WO2020255386A1 - Equipment location confirmation system - Google Patents

Equipment location confirmation system Download PDF

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Publication number
WO2020255386A1
WO2020255386A1 PCT/JP2019/024763 JP2019024763W WO2020255386A1 WO 2020255386 A1 WO2020255386 A1 WO 2020255386A1 JP 2019024763 W JP2019024763 W JP 2019024763W WO 2020255386 A1 WO2020255386 A1 WO 2020255386A1
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Prior art keywords
equipment
information
maintenance
signal pattern
storage unit
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PCT/JP2019/024763
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French (fr)
Japanese (ja)
Inventor
誠一 熊谷
匡史 小澤
恭平 西出
哲美 井澤
Original Assignee
三菱電機ビルテクノサービス株式会社
三菱電機株式会社
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Application filed by 三菱電機ビルテクノサービス株式会社, 三菱電機株式会社 filed Critical 三菱電機ビルテクノサービス株式会社
Priority to KR1020217031091A priority Critical patent/KR102643675B1/en
Priority to JP2021528606A priority patent/JP7060163B6/en
Priority to CN201980096242.6A priority patent/CN113811901B/en
Priority to PCT/JP2019/024763 priority patent/WO2020255386A1/en
Priority to TW108139444A priority patent/TWI796528B/en
Publication of WO2020255386A1 publication Critical patent/WO2020255386A1/en

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    • 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
    • G06Q50/00Systems or methods specially adapted for specific business sectors, e.g. utilities or tourism
    • G06Q50/10Services
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/20Information retrieval; Database structures therefor; File system structures therefor of structured data, e.g. relational data
    • G06F16/29Geographical information databases
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/30Information retrieval; Database structures therefor; File system structures therefor of unstructured textual data
    • G06F16/38Retrieval characterised by using metadata, e.g. metadata not derived from the content or metadata generated manually
    • G06F16/387Retrieval characterised by using metadata, e.g. metadata not derived from the content or metadata generated manually using geographical or spatial information, e.g. location
    • 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
    • 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
    • G06Q10/20Administration of product repair or maintenance
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • H04W4/023Services making use of location information using mutual or relative location information between multiple location based services [LBS] targets or of distance thresholds

Definitions

  • the present invention relates to a facility position confirmation system.
  • Patent Document 1 discloses an equipment position confirmation system. According to the position confirmation system, the position of the equipment can be confirmed.
  • An object of the present invention is to provide an equipment position confirmation system capable of confirming the position of equipment without adding special equipment.
  • the equipment position confirmation system has a signal pattern information storage unit that stores signal pattern information at the time of equipment maintenance in advance and information that stores signal patterns from the equipment in the signal pattern information storage unit. It is provided with a position determination unit that determines the position of the equipment based on the position information of the mobile terminal of the maintenance staff who maintained the equipment when the corresponding signal pattern is matched.
  • the position confirmation system is based on the position information of the mobile terminal of the maintenance person who maintained the equipment when the signal pattern from the equipment matches the signal pattern corresponding to the information stored in advance. , Determine the location of the equipment. Therefore, the position of the equipment can be confirmed without adding special equipment.
  • FIG. 5 is a configuration diagram of a system to which the equipment position confirmation system according to the first embodiment is applied. It is a flowchart for demonstrating the outline of the operation of the monitoring device and a server as the equipment position confirmation system in Embodiment 1. It is a flowchart for demonstrating the outline of the operation of the monitoring device and a server as the equipment position confirmation system in Embodiment 1.
  • FIG. 5 is a hardware configuration diagram of a server as a part of the equipment position confirmation system in the first embodiment.
  • FIG. 1 is a configuration diagram of a system to which the equipment position confirmation system according to the first embodiment is applied.
  • the elevator is installed in the building as equipment.
  • the control device 1 is provided in a building provided with an elevator.
