IP Library Granted Patent US 11,898,895
Granted Patent B2
US 11,898,895 · App. 17/804,088 · Granted Feb 13, 2024

Methods and systems for natural gas data computation outside gas internet of things based on energy measuring

Inventors: Zehua Shao (Chengdu, CN); Haitang Xiang (Chengdu, CN); Yong Li (Chengdu, CN); Bin Liu (Chengdu, CN); Yaqiang Quan (Chengdu, CN)
Assignee: CHENGDU QINCHUAN IOT TECHNOLOGY CO., LTD.
G01F25/15G01F1/34G06Q50/06G16Y10/35G01D2204/30
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Quick Facts
Patent No.
US 11,898,895
App. No.
17/804,088
Granted
Feb 13, 2024
Kind
B2
Abstract

The embodiments of the present disclosure provide methods and systems for natural gas data computation outside a gas IoT based on energy measuring, including establishing the gas IoT. The object platform obtains consumed gas volume data and location data of the smart gas meter as first data and second data, and sending them to the management platform through the sensor network platform. The management platform generates consumed gas preprocessing data based on the first data and the second data, and generates energy measurement data after performing the computation outside the gas IoT on the consumed gas preprocessing data by the cloud platform outside the gas IoT. The management platform sends the energy measurement data to the user platform configured in a regional pipeline network center through the service platform. The user platform performs gas energy measurement of the smart gas meter based on the energy measurement data.

Claims (56)

1. A method for natural gas data computation outside a gas Internet of Things (IoT) based on energy measuring, comprising:

establishing the gas IoT, the gas IoT including a user platform, a service platform, a management platform, a sensor network platform, and an object platform that sequentially interacts;

obtaining, by the object platform, consumed gas volume data of a smart gas meter as first data, and sending it to the management platform through the sensor network platform;

obtaining, by the object platform, location data of the smart gas meter as second data, and sending it to the management platform through the sensor network platform;

perceiving, by the sensor network platform, the consumed gas volume data of the smart gas meter obtained by the object platform as the first data and sending, by the sensor network platform, the consumed gas volume data to the management platform;

perceiving, by the sensor network platform, the location data of the smart gas meter obtained by the object platform as the second data and sending, by the sensor network platform, the location data to the management platform; wherein

the management platform is set on a cloud platform to form a cloud platform in the gas IoT; and

a plurality of the cloud platforms in the gas IoT interact with at least one cloud platform outside the gas IoT, and computation outside the gas IoT is performed through the cloud platform outside the gas IoT;

generating, by the management platform, consumed gas preprocessing data based on the first data and the second data, and generating energy measurement data after performing the computation outside the gas IoT on the consumed gas preprocessing data by the cloud platform outside the gas IoT; and

sending, by the management platform, the energy measurement data to the user platform configured in a regional pipeline network center through the service platform; and

performing, by the user platform, gas energy measurement of the smart gas meter based on the energy measurement data

wherein the forming the cloud platform in the gas IoT further includes:

establishing a service platform A, a management platform A and a sensor network platform A on the cloud platform in the gas IoT; and

establishing a user platform A and an object platform A on two platforms which interact on the cloud platform in the gas IoT; wherein

the user platform A, the service platform A, the management platform A, the sensor network platform A, and the object platform A interact with each other in order, and the sensor network platform A perceives data of the object platform A and sends it to the management platform A; and

the management platform A performs computation processing on data of the object platform A and sends the processed data to the user platform A through the service platform A;

wherein a step that a plurality of the cloud platforms in the gas IoT interact with at least one cloud platform outside the gas IoT, and computation outside gas IoT is performed through the cloud platform outside the gas IoT further includes:

establishing a user platform B and an object platform B in the management platform A, and establishing a service platform B, a management platform B, and a sensor network platform B on the cloud platform outside the gas IoT; wherein

the user platform B, the service platform B, the management platform B, the sensor network platform B, and the object platform B interact in turn;

wherein the management platform A includes topology data of a local gas transmission and distribution pipeline network; and

the management platform A obtains a count of gas sources in the local gas transmission and distribution pipeline network corresponding to the second data according to the second data;

when the count of gas sources is greater than one, the management platform A obtains a gas supply pressure of each gas source corresponding to the second data as a first energy parameter and obtains a calorific value of each gas source corresponding to the second data as a second energy parameter; and

the management platform A is further configured to obtain, from the topology data of the local gas transmission and distribution pipeline network, gas transmission topology data of each gas source corresponding to the second data reaching the smart gas meter corresponding to the second data as a third energy parameter;

the management platform A sends the first energy parameter, the second energy parameter, and the third energy parameter to the management platform B through the sensor network platform B;

the management platform B obtains first energy measurement data by computing the first data based on the first energy parameter, the second energy parameter, and the third energy parameter, and sends it to the management platform A through the service platform B; and

the management platform A generates energy measurement data by processing the first energy measurement data.

