WO2019168111A1 - Système de gestion pour un sujet de gestion dans un bâtiment, procédé de gestion pour un sujet de gestion dans un bâtiment, et programme d'ordinateur - Google Patents

Système de gestion pour un sujet de gestion dans un bâtiment, procédé de gestion pour un sujet de gestion dans un bâtiment, et programme d'ordinateur Download PDF

Info

Publication number
WO2019168111A1
WO2019168111A1 PCT/JP2019/007873 JP2019007873W WO2019168111A1 WO 2019168111 A1 WO2019168111 A1 WO 2019168111A1 JP 2019007873 W JP2019007873 W JP 2019007873W WO 2019168111 A1 WO2019168111 A1 WO 2019168111A1
Authority
WO
WIPO (PCT)
Prior art keywords
management
building
information
management target
target
Prior art date
Application number
PCT/JP2019/007873
Other languages
English (en)
Japanese (ja)
Inventor
鈴木 孝典
賢 大久保
毅 小海
Original Assignee
株式会社TACK&Co.
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 株式会社TACK&Co. filed Critical 株式会社TACK&Co.
Publication of WO2019168111A1 publication Critical patent/WO2019168111A1/fr

Links

Images

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/06Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/08Construction

Definitions

  • the present invention relates to an in-building management object management system, an in-building management object management method, and a program.
  • IC tags are attached to workers working on construction sites and work vehicles and machines used on construction sites, and IC tag readers are installed in each space of the construction site or its entrance / exit so that workers and work on the construction site
  • a system for managing movement of a car, a machine, or the like is known (see, for example, Patent Document 1).
  • a pressure sensor that is held by a worker existing in a high-rise building under construction, measures atmospheric pressure and outputs measurement data, and is held by a worker or a work vehicle and outputs from the pressure sensor.
  • a wireless chip that transmits measured data, a main receiver that is installed at the construction site and that receives measurement data transmitted from the wireless chip, and is installed at the reference height of the construction site and is at the reference height
  • the reference air pressure sensor that measures and outputs the measurement data, the measurement data of the air pressure received by the main receiver, and the measurement data of the reference air pressure output from the reference air pressure sensor, the floor of the worker or work vehicle
  • a construction site management system that demands is disclosed.
  • there are a large number of portable and non-transportable items on the construction site and it is difficult to grasp and manage information such as the owner and number of those in the above configuration.
  • the present invention has been made in view of at least one of the above-described problems, and an object thereof is to provide a system capable of easily grasping and managing the floor, affiliation, owner, number, etc. of a person or an object at a construction site. To do.
  • one aspect of the management object management system in a building of the present invention is arranged in a management object in the building, and measures the atmospheric pressure and temperature in the building and outputs measurement data.
  • a transmitter (110) that includes a sensor and transmits the measurement data as identifiable identification information; a management target management server (60) that collects identification information from the transmitter via a network; and the management A portable terminal (10) including a management target information display unit (30) for displaying identification information provided from the target management server (60), and the management target management server (60) includes the transmitter (110).
  • the location floor of the management target obtained by the calculation unit (80) and the The management target information related to the quantity and the storage unit (90) that stores the management target information of the building in which the management target is stored in association with each other, and the management target information and the building information stored in the storage unit.
  • One aspect of the management object management method in the building of the present invention is a step of measuring the atmospheric pressure and temperature in the building by a transmitter, outputting measurement data, and transmitting the measurement data as identification information that can be identified;
  • In-building management object management comprising: a step of collecting identification information from a transmitter via a network by a management target management server; and a step of displaying identification information provided from the management target management server by a portable terminal.
  • a method for determining a location floor and a quantity of a management target in a building based on measurement data transmitted from a transmitter by a management target management server, and management related to the location floor and quantity of the determined management target A step of associating and storing the object information and the building information of the building in which the management object is stored, the stored management object information and the previous And having the steps of generating screen data indicating the building information, and transmitting the generated screen data to the managed information display unit.
