Fault tolerance is a remarkable feature of biological systems and their self-repair capability influence modern electronic systems. In this paper, we propose a novel plastic neural network model, which establishes homeostasis in a spiking neural network. Combined with this plasticity and the inspiration from inhibitory interneurons, we develop a fault-resilient robotic controller implemented on an FPGA establishing obstacle avoidance task. We demonstrate the proposed methodology on a spiking neural network implemented on Xilinx Artix-7 FPGA. The system is able to maintain stable firing (tolerance ±10%) with a loss of up to 75% of the original synaptic inputs to a neuron. Our repair mechanism has minimal hardware overhead with a tuning circu...
Spike-based brain-inspired systems have shown an immense capability to achieve internal stability, w...
Artificial Intelligence (AI) and machine learning algorithms are taking up the lion's share of the t...
The human brain is structured with the capacity to repair itself. This plasticity of the brain has m...
Fault tolerance is a remarkable feature of biological systems and their self-repair capability influ...
Fault tolerance is a remarkable feature of biological systems and their self-repair capability influ...
Fault tolerance is a remarkable feature of biological systems and their self-repair capability influ...
We present a novel methodology that addresses the problem of faults in synapses of a spiking neural ...
We present a novel methodology that addresses the problem of faults in synapses of a spiking neural ...
The paper presents a neuromorphic system implemented on a Field Programmable Gate Array (FPGA) devic...
The paper presents a neuromorphic system implemented on a Field Programmable Gate Array (FPGA) devic...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
Spike-based brain-inspired systems have shown an immense capability to achieve internal stability, w...
The human brain is structured with the capacity to repair itself. This plasticity of the brain has m...
Spike-based brain-inspired systems have shown an immense capability to achieve internal stability, w...
Artificial Intelligence (AI) and machine learning algorithms are taking up the lion's share of the t...
The human brain is structured with the capacity to repair itself. This plasticity of the brain has m...
Fault tolerance is a remarkable feature of biological systems and their self-repair capability influ...
Fault tolerance is a remarkable feature of biological systems and their self-repair capability influ...
Fault tolerance is a remarkable feature of biological systems and their self-repair capability influ...
We present a novel methodology that addresses the problem of faults in synapses of a spiking neural ...
We present a novel methodology that addresses the problem of faults in synapses of a spiking neural ...
The paper presents a neuromorphic system implemented on a Field Programmable Gate Array (FPGA) devic...
The paper presents a neuromorphic system implemented on a Field Programmable Gate Array (FPGA) devic...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
Spike-based brain-inspired systems have shown an immense capability to achieve internal stability, w...
The human brain is structured with the capacity to repair itself. This plasticity of the brain has m...
Spike-based brain-inspired systems have shown an immense capability to achieve internal stability, w...
Artificial Intelligence (AI) and machine learning algorithms are taking up the lion's share of the t...
The human brain is structured with the capacity to repair itself. This plasticity of the brain has m...