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WO2018137079A1 - Procédé et système d'alarme de fuite de gaz à base de mégadonnées et de robot - Google Patents

Procédé et système d'alarme de fuite de gaz à base de mégadonnées et de robot Download PDF

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Publication number
WO2018137079A1
WO2018137079A1 PCT/CN2017/072350 CN2017072350W WO2018137079A1 WO 2018137079 A1 WO2018137079 A1 WO 2018137079A1 CN 2017072350 W CN2017072350 W CN 2017072350W WO 2018137079 A1 WO2018137079 A1 WO 2018137079A1
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WO
WIPO (PCT)
Prior art keywords
natural gas
gas leakage
robot
interest rate
target
Prior art date
Application number
PCT/CN2017/072350
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English (en)
Chinese (zh)
Inventor
万忠凯
Original Assignee
深圳双创科技发展有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳双创科技发展有限公司 filed Critical 深圳双创科技发展有限公司
Priority to PCT/CN2017/072350 priority Critical patent/WO2018137079A1/fr
Publication of WO2018137079A1 publication Critical patent/WO2018137079A1/fr

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    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/12Alarms for ensuring the safety of persons responsive to undesired emission of substances, e.g. pollution alarms
    • G08B21/16Combustible gas alarms

Definitions

  • the invention relates to the technical field of Internet of things, in particular to a natural gas leakage alarm method and system based on big data and a robot.
  • the embodiment of the invention discloses a natural gas leakage alarm method and system based on big data and a robot, which can enable the outside world to know the natural gas leakage inside a residential building in time to prevent serious safety accidents.
  • a first aspect of an embodiment of the present invention discloses a natural gas leakage alarm system based on big data and a robot, comprising:
  • the alarm server is further configured to determine, according to the natural gas detection concentration inside the resident building, whether a natural gas leakage occurs inside the resident building for each of the residential buildings, and if so, calculate each registered speaker device of the city Location information and location information of the resident building a straight line distance therebetween; determining whether there is a target speaker device in the respective speaker devices that has a linear distance from the position information of the resident building that is less than a specified threshold, and if so, to the target speaker device and the monitoring station through the Internet of Things Sending a natural gas leak warning voice, the natural gas leak warning voice including location information and building name of the resident building where a natural gas leak occurs;
  • the target speaker device is configured to play the natural gas leakage alarm voice
  • sending a natural gas leakage alarm voice to the target speaker device through the Internet of Things includes:
  • the monitoring station is configured to calculate a linear distance between position information of each robot monitored by the monitoring station and position information of the resident building;
  • the robot is a transportation robot or a traffic command robot or a patrol robot;
  • the monitoring station is further configured to determine, according to a linear distance between the location information of each of the robots and the location information of the resident building, whether a linear distance between the location information of the resident building and the location information of the resident building is smaller than the first a target robot specifying a threshold, if present, transmitting the natural gas leak alarm voice to the target robot through the Internet of Things;
  • the monitoring station is further configured to count a total distance value of the target robot traveling on a day;
  • the monitoring station is further configured to determine that the total distance value is greater than a minimum distance value of the preset allowed wealth management, and if yes, query a target daily interest rate weighting coefficient corresponding to the total distance value; wherein the total distance value In proportion to the magnitude of the target daily interest rate weighting factor;
  • the monitoring station is further configured to report the user identifier corresponding to the target robot and the target daily interest rate weighting coefficient to the processing center;
  • the processing center is further configured to identify, according to the user identifier, a financial account corresponding to the user identifier;
  • the processing center is further configured to adjust a daily interest rate of the current day according to the target daily interest rate weighting coefficient, and obtain an actual daily interest rate of the current day, wherein the actual daily interest rate of the current day is greater than the daily interest rate of the current day;
  • the processing center is further configured to calculate, according to the actual daily interest rate of the current day and the immediate amount in the wealth management account, the current day value added corresponding to the financial account.
  • the alarm server is further configured to: when it is determined that there is no target speaker device in the respective speaker device that has a linear distance from the location information of the resident building that is less than a specified threshold, the Internet is registered to the city through the Internet of Things.
  • Each security rover sends a natural gas leakage alarm message;
  • the natural gas leakage alarm information includes location information and a building name of the resident building where the natural gas leakage occurs;
  • Each of the security flow stations is configured to output the natural gas leakage alarm information.
  • sending natural gas leakage alarm information to the registered public security stations of the city through the Internet of Things includes:
  • the natural gas leakage alarm voice further includes the number of residents entering the interior of the resident building where the natural gas leakage occurs; the natural gas leakage warning information further includes the number of residents entering the resident building of the natural gas leakage.
  • the natural gas leak warning voice further includes a natural gas leak location inside the resident building where the natural gas leak occurs; the natural gas leak warning information further includes a natural gas leak location inside the resident building where the natural gas leak occurs.
  • the processing center is further configured to: after determining, according to the user identifier, the financial account corresponding to the user identifier, determine whether the instantaneous amount in the financial account exceeds a preset minimum threshold for allowing additional value, if And performing the step of adjusting the daily interest rate of the current day according to the target daily interest rate weighting factor to obtain the actual daily interest rate of the current day; if not, calculating according to the daily interest rate of the current day and the immediate amount in the wealth management account number The value of the current day value corresponding to the financial account.