  • One aspect of the program of the present invention includes an atmospheric pressure sensor that is disposed on a management target in a building, measures the atmospheric pressure and temperature in the building, and outputs measurement data, and can identify the measurement data.
  • a management target management server for collecting identification information from the transmitter via a network
  • a portable terminal including a management target information display unit for displaying the identification information provided from the management target management server
  • a program for causing a computer to execute a management target management method in a building in a management target management system in a building comprising: a management target management server based on the measurement data transmitted from a transmitter A step of obtaining the location and quantity of the management target, management information on the obtained floor and quantity of the management target, and management Storing the building information of the building in which the object is housed in association with each other, generating the screen data indicating the stored management object information and building information, and the generated screen data in the management object information display unit And causing the computer to execute a process including the step of transmitting.
  • an in-building management object management system an in-building management object management method, and a program that can easily grasp and manage the location floor, affiliation, owner, number, etc. of people and objects at a construction site. Can be provided.
  • an in-building management object management system an in-building management object management method, and a program according to an embodiment of the present invention will be described with reference to the drawings.
  • the in-building management object management method and program of the present invention will be described by taking the operation of the in-building management object management system and a program installed to function as the in-building management object management system as an example.
  • the in-building management object management system, the in-building management object management method, and the program according to the embodiment of the present invention according to the present invention are not limited to the embodiments described below.
  • the management object management system 1 in a building is possessed by a user in a building and has a network access function, for example, a mobile terminal 10 such as a smartphone or a tablet, or an office Personal computer (PC) 11, the portable terminal 10, etc., and a network 15 (base station 5 and a communication network (hereinafter referred to as “network”) 17, 18) are communicably connected.
  • a management server 60 that performs a cloud computing process, a function for notifying information on atmospheric pressure, temperature, and humidity, and identification information (ID) Is attached to the management target 13 (person, individual (operating carrier, non-operating carrier, etc.)).
  • a machine 110, and a weather information distribution server 16 has a function of notifying to acquire meteorological data from a variety of weather information providing site external.
  • the transmitter 110 includes an atmospheric pressure sensor 130 that acquires atmospheric pressure information.
  • the atmospheric pressure sensor 130 includes a temperature sensor 131 that acquires temperature information and a humidity sensor 132 that acquires humidity information.
  • the temperature sensor 131 and the humidity sensor 132 may be provided in the transmitter separately from the atmospheric pressure sensor without being incorporated in the atmospheric pressure sensor.
  • information on the location floor may be acquired only from the atmospheric pressure information and the temperature information.
  • the management server 60 that determines the location floor to be managed based on the atmospheric pressure, temperature, and humidity information will be described as an example.
  • the portable terminal 10 it cannot be overemphasized that it is the description including the personal computer 11.
  • communication is performed between the portable terminal 10 and the management server 60 and between the transmitter 110 and the management server 60 via the network 15 of a predetermined network standard. .
  • Communication is performed between the management server 60 and the weather information distribution server 16 via the network 19 of a predetermined network standard.
  • Communication between the mobile terminal 10 and the management server 60 and between the management server 60 and the weather information distribution server 16 is established via, for example, the Internet using Wi-Fi as the networks 18 and 19 described later.
  • the communication between the transmitter 110 and the management server 60 is established via, for example, a communication network 17 that is an LPWAN (Low-PowerWide-AreaNetwork) for M2M described later.
