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Computation power of asynchronous spiking neural P systems with polarizations

机译:具有偏振的异步尖刺神经P系统的计算能力

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Spiking neural P systems (SN P systems) are a class of parallel computing models, inspired by the way in which neurons process information and communicate to each other by means of spikes. In this work, we consider a variant of SN P systems, SN P systems with polarizations (PSN P systems), where the integrate-and-fire conditions are associated with polarizations of neurons. The computation power of PSN P systems working in the asynchronous mode (at a computation step, a neuron with enabled rules does not obligatorily fire), instead of the synchronous mode (a neuron with enabled rules should fire), is investigated. We proved that asynchronous PSN P systems with extended rules (the application of a rule can produce more than one spikes) or standard rules (all rules can only produce a spike) can both characterize partially blind counter machines, hence, such systems are not Turing universal. The equivalence of the computation power of asynchronous PSN P systems in both cases of using extended rules or standard rules indicates that asynchronous PSN P systems are robust in terms of the amount of information exchanged among neurons. It is known that synchronous PSN P systems with standard rules are Turing universal, so these results also suggest that the working model, synchronization or asynchronization, is an essential ingredient for a PSN P system to achieve a powerful computation capability. (C) 2018 Elsevier B.V. All rights reserved.
机译:尖峰神经P系统(SN P系统)是一类并行计算模型,其灵感来自神经元处理信息和通过尖峰彼此通信的方式。在这项工作中,我们考虑一种Sn P系统的变体,Sn P系统具有偏振(PSN P系统),其中整合和火灾条件与神经元的偏振相关。研究了在异步模式下工作的PSN P系统的计算能力(在计算步骤中,具有启用的规则的神经元不是义务射击的,而不是同步模式(具有启用的规则的神经元应该发射)。我们证明了具有扩展规则的异步PSN P系统(规则的应用程序可以产生多个尖峰)或标准规则(所有规则只能产生尖峰)都可以表征部分盲目的计数器,因此,这种系统不是图灵普遍的。在使用扩展规则或标准规则的两种情况下异步PSN P系统的计算能力指示异步PSN P系统在神经元之间交换的信息量方面是稳健的。众所周知,具有标准规则的同步PSN P系统是普遍的,因此这些结果还表明了工作模型,同步或异步,是PSN P系统实现强大的计算能力的基本成分。 (c)2018年elestvier b.v.保留所有权利。

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