  • a second aspect of the embodiments of the present invention discloses a natural gas leakage alarm method based on big data and a robot, the method comprising:
  • the alarm server acquires the natural gas detection concentration of the inside of each resident building reported by the residential building in a certain city through the Internet of Things;
  • the alarm server determines, for each of the resident buildings, whether a natural gas leakage occurs inside the resident building according to a natural gas detection concentration inside the resident building, and if so, calculating location information of each speaker device registered in the city and a linear distance between the location information of the resident building; determining whether there is a target speaker device in the respective speaker devices that has a linear distance from the location information of the resident building that is less than a specified threshold, and if present, through the Internet of Things
  • the target speaker device and the monitoring station transmit a natural gas leakage alarm voice, the natural gas leakage alarm voice including location information and a building name of the resident building where a natural gas leak occurs;
  • the target speaker device plays the natural gas leakage alarm voice
  • sending a natural gas leakage alarm voice to the target speaker device through the Internet of Things includes:
  • the monitoring station calculates a linear distance between the position information of each robot monitored by the monitoring station and the position information of the resident building;
  • the robot is a transportation robot or a traffic command robot or a patrol robot;
  • the monitoring station determines, according to a linear distance between the position information of each robot and the position information of the resident building, whether there is a target that the linear distance between the position information of the resident building is less than the first specified threshold
  • the robot if present, transmits the natural gas leak alarm voice to the target robot through the Internet of Things;
  • the monitoring station counts the total distance value of the target robot traveling on the same day
  • the monitoring station determines that the total distance value is greater than a minimum distance value of the preset allowed wealth management, and if yes, queries a target daily interest rate weighting coefficient corresponding to the total distance value; wherein the total distance value and the target The size of the daily interest rate weighting coefficient is proportional to the relationship;
  • the monitoring station reports the user identifier corresponding to the target robot and the target daily interest rate weighting coefficient to the processing center;
  • the processing center identifies, according to the user identifier, a financial account corresponding to the user identifier;
  • the processing center adjusts the daily interest rate of the current day according to the target daily interest rate weighting coefficient, and obtains the actual daily interest rate of the current day, and the actual daily interest rate of the current day is greater than the daily interest rate of the current day;
  • the processing center calculates the current day value added corresponding to the wealth management account according to the actual daily interest rate of the current day and the instant amount in the wealth management account.
  • the method further includes:
  • the alarm server determines that there is no target speaker device in the respective speaker devices that has a linear distance from the position information of the resident building that is less than a specified threshold
  • Each of the registered security stations of the city sends a natural gas leakage alarm message;
  • the natural gas leakage warning information includes location information and a building name of the resident building where the natural gas leakage occurs;
  • the respective security flow stations output the natural gas leakage alarm information.
  • sending natural gas leakage alarm information to the registered public security stations of the city through the Internet of Things includes:
  • the natural gas leakage alarm voice further includes the number of residents entering the interior of the resident building where the natural gas leakage occurs; the natural gas leakage warning information further includes the number of residents entering the resident building of the natural gas leakage.
  • the natural gas leak warning voice further includes a natural gas leak location inside the resident building where the natural gas leak occurs; the natural gas leak warning information further includes a natural gas leak location inside the resident building where the natural gas leak occurs.
  • the method also includes:
  • the processing center determines whether the instant amount in the wealth management account exceeds a preset minimum amount threshold for allowing additional value added, and if so, performing the said weighting coefficient according to the target daily interest rate
  • the embodiment of the invention has the following beneficial effects:
  • the alarm server acquires the natural gas detection concentration of each resident building reported by the residential building in a certain city through the Internet of Things; for each resident building, the resident is judged according to the natural gas detection concentration inside the resident building.
  • a natural gas leak occurs in the elevator of the building, a linear distance between the location information of each of the registered speaker devices of the city and the location information of the resident building is calculated; when it is judged that there is a position information of the resident building with the location information of the resident building.
  • the natural gas leakage alarm voice including the location information and the building name of the residential building where the natural gas leakage occurs is transmitted to the target speaker device and the monitoring station through the Internet of Things; the target speaker is set to play the natural gas leakage alarm voice.
  • the financial account corresponding to the user identifier corresponding to the target robot can be used for financial management, and the target robot is encouraged to participate in the natural gas leakage alarm.
  • FIG. 1 is a schematic structural diagram of a natural gas leakage alarm system based on big data and a robot disclosed in an embodiment of the present invention
  • FIG. 2 is a schematic flow chart of a natural gas leakage alarm method based on big data and a robot disclosed in an embodiment of the present invention.
  • the embodiment of the invention discloses a natural gas leakage alarm method and system based on big data and a robot, which can enable the outside world to know the natural gas leakage of the elevator of a residential building in time to prevent the life of the trapped person from being dangerous. The details are described below separately.