  • LPWAN Low-PowerWide-AreaNetwork
  • the network 15 is a concept including the base station 5 and the relay station (not shown) as described above, and the communication system has wide-area connectivity, bidirectional communication, and low power consumption. Anything that satisfies this requirement is acceptable.
  • LPWAN Low-PowerWide-AreaNetwork
  • M2M such as SigFox (registered trademark, the same applies hereinafter), LoRa (registered trademark, the same applies hereinafter), LTE-MTC (LTE-MachineTypeCommunications), and the like are preferable.
  • microwave radio for example, Wi-Fi, Zigbee (registered trademark, the same applies below), Bluetooth (registered trademark, the same applies below), etc.), millimeter wave radio (eg, WIGIG (registered trademark, same applies below))
  • WIGIG registered trademark, same applies below
  • Sub-GHz band wireless for example, Wi-SUN (Wireless Smart Utility Network) (registered trademark, the same applies hereinafter), Z-wave (registered trademark, the same applies hereinafter), Zigbee, Wi-HaLow (registered trademark, the same applies hereinafter), etc. It may be.
  • FIG. 4 is a block diagram illustrating a schematic configuration of the transmitter 110.
  • the transmitter 110 includes a transmission processing unit 120, a pressure sensor 130 including a temperature sensor 131 and a humidity sensor 132, a correction unit and a battery unit (not shown), and an information storage medium 140. These are mounted on a substrate and stored in a case.
  • the transmission processing unit 120 is a 920 MHz band wireless communication module, and transmits a transmitter ID assigned in advance for each transmitter and measurement data (atmospheric pressure, temperature, humidity) output from the atmospheric pressure sensor 130 to the network 15. Is transmitted (wireless communication) to the management server 60.
  • the network standard (communication method, communication standard) is as described above.
  • the temperature sensor 131 and the humidity sensor 132 may be either those built in the atmospheric pressure sensor 130 or those that are not (a single temperature sensor or humidity sensor), but in this embodiment, the atmospheric pressure sensor An example in which the temperature sensor 131 and the humidity sensor 132 are built in 130 will be described.
  • the information storage medium 140 is easily pasted on a transmitter such as a QR code or an IC tag, for example, and a different individual ID (transmitter ID) is assigned to each transmitter 110.
  • a transmitter such as a QR code or an IC tag
  • transmitter ID a different individual ID
  • the name of the management target to which the transmitter 110 is attached, and the name, address, etc. of the owner, user (handler), and the like are associated with the transmitter ID in the management server 60. Are registered (stored) in the database 90.
  • the atmospheric pressure sensor 130 is a small absolute pressure sensor.
  • LPS25H manufactured by ST-MICRO, 2SMPB-01 manufactured by OMRON, SCP1000, BME280 manufactured by VTITECHNOLOGIES, or the like can be used.
  • the atmospheric pressure sensor 130 includes a temperature sensor 131 and a humidity sensor 132, and outputs temperature and humidity measurement data (temperature T1, humidity D1) together with pressure measurement data (pressure P1).
  • weather data reference atmospheric pressure P0, reference temperature T0, reference humidity D0
  • the acquired weather data is output to the management server.
  • reference weather data (reference pressure P0 ′, reference temperature T0 ′, reference humidity D0 ′) is measured as a substitute for the above-mentioned weather data. You can also. Measurement data measured by the reference weather sensor is similarly output to the management server. In addition, you may make it provide a reference
  • the management server database includes a difference between the pressure P1 and the reference pressure P0 (differential pressure (P0-P1)) and a difference between the temperature T1 and the reference temperature T0 (differential temperature (T0-T1), humidity D1 and reference humidity.
  • P0 differential pressure
  • T0 differential temperature
  • the mobile terminal 10 has functions implemented including hardware, such as an input control unit 20, a management target information display unit (touch panel, etc.) 30, a communication processing unit 40, a drawing processing unit 50, and the like in a memory (not shown).
  • Various functions are realized by executing the recorded (installed) management application by a computer (not shown) (arithmetic unit such as a CPU, a register for storing instructions and information, a processor including peripheral circuits, etc.) Is possible.
  • the user terminal can execute (multitask) a plurality of management applications at a time.
  • the mobile terminal 10 includes an input control unit 20, a management target information display unit 30, a communication processing unit 40, and a drawing processing unit 50 as shown in FIG.
  • the management target information is a concept including all information such as a management target ID, a management target owner, a quantity of management targets, and a location floor, which will be described later.
