IP Library › Granted Patent US 11,237,855
Granted Patent B2
US 11,237,855 · App. 16/581,806 · Granted Feb 1, 2022

Engineering system and engineering method that use cloud environment

Inventor: Toshiko Kobayashi (Tokyo, JP)
Assignee: YOKOGAWA ELECTRIC CORPORATION
G06F9/455G05B19/0426G06F8/60G06F11/3648G05B2219/23008
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Quick Facts
Patent No.
US 11,237,855
App. No.
16/581,806
Granted
Feb 1, 2022
Kind
B2
Abstract

An engineering system includes a cloud. The cloud includes an engineering tool and a virtual device. The engineering tool is configured to create and debug software for operating a control device that controls a field device installed in a plant. The virtual device is configured to simulate an operation state of the control device in accordance with the software and with simulated input or input to the control device. The engineering tool debugs the software based on an operation result of the virtual device and on output from the control device or the simulated input.

Claims (26)

1. An engineering system comprising:

a cloud comprising:

an engineering tool configured to create and debug software for operating a control device that controls a field device installed in a plant; and

a virtual device configured to download the software created and debugged by the engineering tool and simulate an operation state of the control device in accordance with the downloaded software and with actual data related to a control state of the controlled field device transmitted from the control device in real time; and

a local engineering station configured to intermediate communication between the control device and the engineering tool,

wherein the local engineering station comprises a memory,

wherein the engineering tool debugs the downloaded software on the virtual device by comparing an operation result yielded by the simulation of the operation state of the control device in the virtual device and the actual data related to the control state of the controlled field device transmitted from the control device in real time,

wherein the debugged software is downloaded from the engineering tool to the local engineering station and stored in the memory of the local engineering station when the engineering tool finishes debugging the downloaded software on the virtual device,

wherein the debugged software stored in the memory of the local engineering station is downloaded from the local engineering station onto the control device while the plant is suspended and/or when the engineering tool cannot communicate directly with the control device,

wherein the cloud comprises a server and a storage device, and

wherein the server and the storage device are configured to implement the engineering tool and the virtual device.

2. The engineering system of claim 1 , further comprising two or more pairs of the control device and the engineering tool.

3. The engineering system of claim 1 , wherein the actual data related to the control state of the controlled field device includes:

data sent from the controlled field device and inputted to the control device, and

information related to a signal outputted from the control device to the controlled field device.

4. An engineering method to be executed by an engineering system comprising a cloud that includes an engineering tool and a virtual device, and a local engineering station comprising a memory, the engineering method comprising:

creating and debugging software, using the engineering tool, for operating a control device that controls a field device installed in a plant; and

downloading the software created and debugged by the engineering tool, using the virtual device, and simulating an operation state of the control device in accordance with the downloaded software and with actual data related to a control state of the controlled field device transmitted from the control device in real time,

wherein the local engineering station is configured to intermediate communication between the control device and the engineering tool,

wherein the engineering tool debugs the downloaded software on the virtual device by comparing an operation result yielded by the simulation of the operation state of the control device in the virtual device and the actual data related to the control state of the controlled field device transmitted from the control device in real time,

wherein the debugged software is downloaded from the engineering tool to the local engineering station and stored in the memory of the local engineering station when the engineering tool finishes debugging the downloaded software on the virtual device, and

wherein the debugged software stored in the memory of the local engineering station is downloaded from the local engineering station onto the control device while the plant is suspended and/or when the engineering tool cannot communicate directly with the control device.

5. The engineering method of claim 4 , wherein the actual data related to the control state of the controlled field device includes:

data sent from the controlled field device and inputted to the control device, and

information related to a signal outputted from the control device to the controlled field device.

6. The engineering method of claim 4 , wherein the engineering system further comprises two or more pairs of the control device and the engineering tool.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2019
From: KOBAYASHI, TOSHIKO
To: YOKOGAWA ELECTRIC CORPORATION
Reel/Frame 050482/0966 →
Priority Claims (1)
JP JP2018-182604 · Sep 27, 2018 · national
Continuity (1)
Related Publication 20200103842A1 · Apr 2, 2020
Cited By (2)
US 12,216,460 US 12,282,420