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LTE smart grid performance gains with additional remote antenna units via radio over fiber using a microring resonator system

机译:使用微环谐振器系统通过光纤无线电通过附加的远程天线单元获得LTE智能电网性能

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摘要

Smart grid (SG) systems form the backbone of various services that provide comfort and efficiency enhancements. Increasing numbers of SG users cause additional demands by applications on the SG, and this trend eventually leads to the SG being unable to deliver services with sufficient quality. A system of optical and wireless access technologies, namely radio over fiber (RoF), is proposed here for adoption in SG systems (SG-RoF) in order to ensure provision of adequate capacity in line with transmission bandwidth service requirements. This paper details a microring resonator (MRR) system for use in SG-RoF systems, whereby the extra optical carriers are generated so as to increase the number of serviceable remote antenna units (RAUs). A number of very useful and widely used smart grid applications, namely video surveillances and advanced metering data, are also described in the context of the SG-RoF. The performance of well-known algorithms, such as proportional fairness, modified largest weighted delay first, exponential proportional fairness and exponential rule, are evaluated in this work to determine the optimal candidate for use in the proposed system.
机译:智能电网(SG)系统构成了各种服务的骨干,这些服务可提高舒适度和效率。 SG用户数量的增加导致SG上的应用程序提出了额外的要求,这种趋势最终导致SG无法提供足够质量的服务。这里提出一种光学和无线接入技术的系统,即光纤无线电(RoF),以供SG系统(SG-RoF)采用,以确保根据传输带宽服务要求提供足够的容量。本文详细介绍了用于SG-RoF系统的微环谐振器(MRR)系统,从而产生了额外的光载波,从而增加了可维修的远程天线单元(RAU)的数量。 SG-RoF还介绍了许多非常有用且广泛使用的智能电网应用程序,即视频监视和高级计量数据。在这项工作中,对诸如比例公平,修改后的最大加权延迟优先,指数比例公平和指数规则之类的著名算法的性能进行了评估,以确定拟议系统中使用的最佳候选者。

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