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Versatile Gas Detection System Based on Combined NDIR Transmission and Photoacoustic Absorption Measurements

机译:基于NDIR传输和光声吸收测量相结合的多功能气体检测系统。

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Based on a low-cost micro-machined infrared (IR) source with subsequent gas specific filter, photoacoustic absorption (PA) measurements were investigated in a nonresonant operating mode of a gas cell. In addition, nondispersive IR (NDIR) transmission measurements based on a thermopile detector were used to expand the measurement range, but also for an inherent self-monitoring scheme of the system. Compared to other systems using expensive laser sources for stimulation of acoustic pressure waves in a resonant mode of operation, the approach is based on low-cost components. The IR source was modulated in the frequency range between 1 and 10 Hz. To achieve enhanced resolution and a good signal to noise ratio the sensor raw data—both for transmission as well as absorption measurements—were evaluated using discrete Fourier transformation. By combining PA and NDIR transmission measurements a wide concentration range is achieved, e.g., 100–20 000 ppm of carbon dioxide for a measurement cell with a length of 9 cm. Whereas the NDIR transmission measurement is suitable for monitoring higher concentrations, the PA measurement offers better detectivity at lower gas concentrations. Furthermore, the modular system allows the realization of a self-monitoring scheme by comparing the signals measured with both approaches, thus omitting the need for a second filter at a reference wavelength.
机译:基于低成本的微机械红外(IR)光源和随后的特定气体过滤器,在气室的非共振运行模式下研究了光声吸收(PA)测量。此外,基于热电堆检测器的非分散红外(NDIR)传输测量不仅可以扩展测量范围,还可以用于系统固有的自我监控方案。与使用昂贵的激光源以共振操作模式刺激声压波的其他系统相比,该方法基于低成本组件。红外源在1到10 Hz的频率范围内调制。为了获得更高的分辨率和良好的信噪比,使用离散傅里叶变换对传感器原始数据(用于传输以及吸收测量)进行了评估。通过结合使用PA和NDIR透射测量,可实现宽浓度范围,例如,对于长度为9 cm的测量池,二氧化碳浓度为100-20 000 ppm。 NDIR透射测量适合监视更高的浓度,而PA测量在较低的气体浓度下具有更好的检测能力。此外,模块化系统允许通过比较两种方法测得的信号来实现自监视方案,从而省去了在参考波长处使用第二个滤波器的需求。

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