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Link budget analysis for secure thermal infrared communications using engineered blackbody radiation

机译:使用工程黑体辐射进行链路预算分析以确保安全的热红外通信

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The ‘THz Torch’ concept was recently introduced as an ultra-low cost means of providing secure short-range wireless communications in the thermal infrared spectral range (10–100 THz). This technology exploits engineered blackbody radiation, by partitioning thermally-generated spectral noise power into pre-defined frequency channels; the energy in each channel is then independently pulsed modulated and transmitted. This technology can be further enhanced by multiplexing schemes, e.g. frequency division multiplexing (FDM) and frequency-hopping spread-spectrum (FHSS). In this paper, the end-to-end link budget analysis for a 4-channel ‘THz Torch’ working demonstrator, operating over a short transmission range of 1 cm, is given for the first time. Mathematical modelling of the end-to-end wireless link is presented. In the analysis, different bias points for the source are considered and the corresponding RMS output voltages at the receivers are calculated. The predicted results show the capability for each channel, and will serve as a guide for further improving the overall performance of this multi-channel ‘THz Torch’ system.
机译:“ THz火炬”概念最近被引入,它是一种超低成本的手段,可以在红外光谱范围(10–100 THz)中提供安全的短距离无线通信。这项技术通过将热产生的频谱噪声功率分配到预定的频道中,从而利用工程化的黑体辐射。然后,每个通道中的能量将独立进行脉冲调制和传输。该技术可以通过多路复用方案来进一步增强。频分复用(FDM)和跳频扩频(FHSS)。在本文中,首次给出了在1 cm短传输范围内工作的4通道“ THz火炬”工作演示器的端到端链路预算分析。提出了端到端无线链路的数学建模。在分析中,考虑了源的不同偏置点,并计算了接收器处的相应RMS输出电压。预测结果显示了每个通道的功能,并将作为进一步改善此多通道“ THz火炬”系统整体性能的指南。

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