  • FIG. 1 is a schematic structural diagram of a natural gas leakage alarm system based on big data and a robot disclosed in an embodiment of the present invention.
  • the big data and robot based natural gas leakage alarm system can include:
  • the alarm server 101 is configured to acquire the natural gas detection concentration of the inside of each resident building reported by the residential building in a certain city through the Internet of Things;
  • the alarm server 101 is further configured to determine, according to the natural gas detection concentration inside the resident building, whether a natural gas leakage occurs inside the resident building for each of the residential buildings, and if so, calculate each registered speaker of the city. a linear distance between the location information of the device and the location information of the resident building; determining whether there is a target speaker device 102 in the respective speaker devices that has a linear distance from the location information of the resident building that is less than a specified threshold, if There is, a natural gas leakage alarm voice is transmitted to the target speaker device 102 and the monitoring station 200 through the Internet of Things, the natural gas leakage alarm voice including location information and a building name of the resident building where a natural gas leak occurs;
  • the target speaker device 102 is configured to play the natural gas leakage alarm voice
  • sending a natural gas leakage alarm voice to the target speaker device through the Internet of Things includes:
  • the network sends a natural gas leak alarm voice to the target speaker device.
  • the monitoring station 200 is configured to calculate a linear distance between position information of each robot monitored by the monitoring station and position information of the resident building; the robot is a transportation robot or a traffic command robot or a patrol robot ;
  • the monitoring station 200 is further configured to determine, according to a linear distance between the location information of each of the robots and the location information of the resident building, whether a linear distance between the location information of the resident building and the location information of the resident building is less than a target robot of a specified threshold, if present, transmitting the natural gas leak alarm voice to the target robot through the Internet of Things;
  • the monitoring station 200 is further configured to count a total distance value of the target robot traveling on a day;
  • the monitoring station 200 is further configured to determine that the total distance value is greater than a minimum distance value of the preset allowed wealth management, and if yes, query a target daily interest rate weighting coefficient corresponding to the total distance value; wherein the total distance The value is proportional to the magnitude of the target daily interest rate weighting factor;
  • the monitoring station 200 is further configured to report the user identifier corresponding to the target robot and the target daily interest rate weighting coefficient to the processing center 300;
  • the processing center 300 is further configured to identify, according to the user identifier, a financial account corresponding to the user identifier;
  • the processing center 300 is further configured to adjust a daily interest rate of the current day according to the target daily interest rate weighting coefficient, and obtain an actual daily interest rate of the current day, where the actual daily interest rate of the current day is greater than the daily interest rate of the current day;
  • the processing center 300 is further configured to calculate, according to the actual daily interest rate of the current day and the immediate amount in the wealth management account, the current day value added corresponding to the financial account.
  • the alarm server 101 is further configured to: when it is determined that the target speaker device 102 that the linear distance between the location information of the resident building and the location information of the resident building is less than a specified threshold, the Internet of Things has been
  • the registered security traffic stations 103 send natural gas leakage alarm information; the natural gas leakage alarm information includes location information and building names of the residential building where natural gas leakage occurs;
  • Each of the security flow stations 103 is configured to output the natural gas leakage alarm information.
  • sending natural gas leakage alarm information to the registered public security stations of the city through the Internet of Things includes:
  • the natural gas leakage alarm voice further includes a number of residents entering the interior of the resident building where a natural gas leak occurs; the natural gas leakage warning information further includes the resident building where the natural gas leakage occurs. The number of residents entering the card internally.
  • the natural gas leakage alarm voice further includes a natural gas leakage location inside the resident building where the natural gas leakage occurs; the natural gas leakage alarm information further includes the resident of the natural gas leakage The location of natural gas leaks inside the building.
  • the processing center 300 is further configured to: after determining, according to the user identifier, the financial account corresponding to the user identifier, determine whether the instant amount in the financial account exceeds a preset minimum threshold for allowing additional value, if Exceeding, performing the adjustment according to the target daily interest rate weighting factor
  • the daily interest rate of the day the step of obtaining the actual daily interest rate of the current day; if not, the daily value added corresponding to the wealth management account is calculated according to the daily interest rate of the current day and the immediate amount in the wealth management account.
  • the alarm server obtains the natural gas detection concentration of each resident building reported by the residential building in a certain city through the Internet of Things; for each resident building, Calculating the linear distance between the location information of each registered speaker device and the location information of the resident building when determining the natural gas leakage of the elevator of the resident building according to the natural gas detection concentration inside the resident building; when judging each speaker device When there is a target speaker device in which the linear distance between the position information of the resident building is less than a specified threshold, the natural gas leakage of the location information and the building name of the resident building including the natural gas leakage is transmitted to the target speaker device and the monitoring station through the Internet of Things.
  • the target speaker is set to play the natural gas leak alarm voice.
  • the financial account corresponding to the user identifier corresponding to the target robot can be used for financial management, and the target robot is encouraged to participate in the natural gas leakage alarm.
