Numerical and experimental characterization of a novel low-cost thermal air flow sensor

Author(s):  
Florian Wenig ◽  
Christian Heschl ◽  
Thomas Glatzl ◽  
Thilo Sauter
2014 ◽  
Vol 56 (6) ◽  
pp. 1331-1333 ◽  
Author(s):  
Clarissa de L. Nóbrega ◽  
Marcelo R. da Silva ◽  
Paulo H. da F. Silva ◽  
Adaildo. G. D'Assunção

Frequenz ◽  
2019 ◽  
Vol 73 (11-12) ◽  
pp. 355-366
Author(s):  
Martin Frank ◽  
Benedict Scheiner ◽  
Fabian Lurz ◽  
Robert Weigel ◽  
Alexander Koelpin

Abstract This paper presents the design and characterization of linearly polarized low-cost transmitarray antennas with ± 70° azimuth beamforming range in V-band in order to add beam steering functionality to existing radar front ends. The transmitarray antennas are composed of 13 × 13 planar unit-cells. The unit-cells consist of two layers of RO4350B laminate and provide a one bit phase resolution. The desired unit-cell behavior has been validated by simulations and measurements. Eight transmitarrays with different phase distributions have been designed and fabricated to realize different beam steering angles in azimuth. The experimental characterization of the radiation patterns shows the desired performance in the frequency range from 59 GHz to 63 GHz. Additionally, steering angle combinations in azimuth and elevation up to 40° have been realized and successfully demonstrate by measuring the 2D radiation pattern.


2020 ◽  
Vol 6 (47) ◽  
pp. eabc9943
Author(s):  
Benjamin Jenett ◽  
Christopher Cameron ◽  
Filippos Tourlomousis ◽  
Alfonso Parra Rubio ◽  
Megan Ochalek ◽  
...  

Mechanical metamaterials offer exotic properties based on local control of cell geometry and their global configuration into structures and mechanisms. Historically, these have been made as continuous, monolithic structures with additive manufacturing, which affords high resolution and throughput, but is inherently limited by process and machine constraints. To address this issue, we present a construction system for mechanical metamaterials based on discrete assembly of a finite set of parts, which can be spatially composed for a range of properties such as rigidity, compliance, chirality, and auxetic behavior. This system achieves desired continuum properties through design of the parts such that global behavior is governed by local mechanisms. We describe the design methodology, production process, numerical modeling, and experimental characterization of metamaterial behaviors. This approach benefits from incremental assembly, which eliminates scale limitations, best-practice manufacturing for reliable, low-cost part production, and interchangeability through a consistent assembly process across part types.


Sensors ◽  
2011 ◽  
Vol 11 (12) ◽  
pp. 11856-11870 ◽  
Author(s):  
Davinia Font ◽  
Marcel Tresanchez ◽  
Tomàs Pallejà ◽  
Mercè Teixidó ◽  
Jordi Palacín

2002 ◽  
Vol 2 (5) ◽  
pp. 453-462 ◽  
Author(s):  
M. Dominguez ◽  
F.N. Masana ◽  
V. Jimenez ◽  
S. Bermejo ◽  
J. Amirola ◽  
...  
Keyword(s):  
Low Cost ◽  
Air Flow ◽  

This air sensor functioning to detect the speed of air surrounding while in motionor a sudden changes in its environment. The effect of fast detection of a security sensor through the high sensitivity of the airflow sensor has enabled the system to identify and analyze the critical condition in higher accuracy compared to the conventional of any security system. Previous studies have developed the macrofluidic air flow sensor that observed the air flow in higher accuracy while the sensor in motion will be verified by detection of high sensitivity in the relative velocity of the airflow sensor compared to a conventional sensor. An experimental investigation was conducted to verify macrofluidic air flow sensor in wind tunnel by control velocity of range (30 to 110 km/h). The result shows the characterization of the changes in voltage reading with respect to the airflow speed in the wind tunnel. Sensor 1 to 4 have been placed at 0 to 360 degree of orientation with respective of 90 degree space interval.


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