  • the input control unit 20 includes a management target registration request unit 21 that requests registration of information of a new management target, a management target information input unit 22 that inputs registration contents, and a management target confirmation request that requests confirmation of management target information.
  • the unit 23 includes a management target ID acquisition unit (for example, a QR code reader) that acquires a management target ID.
  • the management target information display unit 30 has a function of displaying management target information.
  • the communication processing unit 40 transmits the registration request for the new registration information requested by the input control unit 20 and the input registration contents, the confirmation request for the management target information, the acquired management target ID, and the management requested for confirmation. It has a function to receive target information.
  • the drawing processing unit 50 has a function of causing the management target information display unit 30 to display the received management target information.
  • the part described in FIG. 2 is a function realized by executing a management application for using the management target management system in the building.
  • the management application is activated, and the functions of the input control unit 20, the management target information display unit 30, the communication processing unit 40, and the drawing processing unit 50 are used.
  • the touch panel when the touch panel is taken as an example of the management target information display unit 30, the touch panel is a combination of a display device such as a liquid crystal panel and a position input device such as a touch pad. The user can input an operation by touching the screen with a fingertip or the like.
  • the communication processing unit 40 is configured to include hardware such as various antennas for performing communication processing.
  • the communication processing unit 40 is connected to the network 18 via the network 18 such as the Internet using wi-fi, and is used by various applications. Information is exchanged with an external device including the management server 60 based on the realized function.
  • FIG. 3 is a block diagram illustrating a schematic configuration of the management server 60.
  • the management server 60 includes a communication processing unit 70, a calculation unit 80, a database (DB) 90, and a display control unit 100.
  • the communication processing unit 70 transmits the transmitter ID, the pressure P1 and the temperature T1, the measurement data of the humidity D1 transmitted from the transmitter 110, the reference pressure P0 ′ and the reference temperature T0 ′ output from the reference weather sensor, and the reference humidity D0 ′.
  • Measurement data and real weather data (reference pressure P0, reference temperature T0, reference humidity D0) from the weather information distribution server 16 to be described later, and registered corresponding to the management object ID stored in the database 90 It has a function of transmitting management target information to the mobile terminal 10.
  • the calculating part 80 calculates
  • the pressure P1 and the reference pressure P0 are lower than the actual measurement values according to the difference.
  • the atmospheric pressure P1 and the reference atmospheric pressure P0 may be corrected so as to be higher than the actual measurement values according to the difference.
  • the database 90 stores in advance information (correction information such as maps and arithmetic expressions) about how much to correct according to the magnitude relationship between the temperature T1 and the reference temperature T0 and the difference value.
  • the name of the management object to which the transmitter 110 was originally attached the name of the owner, the user (handler), the address, the management target information such as the quantity to be managed, and the transmitter ID are stored. Since the associated information is stored, in the calculation unit 80, the transmitter ID that is the transmission source, the floor N of the management target 13 to which the transmitter ID is attached, the name of the management target, and the owner
  • the information such as the name and address of the user (handler) and the management target information are associated (associated) and stored in the database 90.
  • the stored display control unit 100 associates the location floor N of the management target 13 with information (management target information) such as the name of the management target, the name of the owner, the user (handler), and the address (management target information) ( Screen data indicating the information) is generated, and the generated screen data is displayed on the management target information display unit 30.
  • information such as the name of the management target, the name of the owner, the user (handler), and the address (management target information) ( Screen data indicating the information) is generated, and the generated screen data is displayed on the management target information display unit 30.
  • the weather information distribution server 16 acquires real-time weather information (atmospheric pressure, temperature, humidity, and other information) from various external weather information providing sites via the network 19, and calculates the acquired real-time weather information by the management server 60. To the unit 80.
