FIELD: machine building.
SUBSTANCE: proposed vehicle. Vehicle (100) comprises body (104), gyroscope, speed sensor, units (102a–102c), bus (106a–106d), transceiver (118a–118d) connected to bus (106a–106d), GPS receiver, chamber, tire pressure sensor. Bus (106a–106d) position is determined based on wireless communication between transceiver (118a–118d) and nodes (102a–102c). Length of tire (106a–106d) in tire position is identified. Warning is provided to change the position of tire (106a–106d) when the duration exceeds the threshold value. Threshold value is decreased upon detection of steep turn by means of gyroscope and speed sensor. It is determined whether bus (106a–106d) is disconnected from body (104), based on wireless communication between transceiver (118a–118d) and nodes (102a–102c). Second warning is provided when tire (106a–106d) is disconnected from body (104). Speed at which nodes (102a–102c) translate the beacon signals for transceiver (118a–118d) is controlled, based on the location of vehicle (100) and the environment of vehicle (100) in order to provide control for disconnection of vehicle (100). Disclosed also is a method for monitoring positions of a vehicle tire and a vehicle.
EFFECT: longer service life of vehicle tires.
18 cl, 5 dwg
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