18621734. TRANSPORT SYSTEM simplified abstract (TOYOTA JIDOSHA KABUSHIKI KAISHA)

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TRANSPORT SYSTEM

Organization Name

TOYOTA JIDOSHA KABUSHIKI KAISHA

Inventor(s)

Daiki Fukunaga of Toyota-shi (JP)

Shiro Oda of Anjo-shi (JP)

Takeshi Matsui of Nisshin-shi (JP)

TRANSPORT SYSTEM - A simplified explanation of the abstract

This abstract first appeared for US patent application 18621734 titled 'TRANSPORT SYSTEM

Simplified Explanation:

The patent application describes a transport system that includes a mobile robot with a wagon mounted on it. The wagon has convex portions that protrude downward, and the robot has a platform that can raise and lower to deliver the wagon. An optical sensor is used to detect when the convex portions of the wagon are inserted into corresponding concave portions on the robot.

  • The transport system includes a mobile robot with a wagon mounted on it.
  • The wagon has convex portions that protrude downward.
  • The robot has a platform that can raise and lower to deliver the wagon.
  • An optical sensor is used to detect when the convex portions of the wagon are inserted into corresponding concave portions on the robot.
  • The system allows for efficient and precise transportation of goods.

Potential Applications:

This technology could be used in warehouses, factories, and other industrial settings for automated transportation of goods. It could also be applied in logistics and distribution centers to streamline operations.

Problems Solved:

This technology solves the problem of manual transportation of goods, which can be time-consuming and labor-intensive. It also addresses the need for precise positioning and alignment of wagons during transportation.

Benefits:

The benefits of this technology include increased efficiency, reduced labor costs, improved safety, and enhanced accuracy in transporting goods. It can also lead to faster turnaround times and increased productivity.

Commercial Applications:

Title: Automated Transport System for Industrial Applications

This technology has significant commercial potential in industries that require automated transportation of goods, such as manufacturing, logistics, and distribution. It can improve operational efficiency, reduce costs, and enhance overall productivity.

Prior Art:

Readers interested in prior art related to this technology can explore patents and research papers in the fields of robotics, automation, and material handling systems. They may also look into existing transport systems used in industrial settings.

Frequently Updated Research:

Researchers in the field of robotics and automation are constantly working on improving transport systems to make them more efficient, reliable, and cost-effective. Stay updated on the latest advancements in this technology to leverage its full potential.

Questions about Automated Transport Systems:

1. How does this technology improve efficiency in industrial settings?

  - This technology improves efficiency by automating the transportation of goods, reducing manual labor and streamlining operations.

2. What are the safety implications of using automated transport systems?

  - Automated transport systems can enhance safety by reducing the risk of accidents and injuries associated with manual handling of heavy loads.


Original Abstract Submitted

A transport system according to the present disclosure includes a mobile robot that moves with a wagon mounted thereon, the wagon having a plurality of convex portions that protrude downward. The mobile robot includes a platform that has a mounting surface on which the wagon is placed and that enters under the wagon, a raising and lowering mechanism that raises and lowers the platform to deliver the wagon, a plurality of concave portions provided corresponding to the plurality of convex portions of the wagon, an optical sensor provided on a side surface of at least one concave portion among the plurality of concave portions, and a detection unit that detects that at least one of the plurality of convex portions is inserted into the at least one concave portion according to a detection result of the optical sensor.