Compared to classic robotics, biological nervous systems respond to stimuli in a fast and efficient way regarding the body motor actions. Decision making, once the sensory information arrives to the brain, is in the order of ms, while the whole process from sensing to movement requires tens of ms. Classic robotic systems usually require complex computational abilities. Key differences between biological systems and robotic machines lie in the way information is coded and transmitted. A neuron is the "basic" element that constitutes biological nervous systems. Neurons communicate in an event-driven way through small currents or ionic pulses (spikes). When neurons are arranged in networks, they allow not only for the processing of sensory inf...
Neuromorphic engineering promises the deployment of low latency, adaptive and low power systems that...
The objective of this thesis is to analyze, design, simulate and implement a model that follows the ...
Neuromorphic engineering tries to mimic biological information processing. Address-Event Representa...
Linares-Barranco A, Perez-Peña F, Jimenez-Fernandez A, Chicca E. ED-BioRob: A Neuromorphic Robotic A...
Compared to classic robotics, biological nervous systems respond to stimuli in a fast and efficient ...
In this paper we present a complete spike-based architecture: from a Dynamic Vision Sensor (retina) ...
In this paper, we present two versions of a hardware processing architecture for modeling large netw...
This paper presents a spike-based control system applied to a fixed robotic platform. Our aim is to...
This paper presents an approach to open-loop motor control using Integrate and Fire (IF) neurons. T...
An ever increasing amount of robotic platforms are being equipped with a new generation of neuromorp...
Sensory control based on biological computational paradigms can be implemented using low-power ana...
Neuromorphic engineering is a growing and promising discipline nowadays. Neuro-inspiration and bra...
Sensory control based on biological computational paradigms can be implemented using low-power analo...
Neuromorphic electronic systems exhibit advantageous characteristics, in terms of low energy consump...
Despite being well established in robotics, classical motor controllers have several disadvantages:...
Neuromorphic engineering promises the deployment of low latency, adaptive and low power systems that...
The objective of this thesis is to analyze, design, simulate and implement a model that follows the ...
Neuromorphic engineering tries to mimic biological information processing. Address-Event Representa...
Linares-Barranco A, Perez-Peña F, Jimenez-Fernandez A, Chicca E. ED-BioRob: A Neuromorphic Robotic A...
Compared to classic robotics, biological nervous systems respond to stimuli in a fast and efficient ...
In this paper we present a complete spike-based architecture: from a Dynamic Vision Sensor (retina) ...
In this paper, we present two versions of a hardware processing architecture for modeling large netw...
This paper presents a spike-based control system applied to a fixed robotic platform. Our aim is to...
This paper presents an approach to open-loop motor control using Integrate and Fire (IF) neurons. T...
An ever increasing amount of robotic platforms are being equipped with a new generation of neuromorp...
Sensory control based on biological computational paradigms can be implemented using low-power ana...
Neuromorphic engineering is a growing and promising discipline nowadays. Neuro-inspiration and bra...
Sensory control based on biological computational paradigms can be implemented using low-power analo...
Neuromorphic electronic systems exhibit advantageous characteristics, in terms of low energy consump...
Despite being well established in robotics, classical motor controllers have several disadvantages:...
Neuromorphic engineering promises the deployment of low latency, adaptive and low power systems that...
The objective of this thesis is to analyze, design, simulate and implement a model that follows the ...
Neuromorphic engineering tries to mimic biological information processing. Address-Event Representa...