Self-Powered Dye-Sensitized Solar-Cell-Based Synaptic Devices for Multi-Scale Time-Series Data Processing in Physical Reservoir Computing.

Hiroaki Komatsu, Norika Hosoda, Takashi Ikuno
Author Information
  1. Hiroaki Komatsu: Department of Applied Electronics, Graduate School of Advanced Engineering, Tokyo University of Science, Katsushika, Tokyo 125-8585, Japan.
  2. Norika Hosoda: Department of Applied Electronics, Graduate School of Advanced Engineering, Tokyo University of Science, Katsushika, Tokyo 125-8585, Japan.
  3. Takashi Ikuno: Department of Applied Electronics, Graduate School of Advanced Engineering, Tokyo University of Science, Katsushika, Tokyo 125-8585, Japan. ORCID

Abstract

Physical reservoir computing (PRC) using synaptic devices has attracted attention as a promising edge artificial intelligence device. To handle time-series data on various time scales, it is necessary to fabricate devices with the desired time scale. In this study, we fabricated a dye-sensitized solar-cell-based synaptic device with controllable time constants by changing the light intensity. This device showed synaptic features, such as paired-pulse facilitation and paired-pulse depression, in response to light intensity. Moreover, we found that the high computational performance of the time-series data processing task was achieved by changing the light intensity, even when the input pulse width was varied. In addition, the fabricated device can be used for motion recognition tasks. This study paves the way for realizing multiple time-scale PRC.

Keywords

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Created with Highcharts 10.0.0devicesynaptictimelightintensityPhysicalreservoircomputingPRCdevicesartificialintelligencetime-seriesdatastudyfabricateddye-sensitizedchangingpaired-pulseusingattractedattentionpromisingedgehandlevariousscalesnecessaryfabricatedesiredscalesolar-cell-basedcontrollableconstantsshowedfeaturesfacilitationdepressionresponseMoreoverfoundhighcomputationalperformanceprocessingtaskachievedeveninputpulsewidthvariedadditioncanusedmotionrecognitiontaskspaveswayrealizingmultipletime-scaleSelf-PoweredDye-SensitizedSolar-Cell-BasedSynapticDevicesMulti-ScaleTime-SeriesDataProcessingReservoirComputingsolarcellphysicalself-powered

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