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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Integrated transceivers for optical wireless communications
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Integrated transceivers for optical wireless communications

机译:集成式收发器,用于光学无线通信

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Line-of-sight free-space optical links can provide extremely high bandwidth communications, but this usually requires that transmitter and receiver are precisely aligned. In order to allow terminals to be mobile, links must be able to track users within their field of view so that the link is maintained. There are various means to do this, but all require complex subsystems with a number of different optical, optoelectronic, and electrical components. A solid-state tracking architecture is introduced and a seven-channel tracking system demonstration described. The system is designed to operate at 155 Mb/s and is, to the best of our knowledge, the first that uses an integrated approach. Arrays of novel resonant cavity LED (RCLED) emitters that operate at 980 nm are used as sources. These are flip-chip bonded to arrays of CMOS driver circuits and integrated with the necessary transmitter optics. The receiver uses a back-illuminated detector array flip-chip bonded to arrays of custom CMOS receivers. All these components are custom and have performance substantially better than nonoptimized commercially available components. In the paper, the design and fabrication of the optics, optoelectronics, and electronics required for this is described. Successful operation of all the subsystems is detailed, together with results from an initial link demonstration.
机译:视距自由空间光链路可以提供极高的带宽通信,但这通常要求发射器和接收器精确对准。为了允许终端移动,链接必须能够在其视场内跟踪用户,以便保持链接。有多种方法可以执行此操作,但是所有方法都需要具有许多不同光学,光电和电气组件的复杂子系统。介绍了固态跟踪架构,并描述了七通道跟踪系统演示。该系统的设计运行速度为155 Mb / s,据我们所知,这是第一个使用集成方法的系统。工作在980 nm的新型谐振腔LED(RCLED)发射器阵列用作光源。它们通过倒装芯片连接到CMOS驱动器电路阵列,并与必要的发射器光学器件集成在一起。接收器使用倒装芯片背照式探测器阵列,该阵列与定制CMOS接收器阵列相连。所有这些组件都是定制的,其性能比未优化的市售组件要好得多。在本文中,描述了为此所需的光学,光电和电子设备的设计和制造。详细介绍了所有子系统的成功运行以及初始链接演示的结果。

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