  • real-time weather information atmospheric pressure, temperature, humidity, and other information
  • the reference weather sensor acquires real-time weather information (atmospheric pressure, temperature, humidity, and other information) from a sensor installed at a reference position on the ground floor of the construction site via the network 15, and acquires the acquired real-time weather information. It is transmitted to the calculation unit 80 of the management server 60. Needless to say, the reference weather sensor may be acquired via the network 19.
  • the operator of the mobile terminal 10 activates the management application.
  • a login screen (see a1 in FIG. 8) is displayed.
  • the user ID and password notified as described above are entered in the user ID and password input fields ( Step S201 in FIG.
  • the authentication button (see a1 in FIG. 8) is selected (pressed), and the authentication information from the mobile terminal 10 matches the authentication information (user ID, password hash value, etc.) registered in the database. If the login is successful, the mobile terminal 10 is notified of this, and if they do not match, the mobile terminal 10 is notified that the authentication has failed (step S202 in FIG. 6).
  • the communication processing unit 40 of the mobile terminal transmits the user ID of the currently logged-in operator and information about the mobile terminal 10 (terminal ID, IP address, etc.) to the management server 60, and the management application Is requested (step S203 in FIG. 7).
  • the display control unit 100 of the management server 60 displays a menu screen (see b1 in FIG. 8) on which a button for selecting QR code reading, management target confirmation, various settings, user management, and loan management is displayed as a management target of the mobile terminal 10
  • the information is displayed on the information display unit 30 (step S204 in FIG. 7).
  • the menu screen is displayed on the management target information display unit 30 by the drawing processing unit 50. Needless to say, other information may be displayed on the menu display screen or other operation buttons may be prepared.
  • QR code reading sequence registration sequence
  • the QR code reading reader of the mobile terminal 10 is activated and becomes ready for reading.
  • a QR code affixed in advance to a management target person, object, etc.
  • the name and user of the management target are registered (steps S100 in FIG. 5 and steps S205 and S208 in FIG. 7).
  • a registration screen as shown in FIG. 8 (C1) is displayed on the management target information display unit 30.
  • the upper window for example, a screen for selecting a cart, a chair, and the like is displayed.
  • the read management target is a cart
  • “cart” is selected on the pull-down screen
  • the lower registration button is pressed.
  • the read management object is a chair
  • “chair” is selected on the pull-down screen
  • the lower registration button is pressed. In this way, an arbitrary management target can be newly registered.
  • a window for selecting A trader, B trader, and C trader is displayed in the window (pull-down screen) in the center of the screen.
  • the trader who uses the read management object can be registered as described in the upper window.
  • the number of newly registered management targets is totaled by the arithmetic unit of the management server 60 to determine the number. Note that the number shown in FIG. 8 (b2) is the number determined by the above process.
  • Step S208 in FIG. Information on the atmospheric pressure and temperature from the atmospheric pressure sensor 130 (and / or the reference atmospheric pressure sensor) built in the transmitter 110 is transmitted to the calculation unit 80 of the management server 60 via the network 15 (step S207 in FIG. 7). Further, weather information is also extracted via the weather information distribution server 16, and the extracted weather information is transmitted to the calculation unit 80 of the management server 60 (step S206 in FIG. 7).
  • the calculation unit 80 receives the management target ID information (step S101 in FIG. 5), information on the atmospheric pressure, temperature, and humidity (measured data of the atmospheric pressure P1, the temperature T1, and the humidity D1) from the atmospheric pressure sensor 130, and the reference weather sensor.
  • Information on atmospheric pressure, temperature and humidity (measurement data of reference atmospheric pressure P0 ′, reference temperature T0 ′, reference humidity D0 ′) and real-time weather information (reference atmospheric pressure P0 ′, reference temperature T0 ′) from the weather information distribution server 16 (Measurement data of reference humidity D0 ′) (step S110 in FIG. 5 and steps S206 and S207 in FIG. 7), and the location floor (N) of each management target 13 is obtained based on the weather information (in FIG. 6).
  • Step S106 the received management target ID information, information such as name, name, quantity, and floor (N) are associated with each other (step S107 in FIG. 7) and stored in the database 90 (step S108 in FIG. 5, FIG. 8 (b4)).
