18467486. PARKING ASSIST APPARATUS simplified abstract (TOYOTA JIDOSHA KABUSHIKI KAISHA)

From WikiPatents
Revision as of 06:03, 26 April 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

PARKING ASSIST APPARATUS

Organization Name

TOYOTA JIDOSHA KABUSHIKI KAISHA

Inventor(s)

Motonari Obayashi of Nagakute-shi (JP)

Takuya Nakagawa of Nagoya-shi (JP)

Yoshiki Hayakawa of Kariya-shi (JP)

PARKING ASSIST APPARATUS - A simplified explanation of the abstract

This abstract first appeared for US patent application 18467486 titled 'PARKING ASSIST APPARATUS

Simplified Explanation

The parking assist apparatus described in the patent application includes a sensor that detects objects around a parking space and a controller that assists in parking the vehicle based on the sensor's detection results. The controller provides a margin to the size of peripheral objects detected by the sensor, allowing for more accurate parking assist control.

  • Sensor detects objects by receiving reflected waves
  • Controller assists in parking based on sensor's detection results
  • Margin provided to size of peripheral objects for more accurate parking assist control

Potential Applications

The technology described in the patent application could be applied in various industries and settings, including:

  • Automotive industry for parking assist systems
  • Smart city infrastructure for parking management
  • Robotics for object detection and navigation systems

Problems Solved

The parking assist apparatus addresses several issues, including:

  • Difficulty in accurately detecting objects around a parking space
  • Challenges in maneuvering a vehicle into a narrow parking space
  • Potential accidents or collisions while parking in tight spaces

Benefits

The benefits of the parking assist apparatus include:

  • Improved accuracy in detecting objects for safer parking
  • Enhanced convenience for drivers when parking in challenging spaces
  • Reduced risk of accidents or damage to the vehicle or surrounding objects

Potential Commercial Applications

The technology could be commercially applied in various sectors, such as:

  • Automotive industry for integrating parking assist systems in vehicles
  • Smart city solutions for enhancing parking management in urban areas
  • Robotics industry for developing advanced object detection and navigation systems

Possible Prior Art

One potential prior art for this technology could be existing parking assist systems in vehicles that use sensors to detect objects around the vehicle while parking. Additionally, similar object detection and navigation systems in robotics and smart city infrastructure may also be considered as prior art.

Unanswered Questions

How does the sensor differentiate between different types of objects in the vicinity of the parking space?

The patent application does not provide specific details on how the sensor distinguishes between various objects, such as vehicles, pedestrians, or obstacles, in the surrounding area.

What is the range of the sensor's detection capabilities and how does it impact the accuracy of the parking assist control?

The patent application does not mention the range of the sensor or how it affects the precision of the parking assist control when detecting objects at different distances from the vehicle.


Original Abstract Submitted

The parking assist apparatus includes a sensor that detects an object by receiving a reflected wave reflected by the object by a transmitted wave, and a controller that executes parking assist control for parking the vehicle in a parking space set based on a detection result of the sensor. The controller provides a predetermined margin to a size of a peripheral object, which is an object detected by the sensor and exists around the parking space, in a provisional direction in which the parking space is narrowed. The controller executes parking assist control using a size of the peripheral object to which the margin is provided. When the size of the peripheral object newly detected by the sensor becomes larger than the size to which the margin is provided, the controller executes parking assist control using the size of the peripheral object newly detected by the sensor.