  • FIG. 2 is a schematic flowchart diagram of a natural gas leakage alarm method based on big data and a robot disclosed in an embodiment of the present invention.
  • the big data and robot based natural gas leakage alarm method may include:
  • the alarm server acquires the natural gas detection concentration of each resident building reported by the residential building in a certain city through the Internet of Things.
  • the alarm server determines, for each of the resident buildings, whether a natural gas leakage occurs inside the resident building according to a natural gas detection concentration inside the resident building, and if yes, calculating a location of each speaker device registered in the city. a linear distance between the information and the location information of the resident building; determining whether there is a target speaker device in the respective speaker devices that has a linear distance from the location information of the resident building that is less than a specified threshold, if present, Networking
  • the target speaker device and the monitoring station transmit a natural gas leak alarm voice including location information and building name of the resident building where the natural gas leak occurred.
  • the target speaker device plays the natural gas leakage alarm voice.
  • sending a natural gas leakage alarm voice to the target speaker device through the Internet of Things includes:
  • the monitoring station calculates a linear distance between position information of each robot monitored by the monitoring station and position information of the resident building; the robot is a transportation robot or a traffic command robot or a patrol robot; The monitoring station determines, according to the linear distance between the position information of each robot and the position information of the resident building, whether there is a target robot whose linear distance from the position information of the resident building is less than a first specified threshold And if present, transmitting the natural gas leak alarm voice to the target robot through the Internet of Things.
  • the monitoring station collects a total distance value of the target robot traveling on a day; the monitoring station determines that the total distance value is greater than a minimum distance value of the preset allowed financial management, and if yes, queries the total distance value corresponding to a target daily interest rate weighting coefficient; wherein the total distance value is proportional to the size of the target daily interest rate weighting coefficient; the monitoring station reports the user identifier corresponding to the target robot and the target daily interest rate weighting coefficient To the processing center.
  • the processing center identifies, according to the user identifier, a financial account corresponding to the user identifier; the processing center adjusts a daily interest rate of the current day according to the target daily interest rate weighting coefficient, and obtains an actual daily interest rate of the current day.
  • the actual daily interest rate of the current day is greater than the daily interest rate of the current day; the processing center calculates the financial management account according to the actual daily interest rate of the current day and the immediate amount in the wealth management account number. The corresponding amount of the day's value added.
  • the method further includes:
  • the alarm server determines, when the respective speaker devices do not have a target speaker device whose linear distance between the position information of the resident building is less than a specified threshold, and the registered public security stations of the city through the Internet of Things Sending a natural gas leakage alarm message;
  • the natural gas leakage warning information includes location information and a building name of the resident building where a natural gas leak occurs;
  • the respective security flow stations output the natural gas leakage alarm information.
  • sending natural gas leakage alarm information to the registered public security stations of the city through the Internet of Things includes:
  • the natural gas leakage alarm voice further includes the number of residents entering the resident building by the natural gas leakage;
  • the natural gas leakage warning information further includes the number of residents entering the interior of the resident building where the natural gas leakage occurs.
  • the natural gas leakage alarm voice further includes a natural gas leakage position inside the resident building where the natural gas leakage occurs.
  • the natural gas leakage warning information further includes a natural gas leakage location inside the resident building where the natural gas leakage occurs.
  • the processing center is according to the a user identifier, after identifying the financial account corresponding to the user identifier, and the processing center adjusts the daily interest rate of the current day according to the target daily interest rate weighting coefficient, and obtains the instant in the wealth management account before obtaining the actual daily interest rate of the current day.
  • the amount exceeds a preset minimum amount threshold for allowing additional value increase, and if so, performing the step of adjusting the daily interest rate according to the target daily interest rate weighting factor to obtain the actual daily interest rate of the day; if not, according to the The daily interest rate of the current day and the instant amount in the wealth management account number are calculated, and the current day value added amount corresponding to the wealth management account number is calculated.
  • the alarm server acquires the natural gas detection concentration of each resident building reported by the residential building in a certain city through the Internet of Things; for each resident building, Calculating the linear distance between the location information of each registered speaker device and the location information of the resident building when determining the natural gas leakage of the elevator of the resident building according to the natural gas detection concentration inside the resident building; when judging each speaker device When there is a target speaker device in which the linear distance between the position information of the resident building is less than a specified threshold, the natural gas leakage of the location information and the building name of the resident building including the natural gas leakage is transmitted to the target speaker device and the monitoring station through the Internet of Things.
  • the target speaker is set to play the natural gas leak alarm voice.
  • the financial account corresponding to the user identifier corresponding to the target robot can be used for financial management, and the target robot is encouraged to participate in the natural gas leakage alarm.
  • ROM Read-Only Memory
  • RAM Random Access Memory
  • PROM Programmable Read-Only Memory
  • EPROM Erasable Programmable Read Only Memory
  • OTPROM One-time Programmable Read-Only Memory
  • EEPROM Electronically-Erasable Programmable Read-Only Memory
  • CD-ROM Compact Disc Read-Only Memory

