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Portable measurement system for breath analysis by real-time fluctuation enhanced sensing method

机译:通过实时波动增强的感应方法进行呼吸分析的便携式测量系统

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Resistance flicker noise of gas sensors gives a new opportunity to improve gas detection by enhancing selectivity and sensitivity of cheap and popular gas sensors. The improvement at low gas concentrations can be even increased further by UV light irradiating the gas sensing layers exhibiting photocatalytic effect (e.g., WO or TiO gas sensing layers). A new system has been developed recently to utilize low frequency noise measurement method but controlling a set of sensors applied for breath analysis and medical check-up. The system measures DC resistance and resistance noise in an array of four prototype resistive gas sensors. An operating temperature of each sensor can be set independently by the software controlling the system. Some sensors can be irradiated by the UV light as well. Humidity, temperature and pressure within a miniature gas chamber, of a volume about 40 ml, is monitored to secure repeatable conditions during the measurements and to avoid humidity condensation in the exhaled breath. The setup is controlled by an FPGA circuit performing necessary computations (power spectrum density estimation) and data transmission. Further processing by applying selected detection or gas concentration estimation methods can be done by a smartphone or a PC controlling the measurement setup. The system was prepared for fast and non-invasive medical diagnosis of patients suffering from tropical diseases.
机译:气体传感器的电阻闪烁噪声通过增强廉价和流行的气体传感器的选择性和灵敏度,为改善气体检测提供了新的机会。在低气体浓度下的改善甚至可以通过用紫外线照射表现出光催化作用的气体传感层(例如WO或TiO 2气体传感层)来进一步提高。最近开发了一种新系统,该系统利用低频噪声测量方法,但可以控制一组用于呼吸分析和医学检查的传感器。该系统在四个原型电阻式气体传感器的阵列中测量直流电阻和电阻噪声。每个传感器的工作温度可以通过控制系统的软件独立设置。某些传感器也可以被紫外线照射。微型气室内约40 ml的湿度,温度和压力受到监控,以确保测量期间可重复的条件,并避免呼出气中的湿气凝结。该设置由FPGA电路控制,该电路执行必要的计算(功率谱密度估计)和数据传输。通过应用选定的检测或气体浓度估算方法进行的进一步处理可以通过控制测量设置的智能手机或PC进行。该系统可用于热带疾病患者的快速无创医学诊断。

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