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Two-Temperature Neural Sensing Scheme

机译:两温神经传感方案

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摘要

We propose the optical laser frequency neural sensing scheme and two-temperature neural sensing scheme to measure the optical laser frequency and two temperatures of the heat reservoirs. The optical laser frequency and two-temperature requirement conditions are imposed by one-to-one functional map between normalized transmission spectrum and optical laser frequency as well as one-to-two functional map between normalized transmission spectrum and two temperatures. The proposed schemes using the optical laser frequency neural sensing scheme and two-temperature neural sensing scheme learn the mapping relationships for both optical laser frequency and two temperatures with their corresponding normalized transmission spectra. The experimental results show that the optical laser frequency neural sensing scheme and two-temperature neural sensing scheme to measure the optical laser frequency and two temperatures to get the root-mean-square errors of 5.9 MHz, 0.009 °C, and 0.008 C°, respectively.
机译:我们提出了光学激光频率神经传感方案和两温神经传感方案,以测量光学激光频率和热库的两个温度。光学激光频率和两个温度要求条件是由归一化透射光谱和光学激光频率之间的一对一功能图以及归一化透射光谱和两个温度之间的一对二功能图强加的。所提出的使用光学激光频率神经传感方案和双温度神经传感方案的方案学习了光学激光频率和两个温度及其对应的归一化透射光谱的映射关系。实验结果表明,利用光学激光频率神经传感方案和双温度神经传感方案测量光学激光频率和两个温度,可以得到5.9 MHz,0.009°C和0.008 C°的均方根误差,分别。

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