18627053. DRIVING ASSISTANCE DEVICE AND A NON-TRANSITORY STORAGE MEDIUM simplified abstract (TOYOTA JIDOSHA KABUSHIKI KAISHA)

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DRIVING ASSISTANCE DEVICE AND A NON-TRANSITORY STORAGE MEDIUM

Organization Name

TOYOTA JIDOSHA KABUSHIKI KAISHA

Inventor(s)

Yuto Tagashira of Toyota-shi (JP)

Kazuki Fukazawa of Toyota-shi (JP)

DRIVING ASSISTANCE DEVICE AND A NON-TRANSITORY STORAGE MEDIUM - A simplified explanation of the abstract

This abstract first appeared for US patent application 18627053 titled 'DRIVING ASSISTANCE DEVICE AND A NON-TRANSITORY STORAGE MEDIUM

The driving assistance device described in the patent application is equipped with a processor that detects objects around a vehicle by analyzing data from sonar sensors, shift range indicators, and steering angle sensors.

  • The processor obtains detection values from sonar sensors, shift range indicators, and steering angle sensors to understand the vehicle's surroundings and driving conditions.
  • It controls a notification device to alert the driver based on the detected values, adjusting the content of the notifications accordingly.
  • The device calculates the distance between the vehicle and surrounding objects using sonar sensor data.
  • It determines the vehicle's traveling direction based on the shift range indicators.
  • By assigning priorities to sonar sensors based on the vehicle's direction and steering angle, the device adjusts notification contents to reflect the level of importance.

Potential Applications: - Enhanced safety features in vehicles - Improved driver assistance systems - Autonomous driving technology development

Problems Solved: - Minimizing the risk of collisions with objects around the vehicle - Providing real-time alerts to the driver based on the vehicle's surroundings - Enhancing overall driving experience and safety

Benefits: - Increased safety on the road - Improved driver awareness - Potential for reducing accidents and injuries

Commercial Applications: Title: Advanced Driving Assistance System for Enhanced Safety This technology can be utilized in the automotive industry to develop advanced driver assistance systems for various vehicles, including cars, trucks, and autonomous vehicles. The market implications include increased demand for safety features in vehicles and potential partnerships with automotive manufacturers to integrate this technology into their vehicles.

Questions about the technology: 1. How does this driving assistance device improve overall driver safety? 2. What are the key advantages of using sonar sensors in detecting objects around the vehicle?

Frequently Updated Research: Researchers are constantly working on improving the accuracy and efficiency of driving assistance systems by incorporating advanced sensors and artificial intelligence algorithms. Stay updated on the latest developments in this field to understand the future potential of this technology.


Original Abstract Submitted

A driving assistance device () having a processor () that executes a process of detecting objects around a vehicle (), wherein the processor is configured to execute following processes: obtaining first detection values outputted from a plurality of sonar sensors provided in the vehicle, second detection values indicating the state of the shift range, and third detection values corresponding to the steering angle of the steering device, controlling a notification device () that operates in conjunction with the first detection values and adjusting notification contents to be output, calculating the relative distance between the vehicle and the objects existing around the vehicle based on the first detection values, determining the traveling direction of the vehicle based on the second detected values, calculating priorities according to the sonar sensors individually based on the traveling direction and the steering angle, adjusting the notification contents according to level of the priorities.