  • the control device 1 is provided so as to be able to control the operation of the elevator as a whole.
  • the monitoring device 2 is installed in a building where an elevator is provided as a part of the position confirmation system.
  • the monitoring device 2 is provided so as to be able to monitor the state of the elevator based on the signal from the control device 1.
  • the server 3 is provided in the elevator maintenance company as part of the location confirmation system. The server 3 is provided so that the state of the elevator can be grasped based on the information from the monitoring device 2.
  • the monitoring device 2 includes a signal pattern information storage unit 2a and a signal processing unit 2b.
  • the signal pattern information storage unit 2a stores in advance information on a unique signal pattern during maintenance of the elevator.
  • the signal pattern information storage unit 2a stores signal pattern information that is likely to be operated by a maintenance person at the position of the elevator during maintenance of the elevator.
  • the signal pattern information storage unit 2a stores signal pattern information when the car is operating at a low speed during maintenance of the elevator.
  • the signal processing unit 2b determines whether or not the signal from the control device 1 matches the signal pattern corresponding to the information stored in the signal pattern information storage unit 2a.
  • the signal processing unit 2b sends the building number information, the elevator identification information, and the time information to the server when the signal from the control device 1 matches the signal pattern corresponding to the information stored in the signal pattern information storage unit 2a. Send to 3.
  • the server 3 includes a maintenance staff organization information storage unit 3a, a maintenance staff position information storage unit 3b, an elevator position information storage unit 3c, a maintenance staff identification unit 3d, and a position determination unit 3e.
  • the maintenance staff organization information storage unit 3a stores the building number information, the elevator identification information, and the maintenance scheduled time information in association with the maintenance staff number information as the maintenance staff identification information.
  • the maintenance worker position information storage unit 3b periodically stores the time information received from the maintenance worker's mobile terminal 4, the maintenance worker number information, and the position information of the mobile terminal 4.
  • the elevator position information storage unit 3c stores the position information of the elevator.
  • the maintenance staff identification unit 3d identifies the maintenance staff number of the maintenance staff who maintained the elevator at that time based on the building number information received by the server 3, the elevator identification information, and the time information.
  • the position determination unit 3e determines the position of the elevator based on the position information of the maintenance worker's mobile terminal 4 specified by the maintenance worker identification unit 3d at the time.
  • the maintenance staff's mobile terminal 4 includes a position detection unit 4a.
  • the position detection unit 4a detects the position of the mobile terminal 4. For example, the position detection unit 4a uses the latitude, longitude, latitude reliability, and longitude reliability of the mobile terminal 4 as position information. The position detection unit 4a periodically transmits the time information, the maintenance staff number information, and the position information of the mobile terminal 4.
  • FIGS. 2 and 3 are flowcharts for explaining the outline of the operation of the monitoring device and the server as the equipment position confirmation system in the first embodiment.
  • step S1 the monitoring device 2 accepts registration of a unique signal pattern during maintenance of the elevator. After that, the monitoring device 2 performs the operation of step S2. In step S2, the monitoring device 2 periodically receives the time information, the maintenance staff number information, and the position information of the mobile terminal 4 from the maintenance staff's mobile terminal 4.
  • step S3 the monitoring device 2 detects that the maintenance of the elevator has started due to the maintenance switch being turned on. After that, the monitoring device 2 performs the operation of step S4.
  • step S4 the monitoring device 2 receives the signal from the control device 1. After that, the monitoring device 2 performs the operation of step S5.
  • step S5 it is determined whether or not the maintenance of the elevator is completed based on whether or not the maintenance switch is turned off.
  • step S5 the monitoring device 2 performs the operation of step S6.
  • step S6 the monitoring device 2 determines whether or not there is a change in the signal from the control device 1 that matches the signal pattern stored in advance.
  • step S6 If there is no change in the signal that matches the signal pattern stored in advance in step S6, the monitoring device 2 performs the operation of step S4. When there is a change in the signal that matches the signal pattern stored in advance in step S6, the monitoring device 2 performs the operation of step S7.
