In this article, we introduce the approach to the realization of ontogenetic development and fault tolerance that will be implemented in the POEtic tissue, a novel reconfigurable digital circuit dedicated to the realization of bio-inspired systems. The modelization in electronic hardware of the developmental process of multi-cellular biological organisms is an approach that could become extremely useful in the implementation of highly complex systems, where concepts such as self-organization and fault tolerance are key issues. The concepts presented in this article represent an attempt at finding a useful set of mechanisms to allow the implementation in digital hardware of a bio-inspired developmental process with a reasonable overhead
This thesis presents a biologically-inspired developmental model for the design of digital circuits....
Abstract. We present a new approach that is able to produce an increased fault tolerance in bio-insp...
A unique, scientific research instrument and art piece, the BioWall models bio-inspired electronic t...
Fault tolerance is a crucial operational aspect of biological systems and the self-repair capabiliti...
In this paper, we introduce the general architecture of a new electronic tissue called POEtic. This ...
This paper presents the physical hardware realization of a novel bio-inspired architecture, called P...
In this paper, we introduce the general architecture of a new electronic tissue called POEtic. This ...
Abstract. It is clear to all, after a moments thought, that nature has much we might be inspired by ...
The implementation of bio-inspired systems in hardware has traditionally been more a matter of artis...
Abstract. It is clear to all, after a moments thought, that nature has much we might be inspired by ...
Abstract — The design of a new biologically inspired artificial developmental system is described in...
Biological inspiration in the design of computing machines could allow the creation of new machines ...
In this paper, we introduce the general architecture of a new electronic tissue called POEtic. This ...
Biological inspiration in the design of computing machines could allow the creation of new machines ...
One of the major obstacles found when trying to construct artefacts derived from principles observed...
This thesis presents a biologically-inspired developmental model for the design of digital circuits....
Abstract. We present a new approach that is able to produce an increased fault tolerance in bio-insp...
A unique, scientific research instrument and art piece, the BioWall models bio-inspired electronic t...
Fault tolerance is a crucial operational aspect of biological systems and the self-repair capabiliti...
In this paper, we introduce the general architecture of a new electronic tissue called POEtic. This ...
This paper presents the physical hardware realization of a novel bio-inspired architecture, called P...
In this paper, we introduce the general architecture of a new electronic tissue called POEtic. This ...
Abstract. It is clear to all, after a moments thought, that nature has much we might be inspired by ...
The implementation of bio-inspired systems in hardware has traditionally been more a matter of artis...
Abstract. It is clear to all, after a moments thought, that nature has much we might be inspired by ...
Abstract — The design of a new biologically inspired artificial developmental system is described in...
Biological inspiration in the design of computing machines could allow the creation of new machines ...
In this paper, we introduce the general architecture of a new electronic tissue called POEtic. This ...
Biological inspiration in the design of computing machines could allow the creation of new machines ...
One of the major obstacles found when trying to construct artefacts derived from principles observed...
This thesis presents a biologically-inspired developmental model for the design of digital circuits....
Abstract. We present a new approach that is able to produce an increased fault tolerance in bio-insp...
A unique, scientific research instrument and art piece, the BioWall models bio-inspired electronic t...