18338544. CONTROL SYSTEM, CONTROL DEVICE, CONTROL METHOD, AND COMPUTER-READABLE RECORDING MEDIUM STORING CONTROL PROGRAM simplified abstract (Fujitsu Limited)

From WikiPatents
Revision as of 04:10, 16 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

CONTROL SYSTEM, CONTROL DEVICE, CONTROL METHOD, AND COMPUTER-READABLE RECORDING MEDIUM STORING CONTROL PROGRAM

Organization Name

Fujitsu Limited

Inventor(s)

Koki Inoue of Yokohama (JP)

Kenji Taka of Kawasaki (JP)

Takayoshi Nakayama of Kawasaki (JP)

Shinya Fukuzaki of Shizuoka (JP)

Satoshi Itaya of Shizuoka (JP)

Naofumi Otsuki of Yokohama (JP)

Wataru Fukumoto of Yokohama (JP)

Tomomi Usui of Shizuoka (JP)

CONTROL SYSTEM, CONTROL DEVICE, CONTROL METHOD, AND COMPUTER-READABLE RECORDING MEDIUM STORING CONTROL PROGRAM - A simplified explanation of the abstract

This abstract first appeared for US patent application 18338544 titled 'CONTROL SYSTEM, CONTROL DEVICE, CONTROL METHOD, AND COMPUTER-READABLE RECORDING MEDIUM STORING CONTROL PROGRAM

Simplified Explanation

The patent application describes a system with control devices that can perform nth-order transmission, where each control device has a source list and a destination list for passing through control devices in a network.

  • Control devices are configured to perform nth-order transmission.
  • Each control device has a source list and a destination list for passing through control devices.
  • The system includes a processor that updates the source list and destination list based on received requests and responses.

Potential Applications

This technology could be applied in network routing systems, data transmission protocols, and communication networks where control devices need to pass information downstream in a specific order.

Problems Solved

This technology solves the problem of efficiently managing the flow of information through multiple control devices in a network, ensuring that data is transmitted in the correct order without delays or errors.

Benefits

The benefits of this technology include improved network performance, optimized data transmission, and enhanced control over the routing of information in complex systems.

Potential Commercial Applications

Potential commercial applications of this technology include telecommunications networks, data centers, industrial automation systems, and any other networked systems that require precise control over data transmission.

Possible Prior Art

One possible prior art for this technology could be existing network routing algorithms and protocols that manage the flow of data through interconnected devices in a network.

Unanswered Questions

How does this technology handle network congestion and traffic optimization?

This article does not delve into how the system manages network congestion or optimizes traffic flow through the control devices. It would be interesting to explore how the technology adapts to varying network conditions and ensures efficient data transmission.

What security measures are in place to protect the integrity of the transmitted data?

The patent abstract does not mention any security features or measures to safeguard the data being transmitted through the control devices. It would be important to understand how the system ensures data security and prevents unauthorized access or tampering.


Original Abstract Submitted

A system including control devices configured to perform nth-order transmission, each control device including: a storage device storing, in relation to the control devices, a source list being a list of the control devices to be passed through from a most upstream control device to the control device and a destination list being a list of the control devices to be passed through from the control device to a most downstream control device; and a processor performing processing including: when an update request including a first source list of a first control device is received, updating the source list using the update request, generating a new update request using the updated source list, and transmitting the new update request to a second control device; and when a completion response including a second destination list of the second control device is received, updating the destination list using the completion response.