研究目的
To introduce an optical backscatter transducer design that mitigates the effects of external interference from ambient light and from 50- and 60-Hz sources, enabling sensitive measurements using inexpensive circuitry.
研究成果
The OBS transducers successfully rejected ambient light and achieved high gain using low-cost circuitry. Turbidimeters incorporating these transducers were constructed at low total cost and exhibited robust and accurate performance. The design allows for accurate measurements in relatively clear waters, with potential for extended range applications by reducing circuit gain.
研究不足
The range of the sensors is limited to turbidities below roughly 20 NTU due to saturation at higher turbidities. The impact of electromagnetic interference from grid-based sources on the transducer output requires careful selection of modulation frequencies to minimize effects.
1:Experimental Design and Method Selection:
The design involves an optical backscatter transducer with low-frequency square wave modulation of the light source to reject ambient light and electromagnetic interference. The detection scheme includes high-pass filtering and amplification for sensitive measurements.
2:Sample Selection and Data Sources:
Formazin turbidity standard was used to test the sensor's response in suspensions ranging from 0 to 815 NTU.
3:List of Experimental Equipment and Materials:
The sensor was constructed using a microcontroller board (Teensy 2.0, PJRC), RGB LED, silicon photodiodes, and PVC housing components.
4:0, PJRC), RGB LED, silicon photodiodes, and PVC housing components.
Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: The sensor's response to formazin suspensions was measured with a magnetic stirrer ensuring well-mixed suspensions. Data was collected for at least 60 seconds per suspension.
5:Data Analysis Methods:
Linear regression was used to analyze the sensor's response to turbidity, with coefficients of determination (R2) calculated for each LED.
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