Small insects perform agile locomotion, such as running, jumping, and flying. Recently, many robots, inspired by such insect performance, have been developed and are expected to be smaller and more maneuverable than conventional robots. For the development of insect-inspired robots, understanding the mechanical dynamics of the target insect is important. However, evaluating the dynamics via conventional commercialized force sensors is difficult because the exerted force and insect itself are tiny in strength and size. Here, we review force sensor devices, especially fabricated for measuring the tiny forces acting on insects during locomotion. As the force sensor, micro-force plates for measuring the ground reaction force and micro-force pro...
Measuring forces applied by multi-cellular organisms is valuable in investigating biomechanics of th...
Mechanical forces have been observed to affect various aspects of life, for example, cell differenti...
The aim of this paper is to propose an ideal design procedure for biologically-inspired mechano-sens...
This paper discusses the development of a multidirectional force sensor for the investigation of the...
Abstract. In this paper, we show how ”bio-inspired ” robotics can benefit from a more generalized ap...
During the undertaken research and development, two major systems were designed. These were; a proto...
Biological systems can provide useful insights into principles of de-sign and control of locomotion ...
This study proposes a force plate with a planar spring and an eddy current displacement sensor to me...
Abstract—Four prototypes of biomimetic sensors have been designed and implemented for flight control...
Abstract — In the following work, we develop a characterization method using miniature fiberoptic po...
Abstract—This paper reports a MEMS microforce sensor with a novel configuration of bulk micromachine...
Abstract—Autopilots for micro aerial vehicles (MAVs) with a maximum permissible avionic payload of o...
Insects like cockroach run and climb with great speed and adaptability compared to their sizes. Rese...
In this paper, we study attitude stabilization strategies via output sensor feedback for micro aeria...
This paper presents a proof-of-concept prototype of a micro force sensing mobile microrobot. The des...
Measuring forces applied by multi-cellular organisms is valuable in investigating biomechanics of th...
Mechanical forces have been observed to affect various aspects of life, for example, cell differenti...
The aim of this paper is to propose an ideal design procedure for biologically-inspired mechano-sens...
This paper discusses the development of a multidirectional force sensor for the investigation of the...
Abstract. In this paper, we show how ”bio-inspired ” robotics can benefit from a more generalized ap...
During the undertaken research and development, two major systems were designed. These were; a proto...
Biological systems can provide useful insights into principles of de-sign and control of locomotion ...
This study proposes a force plate with a planar spring and an eddy current displacement sensor to me...
Abstract—Four prototypes of biomimetic sensors have been designed and implemented for flight control...
Abstract — In the following work, we develop a characterization method using miniature fiberoptic po...
Abstract—This paper reports a MEMS microforce sensor with a novel configuration of bulk micromachine...
Abstract—Autopilots for micro aerial vehicles (MAVs) with a maximum permissible avionic payload of o...
Insects like cockroach run and climb with great speed and adaptability compared to their sizes. Rese...
In this paper, we study attitude stabilization strategies via output sensor feedback for micro aeria...
This paper presents a proof-of-concept prototype of a micro force sensing mobile microrobot. The des...
Measuring forces applied by multi-cellular organisms is valuable in investigating biomechanics of th...
Mechanical forces have been observed to affect various aspects of life, for example, cell differenti...
The aim of this paper is to propose an ideal design procedure for biologically-inspired mechano-sens...