  • Step S118 in FIG. 5 The location floor of the management target 13 stored in association with the database 90 in the registration process in step S104 is totaled for each floor (step S118 in FIG. 5), and the display control unit 100 classifies the management target in each floor display column.
  • the number of units counted every time is displayed on the display unit (step S120 in FIG. 5), and other information such as the site name, temperature, and humidity is also displayed on the display unit (see (b2) in FIG. 8).
  • communication NG can be displayed about what cannot receive communication from the transmitter 110 for some reason.
  • FIG. 8 (c2) when the management target in the display is individually selected, more detailed information on the management target is displayed (see FIG. 8 (c2)).
  • the management target information such as the name, address, quantity of the management target, etc. of the owner, user (handler), etc. Yes, those search results can be displayed.
  • the target management target can be displayed for each floor.
  • the management objects 13 located on the corresponding floor are listed and displayed.
  • the displayed contents are the type of management target and the user.
  • the person who manages the management object grasps the status of the location, type, quantity, etc. of the management object on the spot only by looking at the display screen of the mobile terminal. be able to.
  • a transmitter with a pressure sensor and a temperature sensor is attached to the management target, and information is transmitted via a two-way communication network such as an LPWAN for M2M, so a transmitter such as a beacon is provided for each floor of the building. Etc. may not be provided.
  • the present invention supplies a software program (the flowcharts of FIGS. 9 and 10) that realizes the functions of the above-described embodiments to a computer or CPU, and the computer or CPU reads and executes the supplied program. Can be achieved.
  • the program is supplied directly from a storage medium storing the program or downloaded from another computer or database (not shown) connected to the Internet, a commercial network, a local area network, or the like. Supplied.
  • the present invention also supplies a computer or CPU with a storage medium storing a software program that implements the functions of the above-described embodiments, and the computer or CPU reads and executes the program stored in the storage medium. Can also be achieved.
  • the present invention can be achieved by downloading a software program for realizing the above-described embodiment from a database on the Internet or a homepage by a communication program, and reading and executing this program.
  • the above program can also be supplied by connecting to a homepage on the Internet using a browser of a client computer and downloading the computer program itself or a compressed file including an automatic installation function from the homepage to a storage medium such as a hard disk. .
  • the above program distributes a storage medium such as a CD-ROM stored after encrypting the program code to the user, and provides a key for decrypting the encryption from the homepage via the Internet to the user who has cleared a predetermined condition. It can also be provided by downloading the information and using the key information to execute the encrypted program code and install it on the computer.
  • a storage medium such as a CD-ROM stored after encrypting the program code to the user, and provides a key for decrypting the encryption from the homepage via the Internet to the user who has cleared a predetermined condition. It can also be provided by downloading the information and using the key information to execute the encrypted program code and install it on the computer.
  • the functions of the above-described embodiment can also be realized by dividing the program code into a plurality of files and downloading each file from a different website. That is, a WWW server that allows a plurality of users to download a program file for realizing the functional processing of the present invention on a computer also constitutes the present invention.
  • the functions of the above-described embodiment are obtained by writing a program read from a storage medium into a function expansion board inserted in a computer or a memory provided in a function expansion unit connected to the computer, and It can also be realized by the CPU or MPU provided in the function expansion board or function expansion unit executing part or all of the actual processing based on the instructions of the program.
  • 1 Management system in building management system 5 base station, 10 mobile terminal, 11 personal computer (PC), 12 reference weather sensor, 13 management target, 15 network, 16 weather information distribution server, 17, 18, 19 communication network ( Network), 20 input control unit, 30 management target information display unit, 40 communication processing unit, 50 drawing processing unit, 60 management server, 70 communication processing unit, 80 arithmetic unit, 90 database (DB), 100 display control unit, 110 Transmitter, 120 transmission processing unit, 130 atmospheric pressure sensor, 131 temperature sensor, 132 humidity sensor, 140 information storage medium

