Distributed computing with cloud computed feedback to process sensors

US10019019B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10019019-B2
Application numberUS-201615296134-A
CountryUS
Kind codeB2
Filing dateOct 18, 2016
Priority dateOct 18, 2016
Publication dateJul 10, 2018
Grant dateJul 10, 2018

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  1. Title

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  2. Abstract

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  5. First independent claim

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  7. Citations and related patents

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Abstract

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A process control system for controlling an industrial process includes a cloud-computing dependent (C 2 D) radar level gauge or ultrasonic flow meter (C 2 D sensor device) including a sensor, transducer, communications unit, with limited hardware/software incapable of calculating an accurate level calculation or high accuracy gas flow rate. A bus couples the sensed data from the C 2 D sensor device to an IP communications unit that outputs IP protocol data. The cloud computing system is coupled by an IP network to receive the IP protocol data and includes a processor executing advanced data processing algorithms which provides a second part of the C 2 D sensor device including processing the IP data to generate a remote computational result including the accurate level calculation/high accuracy gas flow rate. The cloud computing system feeds back the remote computational result to a process controller coupled to an actuator that controls processing equipment for automatically tuning the industrial process.

First claim

Opening claim text (preview).

The invention claimed is: 1. A method of distributed computing for controlling an industrial process, comprising: providing a cloud-computing dependent (C 2 D) radar level gauge or C 2 D ultrasonic flow meter positioned directly exposed to processing equipment in a plant including a sensor, a transducer, and communications including for transmitting sensed data from said sensor and limited hardware and software so that said C 2 D radar level gauge is incapable of performing an accurate level calculation and said C 2 D ultrasonic flow meter incapable of calculating a high accuracy volumetric or mass gas flow rate; coupling said sensed data over a bus from said C 2 D radar level gauge or said C 2 D ultrasonic flow meter to an Internet Protocol (IP) communications unit that converts said sensed data to IP protocol data; said IP communications unit transmitting said IP protocol data, over an IP network to an online cloud computing system including a processor executing stored advanced data processing algorithms which provides a second part of said C 2 D radar level gauge or said C 2 D ultrasonic flow meter including processing said IP protocol data to generate at least one remote computational result comprising said accurate level calculation for said C 2 D radar level gauge or said high accuracy volumetric or mass gas flow rate for said C 2 D ultrasonic flow meter, and feeding back said remote computational result through said IP network to a process controller coupled to an actuator that controls said processing equipment for automatically tuning at least one process parameter of said industrial process; and forecasting information obtained from processing of said IP protocol data and historic data that is communicated back through said IP network via a control room of said plant to at least said actuator or a control device with similar controllable functions to said actuator for tuning said industrial process. 2. The method of claim 1 , further comprising an IP broker having a memory that stores said IP protocol data arranged in a tree of topics positioned between said IP communications unit and said IP network. 3. The method of claim 1 , wherein said C 2 D radar level gauge or said C 2 D ultrasonic flow meter comprises said C 2 D radar level gauge. 4. The method of claim 1 , wherein said C 2 D radar level gauge or said C 2 D ultrasonic flow meter comprises said C 2 D ultrasonic flow meter. 5. The method of claim 1 , wherein said remote computational result further comprises computed information used for guiding generation of an updated online calibration and then updating calibration coefficients to reflect real-time process conditions in said accurate level calculation for said C 2 D radar level gauge or gas velocity profiles in calculating said high accuracy volumetric or mass gas flow rate for said C 2 D ultrasonic flow meter. 6. The method of claim 5 , wherein said tuning is implemented by a feedback loop to tune said C 2 D radar level gauge or said C 2 D ultrasonic flow meter to measure said industrial process more accurately and more reliably. 7. The method of claim 1 , wherein said remote computational result comprises condition-based monitoring (CBM) obtained from processing of said IP protocol data and historic data to perform diagnostics and monitoring heath conditions of said C 2 D radar level gauge or for said C 2 D ultrasonic flow meter. 8. A process control system for controlling an industrial process run in a plant using distributed computing, comprising: a cloud-computing dependent (C 2 D) radar level gauge or C 2 D ultrasonic flow meter positioned directly exposed to processing equipment in said plant including a sensor, a transducer, and communications unit including for transmitting sensed data from said sensor and limited hardware and software so that said C 2 D radar level gauge is incapable of performing an accurate level calculation and said C 2 D ultrasonic flow meter incapable of calculating a high accuracy volumetric or mass gas flow rate; a bus for coupling said sensed data from said C 2 D radar level gauge or said C 2 D ultrasonic flow meter to an Internet Protocol (IP) communications unit that converts said sensed data to IP protocol data; cloud computing system coupled by an IP network to receive said IP protocol data from said IP communications unit, said cloud computing system including a processor executing stored advanced data processing algorithms which provides a second part of said C 2 D radar level gauge or said C 2 D ultrasonic flow meter including processing said IP protocol data to generate at least one remote computational result comprising said accurate level calculation for said C 2 D radar level gauge or said high accuracy volumetric or mass gas flow rate for said C 2 D ultrasonic flow meter, and wherein said cloud computing system feeds back said remote computational result through said IP network to a process controller coupled to an actuator that controls said processing equipment for automatically tuning at least one process parameter of said industrial process, and wherein said remote computational result comprises forecasting information obtained from processing of said IP protocol data and historic data that is communicated back through said IP network via a control room of said plant to at least said actuator or a control device with similar controllable functions to said actuator for tuning said industrial process. 9. The process control system of claim 8 , wherein said C 2 D radar level gauge or said C 2 D ultrasonic flow meter comprises said C 2 D radar level gauge. 10. The process control system of claim 8 , wherein said C 2 D radar level gauge or said C 2 D ultrasonic flow meter comprises said C 2 D ultrasonic flow meter. 11. The process control system of claim 8 , further comprising an IP broker having a memory that stores said IP protocol data arranged in a tree of topics positioned between said IP communications unit and said IP network. 12. The process control system of claim 8 , wherein said remote computational result further comprises computed information used for guiding generation of an updated online calibration and then updating calibration coefficients to reflect real-time process conditions in said accurate level calculation for said C 2 D radar level gauge or gas velocity profiles in calculating said high accuracy volumetric or mass gas flow rate for said C 2 D ultrasonic flow meter. 13. The process control system of claim 12 , wherein said tuning is implemented by a feedback loop to tune said C 2 D radar level gauge or said C 2 D ultrasonic flow meter to measure said industrial process more accurately and more reliably. 14. The process control system of claim 8 , wherein said remote computational result comprises condition-based monitoring (CBM) obtained from processing of said IP protocol data and historic data to perform diagnostics and monitoring heath conditions of said C 2 D radar level gauge or said C 2 D ultrasonic flow meter.

Assignees

Inventors

Classifications

  • by measuring frequency, phase shift or propagation time of electromagnetic or other waves, e.g. using ultrasonic flowmeters · CPC title

  • Radar · CPC title

  • Special purpose or proprietary protocols or architectures (network applications for proprietary or special purpose networking environments H04L67/12) · CPC title

  • Flow · CPC title

  • Systems determining position data of a target · CPC title

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What does patent US10019019B2 cover?
A process control system for controlling an industrial process includes a cloud-computing dependent (C 2 D) radar level gauge or ultrasonic flow meter (C 2 D sensor device) including a sensor, transducer, communications unit, with limited hardware/software incapable of calculating an accurate level calculation or high accuracy gas flow rate. A bus couples the sensed data from the C 2 D sensor d…
Who is the assignee on this patent?
Honeywell Int Inc
What technology area does this patent fall under?
Primary CPC classification G05D7/06. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Jul 10 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).