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Resource allocation under delay-guarantee constraints forvisible-light communication

机译:延迟保证约束下的资源分配可见光通信

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摘要

Visible Light Communications (VLC) relying on commercially available Light-Emitting Diode (LED) transmitters offer a huge data rate potential in this license-free spectral domain, whilst simultaneously satisfying energy-efficient conventional illumination demands. In a LED based VLC system, the achievable data rate may be severely degraded owing to the interference, when the VLC system employs the Unity Frequency Reuse (UFR) approach. In order to mitigate the effects of interference, we propose a pair of interference avoidance approaches, namely Frequency Reuse (FR) based transmission and Vectored Transmission (VT). Furthermore, the Resource Allocation (RA) problems of indoor Mobile Terminals (MTs) are investigated based on different transmission strategies. Inspired by the concept of Effective Capacity (EC), we formulate our RA optimization problems applying proportional fairness, while satisfying specific statistical delay constraints. Our optimization procedure solves the resource allocation problem of indoor MTs with the aid of a decentralized algorithm. Simulation results are also presented for quantifying the performance of the proposed algorithm. It is shown that both of our interference avoidance approaches are capable of reducing the interference, hence improving the overall performance. Furthermore, it is also observed that our VT transmission is capable of achieving a higher effective capacity than the FR approach, when the statistical delay requirements are loose. By contrast, the FR based transmission attains the best performance, when we tighten the delay requirements.
机译:依靠市售的发光二极管(LED)发射器的可见光通信(VLC)在此免许可证频谱域中具有巨大的数据速率潜力,同时还能满足节能的常规照明需求。在基于LED的VLC系统中,当VLC系统采用统一频率重用(UFR)方法时,由于干扰会严重降低可达到的数据速率。为了减轻干扰的影响,我们提出了两种避免干扰的方法,即基于频率重用(FR)的传输和矢量传输(VT)。此外,基于不同的传输策略,研究了室内移动终端(MT)的资源分配(RA)问题。受有效容量(EC)概念的启发,我们在满足特定统计延迟约束的同时,应用比例公平性来制定RA优化问题。我们的优化程序借助分散算法解决了室内MT的资源分配问题。仿真结果也被提出来量化所提出算法的性能。结果表明,我们两种避免干扰的方法都可以减少干扰,从而提高整体性能。此外,还观察到,当统计延迟要求宽松时,我们的VT传输比FR方法能够实现更高的有效容量。相比之下,当我们收紧延迟要求时,基于FR的传输将获得最佳性能。

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