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Angle diversity with rate-adaptive transmission using repetition coding and variable silence periods for wireless infrared communications

机译:用于无线红外通信的使用重复编码和可变静默周期的速率自适应传输的角度分集

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The simultaneous use of a simple rate-adaptive transmission scheme based on the use of variable silence periods and a new self-orienting receiver, as an alternative to conventional angle diversity techniques, is proposed in order to mitigate the effect of large variations of the signal-to-noise ratio (SNR) in indoor wireless infrared communications. In relation to the rate-adaptive transmission technique, variable silence periods are used so as to increase the peak-to-average optical power ratio (PAOPR). With regard to the new diversity technique proposed, this is based on giving a self-orienting capability to the optical front-end, optimizing link quality parameters. We apply it to links operating at high initial bit rates of 50, 100 and 200 Mb/s, providing a signaling rate with a wide dynamic range and a. relevant improvement in performance with a gradual complexity in implementation, compared with the scheme, proposed and specified in the advanced infrared (AIr) standard by the Infrared Data Association (IrDA), which is based on repetition coding and pulse-position modulation.
机译:为了减轻信号的大幅度变化的影响,建议同时使用基于可变静默周期的简单速率自适应传输方案和新的自定向接收机,以替代传统的角度分集技术。室内无线红外通信中的信噪比(SNR)。关于速率自适应传输技术,使用可变的静默周期以增加峰均光功率比(PAOPR)。关于提出的新分集技术,这是基于赋予光学前端自定向能力,优化链路质量参数。我们将其应用于以50、100和200 Mb / s的高初始比特率运行的链路,从而提供具有宽动态范围和a的信令速率。与由红外数据协会(IrDA)在高级红外(AIr)标准中提出并指定的方案相比,该方案在性能上实现了改进,并且实现了逐步复杂性,该方案基于重复编码和脉冲位置调制。

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