2. The method for natural gas data computation outside a gas IoT based on energy measuring of claim 1 , wherein the management platform B extracts a length of each branch from each gas source to the smart gas meter corresponding to the second data from the third energy parameter, and removes a branch whose length is greater than a preset value to form a gas supply length factor for each gas source;

the management platform B obtains a gas supply contribution value of each gas source contributing to the smart gas meter as first weight data according to the first energy parameter and the gas supply length factor matching the first energy parameter;

the management platform B uses the first weight data as a weight to perform a regression operation on the second energy parameter to generate a measuring heating parameter; and

the management platform B multiplies the measuring heating parameter with the first data to form the first energy measurement data.

3. A system for natural gas data computation outside a gas Internet of Things (IoT) based on energy measuring, comprising:

the gas IoT, the gas IoT including a user platform, a service platform, a management platform, a sensor network platform, and an object platform that sequentially interacts; wherein

the object platform obtains consumed gas volume data of a smart gas meter as first data, and sends it to the management platform through the sensor network platform;

the object platform obtains location data of the smart gas meter as second data, and sends it to the management platform through the sensor network platform;

the management platform is set on a cloud platform to form a cloud platform in the gas IoT; and

a plurality of the cloud platforms in the gas IoT interact with at least one cloud platform outside the gas IoT, and computation outside the gas IoT is performed through the cloud platform outside the gas IoT;

the management platform generates consumed gas preprocessing data based on the first data and the second data, and generates energy measurement data after performing the computation outside the gas IoT on the consumed gas preprocessing data by the cloud platform outside the gas IoT;

the management platform sends the energy measurement data to the user platform configured in a regional pipeline network center through the service platform; and

the user platform performs gas energy measurement of the smart gas meter based on the energy measurement data;

a service platform A, a management platform A and a sensor network platform A are established on the cloud platform in the gas IoT; and

a user platform A and an object platform A are established on the two platforms which interact on the cloud platform in the gas IoT;

the user platform A, the service platform A, the management platform A, the sensor network platform A, and the object platform A interact with each other in order, and the sensor network platform A perceives data of the object platform A and sends it to the management platform A; and

the management platform A performs computation processing on the data of the object platform A and sends it to the user platform A through the service platform A;

a user platform B and an object platform B are established in the management platform A, and a service platform B, a management platform B, and a sensor network platform B are established on the cloud platform outside the gas IoT; and

the user platform B, the service platform B, the management platform B, the sensor network platform B, and the object platform B interact in turn;

the management platform A includes topology data of a local gas transmission and distribution pipeline network; and

the management platform A obtains a count of gas sources in the local gas transmission and distribution pipeline network corresponding to the second data according to the second data;

when the count of gas sources is greater than one, the management platform A obtains a gas supply pressure of each gas source corresponding to the second data as a first energy parameter and obtains a calorific value of each gas source corresponding to the second data as a second energy parameter; and

the management platform A is further configured to obtain, from the topology data of the local gas transmission and distribution pipeline network, gas transmission topology data of each gas source corresponding to the second data reaching the smart gas meter corresponding to the second data as a third energy parameter;

the management platform A sends first energy parameter, the second energy parameter, and the third energy parameter to the management platform B through the sensor network platform B;

the management platform B obtains the first energy measurement data by computing the first data based on the first energy parameter, the second energy parameter, and the third energy parameter, and sends it to the management platform A through the service platform B; and

the management platform A generates energy measurement data by processing the first energy measurement data.

4. The system for natural gas data computation outside a gas IoT based on energy measuring of claim 3 , wherein the management platform B extracts a length of each branch from each gas source to the smart gas meter corresponding to the second data from the third energy parameter, and removes a branch whose length is greater than a preset value to form a gas supply length factor for each gas source;

the management platform B obtains a gas supply contribution value of each gas source contributing to the smart gas meter as first weight data according to the first energy parameter and the gas supply length factor matching the first energy parameter;

the management platform B uses the first weight data as a weight to perform a regression operation on the second energy parameter to generate a measuring heating parameter; and

the management platform B multiplies the measuring heating parameter with the first data to form the first energy measurement data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2022
From: SHAO, ZEHUA; XIANG, HAITANG; LI, YONG; LIU, BIN; QUAN, YAQIANG
To: CHENGDU QINCHUAN IOT TECHNOLOGY CO., LTD.
Reel/Frame 060035/0371 →
Priority Claims (2)
CN 202110844484.8 · Jul 26, 2021 · national
CN 202210388235.7 · Apr 14, 2022 · national
Continuity (1)
Related Publication 20230027479A1 · Jan 26, 2023
Cited By (3)
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