  • step S7 the monitoring device 2 transmits the building number information, the elevator identification information, and the time information to the server 3. After that, the monitoring device 2 performs the operation of step S4.
  • step S5 When the maintenance of the elevator is completed in step S5, the monitoring device 2 performs the operation of step S8. In step S8, the monitoring device 2 transmits the building number information, the elevator identification information, and the time information to the server 3.
  • step S9 the server 3 acquires the maintenance personnel number information from the building number information and the elevator identification information. After that, the server 3 performs the operation of step S10.
  • step S10 the server 3 acquires the position information of the maintenance staff's mobile terminal 4 in a time zone set in advance around the time for each time based on the received information.
  • step S11 the server 3 acquires the registered elevator position information from the building number information and the elevator identification information.
  • step S12 the server 3 calculates the ratio of the positions of the maintenance personnel's mobile terminals 4 included in the circle having the radius r around the position of the elevator. After that, the server 3 performs the operation of step S13. In step S13, the server 3 determines whether or not the ratio is smaller than the preset M%.
  • step S13 If the ratio is not smaller than the preset M% in step S13, the server 3 performs the operation of step S14. In step S14, the server 3 does not update the elevator position information.
  • step S15 the server 3 calculates the reliability of the position information of the elevator and the position information of the maintenance staff's mobile terminal 4 based on the number of position information, the small prediction error per position information, and the like.
  • step S16 the server 3 determines whether or not the reliability of the registered elevator position information is equal to or higher than the reliability of the acquired position information of the maintenance staff's mobile terminal 4.
  • step S16 If the reliability of the position information of the elevator registered in step S16 is equal to or higher than the reliability of the position information of the maintenance staff's mobile terminal 4, the server 3 performs the operation of step S14. In step S14, the server 3 does not update the elevator position information.
  • step S16 If the reliability of the position information of the elevator registered in step S16 is not equal to or higher than the reliability of the position information of the maintenance staff's mobile terminal 4, the server 3 performs the operation of step S17.
  • step S17 the server 3 calculates the representative point of the acquired position information of the mobile terminal 4 of the maintenance staff and updates the position information of the elevator to the representative point.
  • the server 3 is carried by a maintenance worker who maintains the elevator when the signal pattern from the control device 1 matches the signal pattern corresponding to the information stored in advance.
  • the position of the elevator is determined based on the position information of the terminal 4. Therefore, the position of the elevator can be confirmed without adding special equipment.
  • the server 3 determines the position of the elevator after identifying the maintenance staff who maintained the elevator. Therefore, the position of the elevator can be confirmed more accurately.
  • the server 3 identifies the maintenance staff based on the information on the maintenance schedule of the elevator. Therefore, it is possible to accurately identify the maintenance staff who maintained the elevator.
  • the server 3 has a position corresponding to the position information of the mobile terminal 4 in a time zone set in advance centering on the time when the signal from the control device 1 matches the signal pattern corresponding to the information stored in advance. Calculates the ratio included in the preset range from the position corresponding to the position information of the registered elevator, and if the ratio is not smaller than the preset ratio, the position information of the elevator is not updated. Therefore, it is possible to prevent the position information of the elevator from being updated unnecessarily.
  • the server 3 is maintained when the ratio is smaller than the preset ratio and the reliability of the registered elevator position information is lower than the reliability of the position information of the maintenance staff's mobile terminal 4.
  • the location information of the equipment is updated based on the location information of the member's mobile terminal 4. Therefore, the reliability of updating the position information of the elevator can be improved.
  • the functions of the signal pattern information storage unit 2a and the signal processing unit 2b may be provided in a device other than the monitoring device 2.
  • the server 3 may be provided with the functions of the signal pattern information storage unit 2a and the signal processing unit 2b. In this case as well, the position of the elevator can be confirmed without adding any special equipment.
