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Electric vehicle lighting follow-up control system based on fuzzy control

An electric vehicle, fuzzy control technology, applied in the direction of optical signals, vehicle components, signal devices, etc., can solve problems such as unsatisfactory simulation effect, failure to set faults, poor fault analysis ability, etc., to achieve improved safety, high reliability, Strong real-time effects

Pending Publication Date: 2018-07-27
SUNRA WUXI DEV CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Such an important system is an indispensable learning topic for the personnel of auto repair and maintenance. However, the training platforms currently on the market can only perform simple simulations, have poor fault analysis capabilities, and cannot perform fault settings. not ideal

Method used

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  • Electric vehicle lighting follow-up control system based on fuzzy control
  • Electric vehicle lighting follow-up control system based on fuzzy control

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Embodiment Construction

[0022] The technical scheme of the present invention will be further described in detail below in conjunction with the accompanying drawings:

[0023] Such as figure 1 As shown, an electric vehicle light follow-up control system based on fuzzy control includes a data acquisition module and a light control module connected to it. The data acquisition module includes a steering wheel angle sensor, a wheel speed sensor, an analog-to-digital conversion module, and an amplifier circuit. Modules, data transmission modules and electric vehicle batteries;

[0024] The light control module includes an interface module, a display module, a microcontroller module, a headlight control module, and an automobile headlight;

[0025] The steering wheel angle sensor and the wheel speed sensor are respectively connected to a microcontroller module through an analog-to-digital conversion module and an amplifying circuit module, the amplifying circuit module is connected to the microcontroller module th...

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PUM

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Abstract

The invention discloses an electric vehicle lighting follow-up control system based on fuzzy control. The electric vehicle lighting follow-up control system comprises a data acquisition module and a light control module connected with the data acquisition module. The data acquisition module comprises a steering wheel angle sensor, a wheel rotation speed sensor, an analog digital conversion module,an amplifying circuit module, a data transmission module and an electric vehicle storage battery. The light control module includes an interface module, a display module, a microcontroller module, aheadlight control module and car headlights. The electric vehicle storage battery includes a vehicle-mounted battery, a voltage conversion circuit and a band-pass filter circuit. The electric vehiclelighting follow-up control system based on the fuzzy control realizes intelligent turning of the car headlights, can greatly improve the safety of driving at night, and reduces the labor intensity ofa driver. The structural design is simple, the real-time performance is high, the reliability is high, and the implementation is easy.

Description

Technical field [0001] The invention relates to a light control system, in particular to an electric car light follow-up control system based on fuzzy control, and belongs to the field of car light control. Background technique [0002] As cars are used more and more widely, people's research on cars is getting deeper and deeper. Car headlights are very heavy equipment when cars are walking at night. The current car headlight system can automatically turn on and off according to the light and shade of the sky. At the same time, it can automatically control the car lights to rotate up and down according to the corner and speed, and adjust the up and down brightness. Such an important system is an indispensable learning topic for auto repair and maintenance personnel. However, the current training platforms on the market can only perform simple simulations, have poor fault analysis capabilities, and cannot perform fault settings and simulation effects. not ideal. [0003] Adaptive...

Claims

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Application Information

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IPC IPC(8): B60Q1/076B60Q1/08B60Q1/12
CPCB60Q1/076B60Q1/08B60Q1/12
Inventor 许广军钱劲松杨兴胡孜硕张宗华
Owner SUNRA WUXI DEV CO LTD
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