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Abstract

L'invention concerne un procédé et un système d'alarme de fuite de gaz à base de mégadonnées et de robot. La présente invention est caractérisée en ce : qu'un serveur d'alarme acquiert une concentration de gaz mesurée à l'intérieur de chacun des bâtiments résidentiels enregistrés dans une ville, la concentration de gaz mesurée étant rapportée par ledit bâtiment résidentiel par l'intermédiaire d'un Internet des objets ; par rapport à chacun des bâtiments résidentiels, si l'on détermine que ledit bâtiment résidentiel présente une fuite de gaz dans un élévateur de ce dernier en fonction de la concentration de gaz mesurée à l'intérieur de ce dernier, une distance linéaire entre des informations de position de chacun des appareils de haut-parleur enregistrées dans la ville et des informations de position dudit bâtiment résidentiel est calculée ; et s'il est déterminé que les appareils de haut-parleur ont un appareil de haut-parleur cible ayant une distance par rapport aux informations de position dudit bâtiment résidentiel inférieure à un seuil spécifié, alors des données vocales d'alarme de fuite de gaz comprenant les informations de position et un nom de bâtiment dudit bâtiment résidentiel ayant une fuite de gaz sont envoyées à l'appareil haut-parleur cible et à une station de surveillance pour la lecture. La présente invention permet d'identifier à temps une fuite de gaz à l'intérieur d'un bâtiment résidentiel, empêchant ainsi des accidents graves liés à la sécurité.
PCT/CN2017/072350 2017-01-24 2017-01-24 Procédé et système d'alarme de fuite de gaz à base de mégadonnées et de robot WO2018137079A1 (fr)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6549827B1 (en) * 2000-11-20 2003-04-15 John Yen Fire prevention automation commanding control system using satellite-location/geography-information
CN102592391A (zh) * 2012-02-14 2012-07-18 上海市电力公司 一种智能消防的实现方法
CN103886722A (zh) * 2014-03-31 2014-06-25 深圳市戴维莱实业有限责任公司 燃气无线自组网预报警系统
CN105869341A (zh) * 2016-04-20 2016-08-17 中国石油化工股份有限公司 可视化火灾报警综合监控方法

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6549827B1 (en) * 2000-11-20 2003-04-15 John Yen Fire prevention automation commanding control system using satellite-location/geography-information
CN102592391A (zh) * 2012-02-14 2012-07-18 上海市电力公司 一种智能消防的实现方法
CN103886722A (zh) * 2014-03-31 2014-06-25 深圳市戴维莱实业有限责任公司 燃气无线自组网预报警系统
CN105869341A (zh) * 2016-04-20 2016-08-17 中国石油化工股份有限公司 可视化火灾报警综合监控方法

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