基于双波段差分调制技术的快速水分仪研制

Development of a Rapid Moisture Meter Based on Dual-Band Differential Modulation Technology

  • 摘要: 针对我国多行业水分检测需求,近红外光谱法虽具备非接触测量优势,但现有设备普遍存在体积大、功耗高、光信号调制困难等问题,且核心技术仍受国外垄断。本文提出了一种以1450 nm为检测波段、1200 nm为参比波段的LED作为测量光源的检测方案,通过非分散红外技术研制了一种便携式近红外水分检测仪,并针对农作物进行了相关梯度的水分检测实验。实验结果表明,该仪器对农作物麦仁的含水率测试表现较好,水分含量区分度高,且仪器工作稳定。同时仪器响应速度快,光源频率调制方便,进一步优化后可广泛应用于无损、实时在线水分检测领域。

     

    Abstract: In response to the growing demand for moisture detection across various industries in our country, near-infrared spectroscopy offers the advantage of non-contact measurement. However, existing equipment often suffers from drawbacks such as large volume, high power consumption, and difficulty in modulating optical signals. Furthermore, the core technology is still monopolized by foreign manufacturers. In this study, a detection scheme using a light-emitting diode (LED) with a 1450 nm detection band and 1200 nm reference band is proposed for the measurement of the light source. A portable near-infrared moisture detector was developed using nondispersive infrared technology, and relevant gradient moisture detection experiments were conducted on crops. The experimental results showed that the instrument was stable and performed well in the moisture content test of wheat kernels; furthermore, its moisture content discrimination was high. In addition, the instrument had a fast response speed and convenient light source frequency modulation. After further optimization, this instrument can be widely used for nondestructive real-time online moisture detection.

     

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