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Artificial neuron

A control unit and optical signal technology, applied in biological neural network models, digital memory information, instruments, etc., can solve problems such as limiting the possible complexity of artificial neural networks

Inactive Publication Date: 2016-04-27
SIGNIFY HLDG BV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

As can be appreciated, electrical interconnections limit the possible complexity of artificial neural networks

Method used

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Embodiment Construction

[0028]In the following description, the invention is mainly described with reference to an optical device in the form of an optical artificial neuron.

[0029] However, it should be noted that this in no way limits the scope of the invention, which is equally applicable to other applications such as light equipment, LED lights, coded light fixtures, mobile phones, watches, heads-up displays, televisions, monitors, and games , or can be adapted for other applications where optical communication is suitable.

[0030] figure 1 An optical device 101 according to the invention is schematically illustrated. figure 1 A light receiving device 102, a processing unit 103, and a light emitting device 104 are shown. The light receiving device 102 may be a photodiode and the light emitting device 104 may be a light emitting diode. The processing unit 103 is connected to the light receiving device 102 and the light emitting device 104 such that it can control the light emitting device 10...

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Abstract

The present invention relates to an optical device (101, 201, 305). The present invention may be implemented as optical artificial neurons. The optical device comprises an optically transmissive light-receiving device (102) which may be a photodiode, an optically transmissive light-emitting device (104, 304) such as a light-emitting diode, an optically transmissive processor (103) comprising a memory storage device (106). The light-emitting device and the light-receiving device are electrically connected to the processor which is configured to control the light-emitting device to emit an optical signal (307, 313) based on a first optical signal received by the light-receiving device. The optical device comprises an address which is transmitted with the optical signal. The address of may be recognized by the processor when processing a received optical signal and is used by the processor to determine to control the light-emitting device to emit an optical signal or not.

Description

technical field [0001] The present invention relates to optical devices. In particular, the invention relates to optical artificial neurons. Background technique [0002] Computational power in modern computers has grown significantly over the past few decades. In modern electronic devices, a large number of electronic components are electrically connected to communicate with each other. In some applications, discrete components are mounted on a printed circuit board (PCB) that includes the necessary conductive paths for interconnecting the components. For more complex applications where a greater number of components is required, integrated circuits are used, where the components are fabricated in a semiconductor substrate, and where communication between the components takes place in different metal layers provided on the substrate. [0003] Recently, artificial neural networks have been implemented to further increase computing power. Artificial neural networks may be...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06N3/067
CPCG06N3/0675G11C7/005G11C7/1081G06N3/067
Inventor F·A·吉亚纳夫M·P·C·M·克里杰恩
Owner SIGNIFY HLDG BV