Spiking neural P systems (in short, SN P systems) have been introduced as computing devices inspired by the structure and functioning of neural cells. The presence of unreliable components in SN P systems can be considered in many different aspects. In this paper we focus on two types of unreliability: the stochastic delays of the spiking rules and the stochastic loss of spikes. We propose the implementation of elementary SN P systems with DRAM-based CMOS circuits that are able to cope with these two forms of unreliability in an efficient way. The constructed bio-inspired circuits can be used to encode basic arithmetic modules.
The stochastic loss of spikes in spiking neural P systems: Design and implementation of reliable arithmetic circuits / Xu, Z.; Cavaliere, M.; An, P.; Vrudhula, S.; Cao, Y.. - In: FUNDAMENTA INFORMATICAE. - ISSN 0169-2968. - 134:1-2(2014), pp. 183-200. [10.3233/FI-2014-1098]
The stochastic loss of spikes in spiking neural P systems: Design and implementation of reliable arithmetic circuits
Cavaliere M.;
2014
Abstract
Spiking neural P systems (in short, SN P systems) have been introduced as computing devices inspired by the structure and functioning of neural cells. The presence of unreliable components in SN P systems can be considered in many different aspects. In this paper we focus on two types of unreliability: the stochastic delays of the spiking rules and the stochastic loss of spikes. We propose the implementation of elementary SN P systems with DRAM-based CMOS circuits that are able to cope with these two forms of unreliability in an efficient way. The constructed bio-inspired circuits can be used to encode basic arithmetic modules.File | Dimensione | Formato | |
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