The lateral line sense organ in fish detects fluid flow around its body, and is used to perform a wide variety of behaviors such as rheotaxis, wall-following, prey detection, and obstacle and predator avoidance. Currently there are no equivalent engineering analogues that can sense fluid flow perturbation to determine location of obstacles and demonstrate closed loop obstacle avoidance. In this dissertation we examine the potential and limitations of this sensor system with respect to obstacle detection, avoidance and rheotaxis. This dissertation presents the development of a novel bioinspired flow-based perception scheme for small and wide-field objects, design and development of a strain sensor system and a robust controller for closed lo...
Evolution bestowed the blind cavefish with a resourcefully designed lateral-line of sensors that pla...
Feedback flow information is of significance to enable underwater locomotion controllers with higher...
In fish the lateral line is a sensory organ used to perceive water movement in the surrounding envir...
Abstract—This paper presents ongoing work toward the design and use of an artificial lateral-line sy...
Biological sensory systems often display great performance, inspiring engineers to develop artificia...
In search for more efficient propulsion through water, many methods for improving on the existing hy...
This thesis deals with the problem of controlling a biomimetic fish-like underwater robot developed ...
This thesis deals with the problem of controlling a biomimetic fish-like underwater robot developed ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Abstract — This paper describes how an underwater vehicle can control its motion by sensing the surr...
Chapter 3 presents a comprehensive review of the various biomimetic self-powered and low-powered MEM...
Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction...
Most fish have the capability of sensing flows and nearby movements even in dark or murky conditions...
Most fish have the capability of sensing flows and nearby movements even in dark or murky conditions...
Impressive robotic solutions with astonishing capabilities have been designed to inherit certain pro...
Evolution bestowed the blind cavefish with a resourcefully designed lateral-line of sensors that pla...
Feedback flow information is of significance to enable underwater locomotion controllers with higher...
In fish the lateral line is a sensory organ used to perceive water movement in the surrounding envir...
Abstract—This paper presents ongoing work toward the design and use of an artificial lateral-line sy...
Biological sensory systems often display great performance, inspiring engineers to develop artificia...
In search for more efficient propulsion through water, many methods for improving on the existing hy...
This thesis deals with the problem of controlling a biomimetic fish-like underwater robot developed ...
This thesis deals with the problem of controlling a biomimetic fish-like underwater robot developed ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Abstract — This paper describes how an underwater vehicle can control its motion by sensing the surr...
Chapter 3 presents a comprehensive review of the various biomimetic self-powered and low-powered MEM...
Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction...
Most fish have the capability of sensing flows and nearby movements even in dark or murky conditions...
Most fish have the capability of sensing flows and nearby movements even in dark or murky conditions...
Impressive robotic solutions with astonishing capabilities have been designed to inherit certain pro...
Evolution bestowed the blind cavefish with a resourcefully designed lateral-line of sensors that pla...
Feedback flow information is of significance to enable underwater locomotion controllers with higher...
In fish the lateral line is a sensory organ used to perceive water movement in the surrounding envir...