Reservoir computing using dynamic memristors for temporal information processing
Резервуарные вычисления с использованием динамических мемристоров для обработки временной информации
2017-12-13
SCID: 54.1/7yg6xr8b
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dynamic memristorshandwritten digit recognitionreservoir computingshort-term memorytemporal information processing
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Abstract (AI)
Reservoir computing systems utilize dynamic reservoirs having short-term memory to project features from the temporal inputs into a high-dimensional feature space. A readout function layer can then effectively analyze the projected features for tasks, such as classification and time-series analysis. The system can efficiently compute complex and temporal data with low-training cost, since only the readout function needs to be trained. Here we experimentally implement a reservoir computing system using a dynamic memristor array. We show that the internal ionic dynamic processes of memristors allow the memristor-based reservoir to directly process information in the temporal domain, and demonstrate that even a small hardware system with only 88 memristors can already be used for tasks, such as handwritten digit recognition. The system is also used to experimentally solve a second-order nonlinear task, and can successfully predict the expected output without knowing the form of the original dynamic transfer function.
Key Findings
1
A reservoir computing system was experimentally implemented using a dynamic memristor array.
2
A small hardware system with only 88 memristors can perform tasks such as handwritten digit recognition.
3
Internal ionic dynamics of memristors enable direct processing of temporal-domain information in the reservoir.
4
Reservoir computing with memristors retains low training cost because only the readout layer requires training.
5
The memristor-based reservoir experimentally solved a second-order nonlinear task and predicted outputs without knowing the original transfer function form.
Research Object
Reservoir computing system implemented using a dynamic memristor array
Research Subject
Temporal information processing capabilities of the memristor-based reservoir, including short-term memory from internal ionic dynamics for tasks like handwritten digit recognition and second-order nonlinear temporal prediction
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2017-12-13
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