Abstract:
Disclosed is vehicle classification technology. A vehicle classification system includes a sound generation module configured to generate a sound caused by friction with a wheel of a passing vehicle and a sensor node configured to collect the sound generated by the sound generation module, analyze the collected sound to acquire axle information, and classify a model of the vehicle on the basis of the acquired axle information.
Abstract:
The present invention relates to a method and apparatus for controlling and configuring a guide robot system for correction and evaluation of walking posture. A method of analyzing and evaluating gait according to an embodiment of the present disclosure may comprise: projecting a guide footprint at a pre-configured point based on a user's walking direction; measuring a user's footprint in walking performed by a user based on a position of the guide footprint; and performing analysis and evaluation of the user's footprint based on the guide footprint.
Abstract:
Provided are a method of recognizing an emotion of a driver and an apparatus using the same. The method includes receiving emotion recognition information including at least one of vehicle state information and driver emotion state information, determining whether a dominant emotion state exists among one or more emotion states possessed by the driver on the basis of the emotion recognition information and an emotion recognition model, and performing a reaction inducing interaction with respect to the driver determined on the basis of the determined dominant emotion state together with the driver when the dominant emotion state of the driver is determined to exist.
Abstract:
Provided herein is a protocol communication method between a user terminal and the base station of a vehicle network system so as to easily provide a driver with pieces of information provided by an in-vehicle wireless sensor network system via the user terminal. A protocol communication method for a vehicle network system according to a first embodiment includes receiving, by the base station, a command message from the user terminal, receiving, by the base station, information responding to the command message from one or more vehicle wireless sensor nodes and/or an in-vehicle wired network, and sending, by the base station, a state message to the user terminal, based on the received information.