This letter reports the design, fabrication, and testing of lightweight whisker sensors intended for use on robotic platforms, especially drones, featuring multiple whisker fibers in an array. The whiskers transmit forces along the vibrissae fibers to a load plate bonded to embedded MEMS barometers potted in polyurethane rubber, which act as force sensors. This construction allows for directional sensing of forces with arrays of fibers weighing less than half a gram per whisker. Forces as low as 3.33\muN can be measured, and the whiskers are capable of sensing fluid stream velocities up to 7.5 m . The whiskers are sufficiently sensitive so as to be able to detect the pressure wave of an approaching hand moving at 0.53 m from 20 mm away
We describe a novel, biomimetic tactile sensing system modeled on the facial whiskers (vibrissae) of...
peer-reviewedThe design and development of low cost short range and tactile optical fibre sensors f...
Seals are known to use their highly-sensitive whiskers to precisely follow the hydrodynamic trail le...
This work presents the design, fabrication, and characterization of an airflow sensor inspired by th...
The unique vibrissal tactile perception possessed by rats allows them to explore the surrounding env...
Perception plays a pivotal role in both biological and technological interactions with the environme...
In this thesis, a journey of development of newer tactile sensors and sensing techniques is presente...
© Springer International Publishing Switzerland 2015. A novel technique for determining the relative...
We address the theoretical question which forces and moments measured at the base of a whisker (tact...
Abstract: Several species of animals use whiskers to accurately navigate and explore objects in the ...
We seek to harness microelectromechanical systems (MEMS) technologies to build biomimetic devices fo...
<div><p>The neural mechanisms of somatosensory information processing in the rodent vibrissae system...
The neural mechanisms of somatosensory information processing in the rodent vibrissae system are a t...
Abstract—The exquisite tactile sensing ability of biological whiskers has recently led to increasing...
This paper discusses the whisker sensor that can detect the surface features through a tracing motio...
We describe a novel, biomimetic tactile sensing system modeled on the facial whiskers (vibrissae) of...
peer-reviewedThe design and development of low cost short range and tactile optical fibre sensors f...
Seals are known to use their highly-sensitive whiskers to precisely follow the hydrodynamic trail le...
This work presents the design, fabrication, and characterization of an airflow sensor inspired by th...
The unique vibrissal tactile perception possessed by rats allows them to explore the surrounding env...
Perception plays a pivotal role in both biological and technological interactions with the environme...
In this thesis, a journey of development of newer tactile sensors and sensing techniques is presente...
© Springer International Publishing Switzerland 2015. A novel technique for determining the relative...
We address the theoretical question which forces and moments measured at the base of a whisker (tact...
Abstract: Several species of animals use whiskers to accurately navigate and explore objects in the ...
We seek to harness microelectromechanical systems (MEMS) technologies to build biomimetic devices fo...
<div><p>The neural mechanisms of somatosensory information processing in the rodent vibrissae system...
The neural mechanisms of somatosensory information processing in the rodent vibrissae system are a t...
Abstract—The exquisite tactile sensing ability of biological whiskers has recently led to increasing...
This paper discusses the whisker sensor that can detect the surface features through a tracing motio...
We describe a novel, biomimetic tactile sensing system modeled on the facial whiskers (vibrissae) of...
peer-reviewedThe design and development of low cost short range and tactile optical fibre sensors f...
Seals are known to use their highly-sensitive whiskers to precisely follow the hydrodynamic trail le...