Journal of Microelectromechanical Systems · 2018 · 25 citations · 27 references
AeroacousticsEngineeringMeasurementMechanical EngineeringEducationHumidity SensorSensor TechnologyMicromachinesCalibrationThermal Wind SensorInstrumentationHigh-accurate ApplicationsWind MeasurementHeat TransferSensorsMicrofabricationSensor DesignThermal SensorSensor ApplicationThermal EngineeringWind Speed
This paper introduces a novel sensing element scheme to improve the accuracy of 2-D micromachined thermal wind sensor. The sensing element consists of eight heaters and eight thermistors placed on ceramic substrate. The octagon-arranged sixteen resistors are divided into two wind sensing groups, cross-type group and saltire-type group. These two groups monitor wind independently, and the final measured wind speed and direction are extracted from the measurement results of the two groups. Based on this octagon-sensing design, the sensor achieves higher accuracy for wind measurement, which is verified by the experiment. The results show that for the wind speed up to 33 m/s, the sensor has a measurement error less than ±1%, and the airflow direction over the full range of 360° is determined with a maximum error of ±1.5°.
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Micromachined Thermal Flow Sensors—A Review
Jonathan T. W. Kuo, Lawrence Yu, Ellis Meng · Micromachines · 2012 · 454 citations · Full text
Micromachined flow sensors—a review
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Nannan Chen, Charles L. Tucker, Jonathan Engel et al. · Journal of Microelectromechanical Systems · 2007 · 223 citations