  • the functions of the maintenance staff organization information storage unit 3a, the maintenance staff position information storage unit 3b, the elevator position information storage unit 3c, the maintenance staff identification unit 3d, and the position determination unit 3e may be provided in a device other than the server 3.
  • the monitoring device 2 may be provided with the functions of the maintenance staff organization information storage unit 3a, the maintenance staff position information storage unit 3b, the elevator position information storage unit 3c, the maintenance staff identification unit 3d, and the position determination unit 3e.
  • the position of the elevator can be confirmed without adding any special equipment.
  • the position confirmation system of the first embodiment may be applied to equipment other than the elevator.
  • the positioning system may be applied to a lighting device or an air conditioner. In these cases as well, the position of the elevator can be confirmed without adding special equipment.
  • the position confirmation system of the first embodiment may be applied to equipment that is not fixed to the building. Further, the position confirmation system of the first embodiment may be applied to outdoor equipment.
  • FIG. 4 is a hardware configuration diagram of a server as a part of the equipment position confirmation system according to the first embodiment.
  • Each function of the server 3 can be realized by a processing circuit.
  • the processing circuit includes at least one processor 100a and at least one memory 100b.
  • the processing circuit comprises at least one dedicated hardware 200.
  • each function of the server 3 is realized by software, firmware, or a combination of software and firmware. At least one of the software and firmware is written as a program. At least one of the software and firmware is stored in at least one memory 100b. At least one processor 100a realizes each function of the server 3 by reading and executing a program stored in at least one memory 100b. At least one processor 100a is also referred to as a central processing unit, a processing unit, an arithmetic unit, a microprocessor, a microcomputer, and a DSP.
  • at least one memory 100b is a non-volatile or volatile semiconductor memory such as RAM, ROM, flash memory, EPROM, EEPROM, magnetic disk, flexible disk, optical disk, compact disk, mini disk, DVD or the like.
  • the processing circuit includes at least one dedicated hardware 200
  • the processing circuit is realized, for example, by a single circuit, a composite circuit, a programmed processor, a parallel programmed processor, an ASIC, an FPGA, or a combination thereof.
  • each function of the server 3 is realized by a processing circuit.
  • each function of the server 3 is collectively realized by a processing circuit.
  • a part may be realized by the dedicated hardware 200, and the other part may be realized by software or firmware.
  • the function of the position determination unit 3e is realized by a processing circuit as dedicated hardware 200, and the function other than the function of the position determination unit 3e is a program in which at least one processor 100a is stored in at least one memory 100b. It may be realized by reading and executing.
  • the processing circuit realizes each function of the server 3 with hardware 200, software, firmware, or a combination thereof.
  • each function of the control device 1 is also realized by a processing circuit equivalent to a processing circuit that realizes each function of the server 3.
  • Each function of the monitoring device 2 is also realized by a processing circuit equivalent to a processing circuit that realizes each function of the server 3.
  • the equipment position confirmation system according to the present invention can be used for an elevator system or the like.
  • control device 2 monitoring device, 2a signal pattern information storage unit, 2b signal processing unit, 3 server, 3a maintenance staff organization information storage unit, 3b maintenance staff position information storage unit, 3c elevator position information storage unit, 3d maintenance staff identification Unit, 3e position determination unit, 4 mobile terminal, 4a position detection unit, 100a processor, 100b memory, 200 hardware

Abstract

Provided is an equipment location confirmation system capable of confirming the location of equipment without adding a special device. The equipment location confirmation system comprises: a signal pattern information storage unit that prestores information about a signal pattern for maintenance of equipment; and a location determination unit for determining the location of the equipment, on the basis of location information of a portable terminal of a maintenance worker who performed maintenance of the equipment when a signal pattern from the equipment matched the signal pattern corresponding to the information stored in the signal pattern information storage unit.

