Autores
Valadez Godínez Sergio
Sossa Azuela Juan Humberto
Título How the Accuracy and Computational Cost of Spiking Neuron Simulation are Affected by the Time Span and Firing Rate
Tipo Revista
Sub-tipo CONACYT
Descripción Computación y Sistemas
Resumen It is known that, depending on the numerical method, the simulation accuracy of a spiking neuron increases monotonically and that the computational cost increases in a power-law complexity as the time step reduces. Moreover, the mechanism responsible for generating the action potentials also affects the accuracy and computational cost. However, little attention has been paid to how the time span and firing rate influence the simulation. This study describes how the time span and firing rate variables affect the accuracy, computational cost, and efficiency. It was found that the simulation is importantly affected by these two variables.
Observaciones DOI 10.13053/CyS-21-4-2787
Lugar Ciudad de México
País Mexico
No. de páginas 841-861
Vol. / Cap. v. 21 no. 4
Inicio 2017-10-01
Fin
ISBN/ISSN