Landscapes

  • Business, Economics & Management (AREA)
  • Engineering & Computer Science (AREA)
  • Human Resources & Organizations (AREA)
  • Economics (AREA)
  • Strategic Management (AREA)
  • General Physics & Mathematics (AREA)
  • Tourism & Hospitality (AREA)
  • Entrepreneurship & Innovation (AREA)
  • Theoretical Computer Science (AREA)
  • Marketing (AREA)
  • General Business, Economics & Management (AREA)
  • Physics & Mathematics (AREA)
  • Game Theory and Decision Science (AREA)
  • Quality & Reliability (AREA)
  • Operations Research (AREA)
  • Development Economics (AREA)
  • Educational Administration (AREA)
  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Primary Health Care (AREA)
  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

L'invention concerne un système de gestion pour un sujet de gestion dans un bâtiment, un procédé de gestion pour un sujet de gestion dans un bâtiment, et un programme d'ordinateur, au moyen desquels un sujet de gestion au niveau d'un site de construction peut facilement être géré. Le système de gestion 1 pour un sujet de gestion dans un bâtiment est caractérisé en ce qu'il comprend un émetteur 110 qui est fourni à un sujet de gestion dans un bâtiment, et qui transmet, en tant qu'informations d'identification identifiables, des données de mesure concernant la pression atmosphérique, la température et l'humidité à l'intérieur du bâtiment, un serveur de gestion de sujet de gestion 60 pour collecter les informations d'identification provenant de l'émetteur 110 par l'intermédiaire d'un réseau, et un terminal mobile 10 équipé d'une unité d'affichage d'informations de sujet de gestion 30 pour afficher les informations d'identification provenant du serveur de gestion de sujet de gestion 60, le serveur de gestion de sujet de gestion 60 ayant une unité de calcul 80 pour déterminer un étage occupé par le sujet de gestion et la quantité du sujet de gestion dans le bâtiment sur la base des données de mesure transmises à partir de l'émetteur 110, d'une unité de stockage 90 pour associer et stocker des informations de sujet de gestion concernant l'étage occupé et la quantité du sujet de gestion tels que déterminés par l'unité de calcul 80, et des informations de bâtiment concernant le bâtiment dans lequel le sujet de gestion est reçu, d'un moyen de génération de données d'écran 100 pour générer des données d'écran indiquant les informations de sujet de gestion et les informations de bâtiment stockées dans l'unité de stockage 90, et d'un moyen de transmission 72 pour transmettre les données d'écran générées à l'unité d'affichage d'informations de sujet de gestion 30.
PCT/JP2019/007873 2018-02-28 2019-02-28 Système de gestion pour un sujet de gestion dans un bâtiment, procédé de gestion pour un sujet de gestion dans un bâtiment, et programme d'ordinateur WO2019168111A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2018-035816 2018-02-28
JP2018035816A JP6462924B1 (ja) 2018-02-28 2018-02-28 建造物内管理対象管理システム、建造物内管理対象管理方法、プログラム

Publications (1)

Publication Number Publication Date
WO2019168111A1 true WO2019168111A1 (fr) 2019-09-06

Family

ID=65228961

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2019/007873 WO2019168111A1 (fr) 2018-02-28 2019-02-28 Système de gestion pour un sujet de gestion dans un bâtiment, procédé de gestion pour un sujet de gestion dans un bâtiment, et programme d'ordinateur

Country Status (3)

Country Link
JP (1) JP6462924B1 (fr)
TW (1) TW201946024A (fr)
WO (1) WO2019168111A1 (fr)

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008241467A (ja) * 2007-03-27 2008-10-09 Fujitsu Ltd 携帯端末装置、その高度等の計測方法、その計測プログラム、及びその計測プログラムを格納した記録媒体
JP2010257384A (ja) * 2009-04-28 2010-11-11 Yasushi Takeishi 資産管理システム及びその方法
JP2011175384A (ja) * 2010-02-23 2011-09-08 Hitachi Plant Technologies Ltd 作業者位置認識方法、作業者位置認識システム、作業者認識方法、作業者認識システム
JP2013544351A (ja) * 2010-09-17 2013-12-12 クゥアルコム・インコーポレイテッド 気圧センサを使用した屋内ポジショニング
JP2014119995A (ja) * 2012-12-17 2014-06-30 Fuji Xerox Co Ltd 情報処理装置及び情報処理プログラム
JP2014164623A (ja) * 2013-02-26 2014-09-08 Sinfonia Technology Co Ltd 作業車両の管理システム
JP2016057809A (ja) * 2014-09-09 2016-04-21 株式会社大林組 建設現場管理システム、