Description

設備の位置確認システムEquipment location confirmation system
 この発明は、設備の位置確認システムに関する。 The present invention relates to a facility position confirmation system.
 特許文献1は、設備の位置確認システムを開示する。当該位置確認システムよれば、設備の位置を確認し得る。 Patent Document 1 discloses an equipment position confirmation system. According to the position confirmation system, the position of the equipment can be confirmed.
日本特開2017-68674号公報Japanese Patent Application Laid-Open No. 2017-68674
 しかしながら、特許文献1に記載の位置確認システムにおいては、設備に隣接したビーコン装置が必要となる。このため、ビーコン装置が設けられていない設備の位置を確認できない。 However, in the position confirmation system described in Patent Document 1, a beacon device adjacent to the equipment is required. Therefore, it is not possible to confirm the position of the equipment in which the beacon device is not provided.
 この発明は、上述の課題を解決するためになされた。この発明の目的は、特別な機器を追加することなく、設備の位置を確認することができる設備の位置確認システムを提供することである。 This invention was made to solve the above-mentioned problems. An object of the present invention is to provide an equipment position confirmation system capable of confirming the position of equipment without adding special equipment.
 この発明に係る設備の位置確認システムは、設備の保守時における信号パターンの情報を予め記憶した信号パターン情報記憶部と、前記設備からの信号パターンが前記信号パターン情報記憶部に記憶された情報に対応した信号パターンに合致した際における当該設備の保守を行った保守員の携帯端末の位置情報に基づいて、当該設備の位置を判定する位置判定部と、を備えた。 The equipment position confirmation system according to the present invention has a signal pattern information storage unit that stores signal pattern information at the time of equipment maintenance in advance and information that stores signal patterns from the equipment in the signal pattern information storage unit. It is provided with a position determination unit that determines the position of the equipment based on the position information of the mobile terminal of the maintenance staff who maintained the equipment when the corresponding signal pattern is matched.
 この発明によれば、位置確認システムは、設備からの信号パターンが予め記憶された情報に対応した信号パターンに合致した際における当該設備の保守を行った保守員の携帯端末の位置情報に基づいて、当該設備の位置を判定する。このため、特別な機器を追加することなく、設備の位置を確認することができる。 According to the present invention, the position confirmation system is based on the position information of the mobile terminal of the maintenance person who maintained the equipment when the signal pattern from the equipment matches the signal pattern corresponding to the information stored in advance. , Determine the location of the equipment. Therefore, the position of the equipment can be confirmed without adding special equipment.
実施の形態1における設備の位置確認システムが適用されるシステムの構成図である。FIG. 5 is a configuration diagram of a system to which the equipment position confirmation system according to the first embodiment is applied. 実施の形態1における設備の位置確認システムとしての監視装置とサーバとの動作の概要を説明するためのフローチャートである。It is a flowchart for demonstrating the outline of the operation of the monitoring device and a server as the equipment position confirmation system in Embodiment 1. 実施の形態1における設備の位置確認システムとしての監視装置とサーバとの動作の概要を説明するためのフローチャートである。It is a flowchart for demonstrating the outline of the operation of the monitoring device and a server as the equipment position confirmation system in Embodiment 1. 実施の形態1における設備の位置確認システムの一部としてのサーバのハードウェア構成図である。FIG. 5 is a hardware configuration diagram of a server as a part of the equipment position confirmation system in the first embodiment.
 この発明を実施するための形態について添付の図面に従って説明する。なお、各図中、同一または相当する部分には同一の符号が付される。当該部分の重複説明は適宜に簡略化ないし省略する。 The embodiment for carrying out the present invention will be described with reference to the attached drawings. In each figure, the same or corresponding parts are designated by the same reference numerals. The duplicate description of the relevant part will be simplified or omitted as appropriate.
実施の形態1.
 図1は実施の形態1における設備の位置確認システムが適用されるシステムの構成図である。
Embodiment 1.
