A robust and scalable neuromorphic communication system by combining synaptic time multiplexing and MIMO-OFDM.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 24807453.
- Also identified by DOI 10.1109/TNNLS.2013.2280126.
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Abstract
This paper describes a novel architecture for enabling robust and efficient neuromorphic communication. The architecture combines two concepts: 1) synaptic time multiplexing (STM) that trades space for speed of processing to create an intragroup communication approach that is firing rate independent and offers more flexibility in connectivity than cross-bar architectures and 2) a wired multiple input multiple output (MIMO) communication with orthogonal frequency division multiplexing (OFDM) techniques to enable a robust and efficient intergroup communication for neuromorphic systems. The MIMO-OFDM concept for the proposed architecture was analyzed by simulating large-scale spiking neural network architecture. Analysis shows that the neuromorphic system with MIMO-OFDM exhibits robust and efficient communication while operating in real time with a high bit rate. Through combining STM with MIMO-OFDM techniques, the resulting system offers a flexible and scalable connectivity as well as a power and area efficient solution for the implementation of very large-scale spiking neural architectures in hardware.
Medical subject headings
- Brain
- Models, Neurological
- Neural Networks, Computer
- Neurons
- Synapses