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Design and implementation of a maximal-ratio angle-diversity receiver for optical wireless communication systems

机译:用于光学无线通信系统的最大比率角分集接收机的设计与实现

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Abstract: A maximal-ratio angle-diversity receiver is composed of multiple sectors with relatively small field-of-views. Each sector estimates the signal-to-noise ratio (SNR) of the collected signal and its gain made proportional to the relation i/$sigma$+2$/, where i and $sigma represent the average signal and the shot noise root mean square (rms) values, respectively. The output signals of all sectors are then combined through an adder circuit. This paper presents the design and implementation of a maximal-ratio receiver using discrete components. A major challenge is the design of the variable gain amplifier (VGA) which requires a large dynamic range because of the large fluctuations of both signal and noise in a typical office room environment. This problem was overcome through the utilization of a cascade of two VGAs where the assignment of gains to each VGA minimizes dynamic range requirements through an innovative topology. The first one provides a gain inversely proportional to the rms shot noise and the second one a gain proportional to the SNR referred to the input of the front-end. Measurements on an implemented prototype show results close to the ideal gain of a maximal-ratio receiver making the proposed techniques suitable for maximal-ratio angle-diversity receivers. !11
机译:摘要:最大比角分集接收机由多个具有相对较小视场的扇区组成。每个扇区估计收集到的信号的信噪比(SNR),并将其增益与关系i / $ sigma $ + 2 $ /成比例,其中i和$ sigma代表平均信号和散粒噪声根均值均方根值。然后通过加法器电路组合所有扇区的输出信号。本文介绍了使用分立元件的最大比率接收机的设计和实现。一个主要的挑战是可变增益放大器(VGA)的设计,由于在典型的办公室环境中信号和噪声的波动很大,因此要求较大的动态范围。通过利用两个VGA的级联,克服了这个问题,其中通过创新的拓扑将增益分配给每个VGA可以将动态范围要求降至最低。第一个提供与RMS散粒噪声成反比的增益,第二个提供与前端输入相关的SNR成正比的增益。在已实现的原型上进行的测量表明,结果接近最大比例接收机的理想增益,从而使所提出的技术适用于最大比例角度分集接收机。 !11

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