FIG. 1 is a configuration diagram of a system to which the equipment position confirmation system according to the first embodiment is applied.
 図1において、エレベーターは、設備として建物に設けられる。制御装置1は、エレベーターが設けられた建物に設けられる。制御装置1は、エレベーターの動作を全体的に制御し得るように設けられる。監視装置2は、位置確認システムの一部としてエレベーターが設けられた建物に設けられる。監視装置2は、制御装置1からの信号に基づいてエレベーターの状態を監視し得るように設けられる。サーバ3は、位置確認システムの一部としてエレベーターの保守会社に設けられる。サーバ3は、監視装置2からの情報に基づいてエレベーターの状態を把握し得るように設けられる。 In Fig. 1, the elevator is installed in the building as equipment. The control device 1 is provided in a building provided with an elevator. The control device 1 is provided so as to be able to control the operation of the elevator as a whole. The monitoring device 2 is installed in a building where an elevator is provided as a part of the position confirmation system. The monitoring device 2 is provided so as to be able to monitor the state of the elevator based on the signal from the control device 1. The server 3 is provided in the elevator maintenance company as part of the location confirmation system. The server 3 is provided so that the state of the elevator can be grasped based on the information from the monitoring device 2.
 監視装置2は、信号パターン情報記憶部2aと信号処理部2bとを備える。 The monitoring device 2 includes a signal pattern information storage unit 2a and a signal processing unit 2b.
 信号パターン情報記憶部2aは、エレベーターの保守時における特有の信号パターンの情報を予め記憶する。例えば、信号パターン情報記憶部2aは、エレベーターの保守時において保守員がエレベーターの位置において作業している可能性が高い信号パターンの情報を記憶する。例えば、信号パターン情報記憶部2aは、エレベーターの保守時においてかごが低速運転している際の信号パターンの情報を記憶する。 The signal pattern information storage unit 2a stores in advance information on a unique signal pattern during maintenance of the elevator. For example, the signal pattern information storage unit 2a stores signal pattern information that is likely to be operated by a maintenance person at the position of the elevator during maintenance of the elevator. For example, the signal pattern information storage unit 2a stores signal pattern information when the car is operating at a low speed during maintenance of the elevator.
 信号処理部2bは、制御装置1からの信号が信号パターン情報記憶部2aに記憶された情報に対応した信号パターンに合致するか否かを判定する。信号処理部2bは、制御装置1からの信号が信号パターン情報記憶部2aに記憶された情報に対応した信号パターンに合致した際に建物番号の情報とエレベーターの識別情報と時刻の情報とをサーバ3へ送信する。 The signal processing unit 2b determines whether or not the signal from the control device 1 matches the signal pattern corresponding to the information stored in the signal pattern information storage unit 2a. The signal processing unit 2b sends the building number information, the elevator identification information, and the time information to the server when the signal from the control device 1 matches the signal pattern corresponding to the information stored in the signal pattern information storage unit 2a. Send to 3.
 サーバ3は、保守員編成情報記憶部3aと保守員位置情報記憶部3bとエレベーター位置情報記憶部3cと保守員特定部3dと位置判定部3eとを備える。 The server 3 includes a maintenance staff organization information storage unit 3a, a maintenance staff position information storage unit 3b, an elevator position information storage unit 3c, a maintenance staff identification unit 3d, and a position determination unit 3e.
 保守員編成情報記憶部3aは、建物番号の情報とエレベーターの識別情報と保守予定の時刻の情報とを保守員の識別情報としての保守員番号の情報に対応付けて記憶する。保守員位置情報記憶部3bは、保守員の携帯端末4から受信した時刻の情報と保守員番号の情報と当該携帯端末4の位置情報とを定期的に記憶する。エレベーター位置情報記憶部3cは、エレベーターの位置情報を記憶する。 The maintenance staff organization information storage unit 3a stores the building number information, the elevator identification information, and the maintenance scheduled time information in association with the maintenance staff number information as the maintenance staff identification information. The maintenance worker position information storage unit 3b periodically stores the time information received from the maintenance worker's mobile terminal 4, the maintenance worker number information, and the position information of the mobile terminal 4. The elevator position information storage unit 3c stores the position information of the elevator.
