A safe driving system based on artificial intelligence
A safe driving system and artificial intelligence technology, applied in the field of artificial intelligence, can solve problems such as changes in driving habits, fatigue driving environment, endangering the safety of drivers, pedestrians and vehicles, etc., to achieve the effect of ensuring safety
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Embodiment 1
[0020] Embodiment 1: as figure 1 Shown: a safe driving system based on artificial intelligence, including a vehicle information detection module 1, an external environment collection module 2, a control module 3, a driving reminder module 4 and a driver operation information collection module 5;
[0021] The vehicle information detection module 1 is used to detect the vehicle's own performance and the environment inside the vehicle. The vehicle's own performance includes the accumulated mileage of the vehicle, braking, driving speed, gas pedal, tire pressure and vehicle load information; the inside environment includes the air quality inside the vehicle. and temperature and humidity;
[0022] The external environment collection module 2 is used to collect external environment information when the vehicle is running, including road information, traffic flow and people flow information, wherein the road information is the number of lanes, the position of the lane line and the st...
Embodiment 2
[0026] Embodiment 2: The vehicle information detection module 1 includes a dust concentration detection device and a temperature and humidity detection device, which respectively detect the air quality and temperature and humidity inside the vehicle.
[0027] Such as figure 2 As shown, the dust concentration detection device includes a resistor R1, a resistor R2, an amplifier Fa1, and a capacitor C1, wherein one end of the resistor R1 is connected to the P1.0 interface of the control module 3, and the other end is connected to the resistor R2; one end of the resistor R2 is connected to On the negative input port of the amplifier Fa1, the other end is connected to the output port of the amplifier Fa1; the capacitor C1 is connected in parallel with the resistor R2, and one end of the capacitor C1 is connected to the negative input port of the amplifier Fa1, and the other end is connected to the output port of the amplifier Fa1 above; the positive input terminal of the amplifier...
Embodiment 3
[0030] Embodiment 3: The driving reminding module 4 includes an alarm device and a voice prompting device, which respectively give an alarm to the abnormal driving of the vehicle and give corresponding voice prompts to the driver.
[0031] Such as Figure 4 As shown, the alarm device includes an alarm lamp D3, a resistor R13, a transistor Q1, and a speaker; the control module 3 includes: a chip AT89S52, resistors R11, R12, capacitors C7, C8, and C9, a crystal oscillator Y1, and a reply button K1. The 18 and 19 pins of the chip AT89S52 are connected to the capacitors C7 and C8 respectively, the crystal oscillator Y1 is connected to the middle of the capacitors C7 and C8, and the other end of C7 and C8 is grounded; the 9th pin of the AT89S52 is connected to the capacitor C9, and the resistor R11 is connected to the capacitor C9. The button K1 is connected in series to both ends of the capacitor C9, the other end of the capacitor is connected to the 5V equipotential, the resistor...
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