为它们都调整了切换参数以实现各自的目标。当它们两个都在相反的方向上调整相同的切换参数时,可能会发生冲突。现有文献中已经提出了避免冲突的方法。但是,所有现有方法都无法获得切换参数的最佳值。而且,忽略了相邻小区的负载分配,这对网络性能有很大的影响。为了解决这些问题,提出了一种基于相邻小区的负载水平的有效方案。首先,设计了MLB的目标,并将MLB问题表述为线性规划问题,可以通过完善的方法轻松解决。此外,考虑到相邻小区的负载分布,可以获得用于MLB的切换参数的适当值。最后,我们提供了MLB程序的框架。仿真结果验证了所提方案的性能优于现有方法。

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