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A novel multiobjective framework for cell switch-off in dense cellular networks

机译:密集蜂窝网络中用于小区关闭的新型多目标框架

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The green communications paradigm has been receiving much attention in wireless networks in recent years. More specifically, in the context of cellular communications, the concept of Cell Switch Off (CSO) has been recognized as a promising approach to reduce the energy consumption. The need is expected to be pressing especially in the next decade with the increasing small cell deployment. However, the cell switch on/off decisions compounded by the resource allocation task in CSO constitute a highly challenging optimization problem due to the fact that this problem can be viewed as a generalized version of the resource allocation (scheduling) problem in the conventional cellular networks without CSO, which itself is already difficult. This paper introduces a novel framework to CSO based on multiobjective evolutionary optimization. The main contribution of this paper is that the proposed multiobjective framework takes the traffic behaviour in both space and time (known by operators) into account in the optimal cell switch on/off decision making which is entangled with the corresponding resource allocation task. The exploitation of this statistical information is done in a number of ways, including through the introduction of a weighted network capacity metric. This indicator prioritizes cells which are expected to have traffic concentration resulting in on/off decisions that achieve substantial energy savings in scenarios where traffic is highly unbalanced, without compromising the QoS. The proposed framework distinguishes itself from the CSO papers in the literature in two ways: 1) The number of cell switch on/off transitions as well as handoffs are minimized. 2) The computationally-heavy part of the algorithm is executed offline, which makes the real-time implementation feasible.
机译:绿色通信范式近年来在无线网络中得到了很多关注。更具体地,在蜂窝通信的背景下,小区关闭(CSO)的概念被认为是降低能量消耗的有希望的方法。预计需要在未来十年中迫切需要按下​​小型电池部署。然而,由于CSO中的资源分配任务复合的单元开关的开启/关闭决定构成了一个高度挑战的优化问题,因为该问题可以被视为传统蜂窝网络中的资源分配(调度)问题的广义版本没有CSO,它本身已经很困难。本文介绍了基于多目标进化优化的CSO的新框架。本文的主要贡献是,所提出的多目标框架在最佳单元开关ON / OFF决策中考虑到空间和时间(运营商已知)的流量行为,其与相应的资源分配任务纠缠在一起。这种统计信息的利用以多种方式完成,包括引入加权网络容量度量。该指示器优先考虑预期具有交通浓度的细胞,导致在流量高度不平衡的情况下实现了大量节能的开/关决定,而不会影响QoS。所提出的框架以两种方式从文献中的CSO论文分开:1)单元开关的数量开/关转换以及切换是最小化的。 2)算法的计算繁重部分是离线执行的,这使得实时实现可行。

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