A compact anemometer, capable of detecting the magnitude and direction of the wind in a plane, is presented. The device constitutes an evolution of a class of sensors that exploit a recently proposed original approach, involving fluidic processing of the pressures induced around a cylinder. A significant size reduction with respect to previous prototypes has been achieved by the use of a tiny differential pressure sensor based on a MEMS System on a Chip. Preliminary characterization performed in a wind tunnel is presented
Development of compact, inexpensive and low power sensors is the key step towards the application of...
The potential for measuring wind, both in the atmosphere and in wind tunnels, was investigated using...
Small unmanned aircraft systems (sUAS) have proven their effectiveness for measuring both the inerti...
A compact anemometer, capable of detecting the magnitude and direction of the wind in a plane, is pr...
A 2-D wind sensor, based on microelectromechanical systems (MEMS) flow sensors, is presented. The d...
A compact anemometer based on integrated flow sensors is presented. The device exploits a recently p...
A low-cost, multi-hole pressure probe for Unmanned Aircraft System airborne flow measurements was de...
AbstractIn this work a compact wind velocity and direction sensor, based on properly probing the pre...
Wind speed and direction are important parameters in meteorological observation. Solid wind sensor h...
An evolution of a previously proposed anemometer capable of detecting both the magnitude and the dir...
This paper presents an analytical model for a recently introduced class of 2-D directional anemomete...
A compact 2D wind sensor made up of an integrated, single chip, double channel flow sensor and a PMM...
Small Unmanned Aircraft Systems (SUAS) are an emerging technology that is suitable for multitude of ...
A low profile, rapidly deployable (and redeployable), air pressure sensor for the use in aerodynamic...
This work describes the application of a compact, MEMS-based, 2D anemometer to the estimation of a q...
Development of compact, inexpensive and low power sensors is the key step towards the application of...
The potential for measuring wind, both in the atmosphere and in wind tunnels, was investigated using...
Small unmanned aircraft systems (sUAS) have proven their effectiveness for measuring both the inerti...
A compact anemometer, capable of detecting the magnitude and direction of the wind in a plane, is pr...
A 2-D wind sensor, based on microelectromechanical systems (MEMS) flow sensors, is presented. The d...
A compact anemometer based on integrated flow sensors is presented. The device exploits a recently p...
A low-cost, multi-hole pressure probe for Unmanned Aircraft System airborne flow measurements was de...
AbstractIn this work a compact wind velocity and direction sensor, based on properly probing the pre...
Wind speed and direction are important parameters in meteorological observation. Solid wind sensor h...
An evolution of a previously proposed anemometer capable of detecting both the magnitude and the dir...
This paper presents an analytical model for a recently introduced class of 2-D directional anemomete...
A compact 2D wind sensor made up of an integrated, single chip, double channel flow sensor and a PMM...
Small Unmanned Aircraft Systems (SUAS) are an emerging technology that is suitable for multitude of ...
A low profile, rapidly deployable (and redeployable), air pressure sensor for the use in aerodynamic...
This work describes the application of a compact, MEMS-based, 2D anemometer to the estimation of a q...
Development of compact, inexpensive and low power sensors is the key step towards the application of...
The potential for measuring wind, both in the atmosphere and in wind tunnels, was investigated using...
Small unmanned aircraft systems (sUAS) have proven their effectiveness for measuring both the inerti...