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Joint Allocation of Time, Virtual Subcarrier and Modulation for 5G Green OFDMA-PONs

机译:5G绿色OFDMA-PON的时间,虚拟子载波和调制的联合分配

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Passive Optical Network (PON) is a cost-effective way to become the front haul carrier for 5G ubiquitous wireless access connectivity. To hide the difference of frame formats and multiplexing methods among WiMAX, LTE and WiFi, a typical PON is proposed based on Orthogonal Frequency-Division-Multiplexing Access (OFDMA), i.e., OFDMA-PON. In OFDMA-PONs, by virtualization, low-bitrate Virtual Subcarriers (VSs) are assigned to segments, and VS loads can be migrated from one segment to another, thus sleeping unloaded segments while ensuring the service continuity. Although the subcarrier scheduling has been discussed for the OFDMA-PON merged with LTE, it is tailored to the single segment without allocating time and modulation level. In this paper, we investigate joint allocation of time, VS and modulation for 5G green OFDMA-PONs. We formulate the problem aimed at maximizing the energy-saving effect, and the upper bound is also derived. To solve the problem in a short span of time, we propose a novel heuristic algorithm. Finally, an extensive simulation is made to demonstrate the effectiveness of our design.
机译:无源光网络(PON)是成为5G无处不在的无线接入连接的主要运输载体的一种经济高效的方式。为了隐藏WiMAX,LTE和WiFi之间的帧格式和复用方法的差异,提出了一种基于正交频分复用接入(OFDMA)的典型PON,即OFDMA-PON。在OFDMA-PON中,通过虚拟化,将低比特率虚拟子载波(VS)分配给段,并且VS负载可以从一个段迁移到另一个段,从而使卸载的段处于休眠状态,同时确保服务连续性。尽管已经讨论了与LTE合并的OFDMA-PON的子载波调度,但它是为单个段量身定制的,无需分配时间和调制级别。在本文中,我们研究了5G绿色OFDMA-PON的时间,VS和调制的联合分配。我们提出了旨在最大化节能效果的问题,并得出了上限。为了在短时间内解决问题,我们提出了一种新颖的启发式算法。最后,进行了广泛的仿真,以证明我们设计的有效性。

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