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Transceiver Selection for Multi-Element Free-Space-Optical Communications.

机译:多元素自由空间光通信的收发器选择。

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摘要

The focus on wireless networking technologies has always been on radio frequency (RF). However, the capacity of these networks is limited by the availability of the RF spectrum. On the other hand, recent wireless applications have increased the demand for higher speed connections driving the need for higher capacity on the RF spectrum. It is expected that the demand will always stay hungry for more capacity and power, and RF spectrum is close to its saturation and may not be capable of handling future heavy loads. Hence, there is an urgent need for alternative wireless technologies that can complement legacy RF. Recently, Free-Space-Optical (FSO) communication has gained prominence as a technology complementary to RF since it has the potential to deliver wireless communication links at optical-level speeds. FSO transmitters are directional and have the advantage of high-speed modulation. An omni-directional FSO antenna can be built by using multiple transceivers on a spherical structure that will virtually behave like the traditional RF antennas. However, maintenance of line-of-sight (LOS) between transceivers during an ongoing transmission is an important issue that comes with the cost of directionality.;Today, the maintenance of LOS in FSO communications is managed by mechanical steering mechanisms that are not flexible and fast enough to recover the disruptions in a mobile scenario. To remedy this problem first, we propose an electronic steering mechanism and an LOS maintenance algorithm for multi-transceiver FSO structures. The electronic steering mechanism and the LOS algorithm provide an ability to maintain optical wireless links with minimal disruptions caused by relative mobility of communicating nodes. Second, we explore the possibility of using the directionality of FSO communications for solving the 3-D localization problem in ad-hoc networking environments along with simulations and proof-of-concept prototype experiments. Lastly, we explore ways of making the LOS maintenance algorithm more energy efficient. The basic versions of the electronic steering mechanism and the LOS algorithm recover from disruptions caused by mobility; however, they do so by activating all the transceivers. This is not efficient in terms of circuit design and power consumption. We design an efficient algorithm, which will manage LOS alignments by activating a smaller number of transceivers instead of keeping all the transceivers busy. We focus on transceiver selection mechanisms to select an optimal subset of transceivers in spherical modules covered with multiple directional FSO transceivers. We design, evaluate, and simulate two different transceiver selection algorithms: Single Mode Selection and Two Mode Selection. We conclude by providing performance results of NS-2 simulations, conclusions, and future work.
机译:一直以来,对无线网络技术的关注一直集中在射频(RF)上。但是,这些网络的容量受到RF频谱可用性的限制。另一方面,近来的无线应用增加了对更高速度连接的需求,从而推动了对RF频谱更高容量的需求。预计需求将始终对更大的容量和功率保持饥饿,并且RF频谱已接近饱和,并且可能无法应对未来的重负荷。因此,迫切需要可以补充传统RF的替代无线技术。近来,自由空间光(FSO)通信作为一种补充RF的技术而备受关注,因为它有潜力以光速传输无线通信链路。 FSO发射器是定向的,具有高速调制的优势。可以通过在球形结构上使用多个收发器来构建全向FSO天线,该收发器实际上会像传统的RF天线那样工作。但是,在进行中的传输过程中,收发器之间的视线(LOS)维护是一个重要问题,其方向性成本也随之而来。;如今,FSO通信中的LOS维护由不灵活的机械转向机制进行管理并以足够快的速度恢复移动场景中的中断。为了首先解决这个问题,我们提出了一种用于多收发器FSO结构的电子转向机制和LOS维护算法。电子操纵机制和LOS算法提供了一种以最小的通信节点相对移动性造成的中断来维持光学无线链路的能力。其次,我们探讨了使用FSO通信的方向性来解决ad-hoc网络环境中的3-D本地化问题以及仿真和概念验证原型实验的可能性。最后,我们探索使LOS维护算法更节能的方法。电子转向机构和LOS算法的基本版本可从机动性造成的干扰中恢复;但是,它们通过激活所有收发器来实现。就电路设计和功耗而言,这是无效的。我们设计了一种有效的算法,该算法将通过激活较少数量的收发器而不是让所有收发器忙来管理LOS对齐。我们专注于收发器选择机制,以在覆盖有多个定向FSO收发器的球形模块中选择收发器的最佳子集。我们设计,评估和仿真两种不同的收发器选择算法:单模选择和双模选择。我们通过提供NS-2模拟的性能结果,结论和以后的工作来得出结论。

著录项

  • 作者

    Sevincer, Abdullah.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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