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A Novel Resource Allocation and Spectrum Defragmentation Mechanism for IoT-Based Big Data in Smart Cities

机译:智慧城市中基于物联网的大数据资源分配和频谱碎片整理的新机制

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摘要

People’s demand for high-traffic applications and the need for Internet of Things (IoT) are enormous in smart cities. The amount of data generated by virtual reality, high-definition video, and other IoT applications is growing at an exponential rate that far exceeds our expectations, and the types of data are becoming more diverse. It has become critical to reliably accommodate IoT-based big data with reasonable resource allocation in optical backbone networks for smart cities. For the problem of reliable transmission and efficient resource allocation in optical backbone networks, a novel resource allocation and spectrum defragmentation mechanism for massive IoT traffic is presented in this paper. Firstly, a routing and spectrum allocation algorithm based on the distance-adaptive sharing protection mechanism (DASP) is proposed, to obtain sufficient protection and reduce the spectrum consumption. The DASP algorithm advocates applying different strategies to the resource allocation of the working and protection paths. Then, the protection path spectrum defragmentation algorithm based on OpenFlow is designed to improve spectrum utilization while providing shared protection for traffic demands. The lowest starting slot-index first (LSSF) algorithm is employed to remove and reconstruct the optical paths. Numerical results indicate that the proposal can effectively alleviate spectrum fragmentation and reduce the bandwidth-blocking probability by 44.68% compared with the traditional scheme.
机译:在智慧城市中,人们对高流量应用程序的需求以及对物联网(IoT)的需求是巨大的。虚拟现实,高清视频和其他物联网应用程序生成的数据量正以远远超过我们预期的指数速度增长,并且数据类型变得越来越多样化。在智慧城市的光骨干网中,以合理的资源分配来可靠地容纳基于IoT的大数据已变得至关重要。针对光骨干网中可靠的传输和有效的资源分配问题,提出了一种针对大规模物联网流量的新型资源分配和频谱碎片整理机制。首先,提出了一种基于距离自适应共享保护机制(DASP)的路由和频谱分配算法,以获得足够的保护并减少频谱消耗。 DASP算法提倡将不同的策略应用于工作和保护路径的资源分配。然后,设计了基于OpenFlow的保护路径频谱碎片整理算法,以提高频谱利用率,同时为流量需求提供共享保护。最低起始时隙索引优先(LSSF)算法用于删除和重建光路。数值结果表明,与传统方案相比,该方案可以有效缓解频谱碎片,带宽阻塞几率降低44.68%。

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