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Microprocessor artificial intelligent control-based system device

A microprocessor and control system technology, applied in general control systems, control/regulation systems, sequence/logic controller program control, etc., can solve the problem that passwords are easy to be intercepted, WIFI is easy to be interfered by electromagnetic interference, and the direction of transmission Uncontrollable problems, to achieve the effect of improving processing performance, preventing dry burning, and planning use time

Inactive Publication Date: 2016-09-07
袁福德
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

WIFI is prone to electromagnetic interference, the direction of transmission is uncontrollable, and passwords are easily intercepted

Method used

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  • Microprocessor artificial intelligent control-based system device
  • Microprocessor artificial intelligent control-based system device

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0036] A microprocessor-based artificial intelligence control system, such as figure 1 As shown, it includes a central processing unit, a field programmable gate array circuit, a photoelectric detection circuit, an optical control lock module, an optical key module, an intelligent humidifier, a signal processing circuit, a power supply circuit, and a white LED;

[0037] The intelligent humidifier also includes a water level sensor, a temperature sensor, a humidity acquisition sensor, an audible and visual alarm, and a display circuit. The humidity acquisition sensor issues an execution command to obtain the water volume data signal, room temperature signal and indoor humidity signal in the humidifier, and the microprocessor amplifies, measures, and A / D converts the water volume data signal, room temperature signal and indoor humidity signal before transmitting To the humidification judging circuit, control the humidifier to work according to the set parameters, and at the same...

Embodiment 2

[0059] This embodiment is further optimized on the basis of the above embodiments. Further, in order to better realize the present invention, the PWM control mode can be used to regulate and control the motor speed, such as figure 1 As shown, the following structure is particularly provided: the optical control lock module is provided with an encoder, a motion controller, a PWM power amplifier, and a DC servo motor, and the field programmable gate array circuit is connected to the encoder, and the encoder is connected to A motion controller, the motion controller is connected to a PWM power amplifier, the PWM power amplifier is connected to a DC servo motor, and the DC servo motor is connected to an encoder.

[0060] In order to control the trajectory and movement of the robot, the field programmable gate array circuit loads the trajectory and movement data of the robot into the optical control lock module, optical key module and white light LED after corresponding conversion. ...

Embodiment 3

[0062] This embodiment is further optimized on the basis of any of the above embodiments. Further, in order to better realize the present invention, in order to improve the processing performance, and store more robot running tracks and actions, such as figure 1 As shown, the following structure is specially provided: it also includes a parameter memory, the parameter memory is connected to the central processing unit, and the robot running track data and action data are stored in the parameter memory, and the central processing unit will read such data and load In the field programmable gate array circuit, it is used to control the trajectory and movement of the robot.

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PUM

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Abstract

The invention discloses a microprocessor artificial intelligent control-based system device. The microprocessor artificial intelligent control-based system device includes a central processor, a field programmable gate array circuit, a photoelectric detection circuit, a light controlled lock module, a light key module and a light white LED; the central processor is connected with the field programmable gate array circuit; the field programmable gate array circuit is connected with the light controlled lock module; the light white LED is connected with the field programmable gate array circuit; the field programmable gate array circuit is connected with the light key module; the photoelectric detection circuit is connected with the field programmable gate array circuit; and a photosensitive element receiver, a reflector, a light source, a modulation waveform generator, a modulation waveform processor and a modulation amplifier are arranged in the photoelectric detection circuit. A microprocessor and field programmable gate array combined center control technology is adopted, so that the processing performance and the processing efficiency of the whole system can be improved, the operation of the whole system is more stable, and the failure rate of the system can be effectively reduced.

Description

technical field [0001] The invention relates to the technical field of automatic control, in particular, it is a robot automatic control system based on microprocessor visible light communication technology. Background technique [0002] Intelligent controls are automatic control technologies that can autonomously drive intelligent machines to achieve control goals without human intervention. The development of control theory has a history of more than 100 years. It has experienced the development stages of "classical control theory" and "modern control theory", and has entered the stage of "large system theory" and "intelligent control theory". The research and application of intelligent control theory is the expansion of modern control theory in depth and breadth. Since the 1980s, the rapid development of information technology and computing technology and the development and mutual penetration of other related disciplines have also promoted the continuous deepening of co...

Claims

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Application Information

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IPC IPC(8): G05B19/042G08C17/02H02J7/35G08C23/04
CPCG05B19/05G05D22/02G08B21/20G08C17/02G08C23/04H02J7/35H02P7/29
Inventor 袁福德李成
Owner 袁福德