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Efficient DWBA Algorithm for TWDM-PON with Mobile Fronthaul in 5G Networks

机译:5G网络中具有移动前传的TWDM-PON的高效DWBA算法

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Time- and wavelength- division multiplexed passive optical network (TWDM-PON) have attracted attention as the next step in relation to optical access systems. A major application of TWDM-PON is expected to be fronthaul streams in the centralized radio access network (C-RAN) architecture of mobile networks. In the 5G era, the upstream traffic that OLT receives becomes highly bursty, because of the variable data rate generated by the functional split between baseband unit and remote radio heads, and the global synchronization of data transmission with time-division duplex (TDD). To flexibly allocate upstream bandwidth via the dynamic wavelength and bandwidth allocation (DWBA) scheme has been a hot research topic for TWDM-PON. However, there is no existing DWBA scheme for TWDM-PON that is designed to satisfy the strict delay requirement for fronthaul with minimum number of active wavelength channels. Therefore, in this paper we propose a novel efficient DWBA algorithm that minimizes active wavelength channels considering the high burstiness of fronthaul data transmission. With the proposed algorithm, the allowable delay and constraint for allocation timing for each ONU is formulated based on the different propagation delay between the OLT and ONUs. Then, the wavelength channel and bandwidth is allocated with the simple allocation algorithm based on the descending sort by propagation delay. It was confirmed through computer simulations that the proposed algorithm can reduce the number of active wavelength by 50% by considering propagation delay.
机译:时分和波分复用无源光网络(TWDM-PON)作为与光接入系统相关的下一步已引起关注。预计TWDM-PON的主要应用是移动网络的集中式无线访问网络(C-RAN)体系结构中的前传流。在5G时代,由于基带单元和远程无线头之间的功能划分产生可变的数据速率,以及时分双工(TDD)进行数据传输的全局同步,OLT接收的上行流量变得非常突发。通过动态波长和带宽分配(DWBA)方案灵活分配上行带宽一直是TWDM-PON的研究热点。但是,目前尚没有用于TWDM-PON的DWBA方案,该方案旨在满足活动波长信道数量最少的前传的严格延迟要求。因此,在本文中,我们考虑到前传数据传输的高突发性,提出了一种新颖的有效DWBA算法,该算法可将活动波长信道最小化。利用所提出的算法,基于OLT和ONU之间的不同传播延迟来制定每个ONU的分配定时的容许延迟和约束。然后,通过基于传播延迟的递减排序,利用简单分配算法分配波长信道和带宽。通过计算机仿真证实,通过考虑传播延迟,该算法可以将有效波长数量减少50%。

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