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008241467A (ja) * 2007-03-27 2008-10-09 Fujitsu Ltd 携帯端末装置、その高度等の計測方法、その計測プログラム、及びその計測プログラムを格納した記録媒体
JP2010257384A (ja) * 2009-04-28 2010-11-11 Yasushi Takeishi 資産管理システム及びその方法
JP2011175384A (ja) * 2010-02-23 2011-09-08 Hitachi Plant Technologies Ltd 作業者位置認識方法、作業者位置認識システム、作業者認識方法、作業者認識システム
JP2013544351A (ja) * 2010-09-17 2013-12-12 クゥアルコム・インコーポレイテッド 気圧センサを使用した屋内ポジショニング
JP2014119995A (ja) * 2012-12-17 2014-06-30 Fuji Xerox Co Ltd 情報処理装置及び情報処理プログラム
JP2014164623A (ja) * 2013-02-26 2014-09-08 Sinfonia Technology Co Ltd 作業車両の管理システム
JP2016057809A (ja) * 2014-09-09 2016-04-21 株式会社大林組 建設現場管理システム、

Also Published As

Publication number Publication date
TW201946024A (zh) 2019-12-01
JP2019152928A (ja) 2019-09-12
JP6462924B1 (ja) 2019-01-30

Similar Documents

Publication Publication Date Title
JP6213789B2 (ja) 通信装置、設定プログラム及び通信装置を内蔵した分電盤
US20170185957A1 (en) System and method for validating storage or shipment of environmentally sensitive products or items
CN103197625A (zh) 一种基于云存储的远程温湿度监控系统
JP3181163U (ja) 訪問サービス管理装置
AU2019329781B2 (en) Method and system to digitally track and monitor an automotive refinish repair process
US10264404B2 (en) Information processing apparatus, system, and method
US11797950B2 (en) Method and system to digitally track and monitor an automotive refinish repair process
US10360266B2 (en) Data-flow control device and data-flow control method
JP6462924B1 (ja) 建造物内管理対象管理システム、建造物内管理対象管理方法、プログラム
JP6045730B1 (ja) 入店検知システム、入店検知装置およびプログラム
CN108122151B (zh) 图形码显示方法、图形码处理方法、装置及系统
WO2014077150A1 (fr) Système d'authentification de visite de boutique
CN112669057B (zh) 一种数据预测方法、装置、电子设备及存储介质
JP2019144986A (ja) 貸出管理装置、貸出管理方法、貸出管理プログラム及び貸出管理システム
US11246004B2 (en) Power tool geofence tracking and dashboard
US11755005B2 (en) Data distribution system and method for a group of electronics devices
EP3929843A1 (fr) Harmonisation des données
KR101186566B1 (ko) 태블릿 피씨 기반의 rfid 클라우드 컴퓨팅 플랫폼 시스템
JP2010134621A (ja) 移動履歴管理システム、移動履歴管理方法およびプログラム
JP6325758B2 (ja) 解析装置、解析装置の制御方法、制御プログラム、および記録媒体
JP2023128528A (ja) プログラム、端末装置、方法及び情報処理装置
JP2021162919A (ja) 衣料流通管理方法、衣料流通管理システム、およびプログラム
Joo et al. Development of Converged Contents Applications Using Beacon with Bluetooth v4. 0
KR101476979B1 (ko) 맵상에 이동경로를 표시하고 이동위치에 따른 실시간 부가 서비스를 제공하기 위한 시스템
JP3191736U (ja) サービス支援システム

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 19761057

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 19761057

Country of ref document: EP

Kind code of ref document: A1