 保守員特定部3dは、サーバ3が受信した建物番号の情報とエレベーターの識別情報と時刻の情報とに基づいて当該時刻に当該エレベーターの保守を行った保守員の保守員番号を特定する。 The maintenance staff identification unit 3d identifies the maintenance staff number of the maintenance staff who maintained the elevator at that time based on the building number information received by the server 3, the elevator identification information, and the time information.
 位置判定部3eは、保守員特定部3dにより特定された保守員の携帯端末4の当該時刻における位置情報に基づいて当該エレベーターの位置を判定する。 The position determination unit 3e determines the position of the elevator based on the position information of the maintenance worker's mobile terminal 4 specified by the maintenance worker identification unit 3d at the time.
 保守員の携帯端末4は、位置検出部4aを備える。 The maintenance staff's mobile terminal 4 includes a position detection unit 4a.
 位置検出部4aは、当該携帯端末4の位置を検出する。例えば、位置検出部4aは、当該携帯端末4の緯度、経度、緯度の信頼性、経度の信頼性を位置情報とする。位置検出部4aは、時刻の情報と保守員番号の情報と当該携帯端末4の位置情報とを定期的を送信する。 The position detection unit 4a detects the position of the mobile terminal 4. For example, the position detection unit 4a uses the latitude, longitude, latitude reliability, and longitude reliability of the mobile terminal 4 as position information. The position detection unit 4a periodically transmits the time information, the maintenance staff number information, and the position information of the mobile terminal 4.
 次に、図2と図3とを用いて、監視装置2とサーバ3との動作の概要を説明する。
 図2と図3とは実施の形態1における設備の位置確認システムとしての監視装置とサーバとの動作の概要を説明するためのフローチャートである。
Next, the outline of the operation of the monitoring device 2 and the server 3 will be described with reference to FIGS. 2 and 3.
2 and 3 are flowcharts for explaining the outline of the operation of the monitoring device and the server as the equipment position confirmation system in the first embodiment.
 ステップS1では、監視装置2は、エレベーターの保守時における特有の信号パターンの登録を受け付ける。その後、監視装置2は、ステップS2の動作を行う。ステップS2では、監視装置2は、保守員の携帯端末4から時刻の情報と保守員番号の情報と当該携帯端末4の位置情報とを定期的に受信する。 In step S1, the monitoring device 2 accepts registration of a unique signal pattern during maintenance of the elevator. After that, the monitoring device 2 performs the operation of step S2. In step S2, the monitoring device 2 periodically receives the time information, the maintenance staff number information, and the position information of the mobile terminal 4 from the maintenance staff's mobile terminal 4.
 その後、監視装置2は、ステップS3の動作を行う。ステップS3では、監視装置2は、メンテナンススイッチがONになったことによりエレベーターの保守が開始されたことを検出する。その後、監視装置2は、ステップS4の動作を行う。ステップS4では、監視装置2は、制御装置1からの信号を受信する。その後、監視装置2は、ステップS5の動作を行う。ステップS5では、メンテナンススイッチがOFFになったか否かに基づいてエレベーターの保守が終了したか否かを判定する。 After that, the monitoring device 2 performs the operation of step S3. In step S3, the monitoring device 2 detects that the maintenance of the elevator has started due to the maintenance switch being turned on. After that, the monitoring device 2 performs the operation of step S4. In step S4, the monitoring device 2 receives the signal from the control device 1. After that, the monitoring device 2 performs the operation of step S5. In step S5, it is determined whether or not the maintenance of the elevator is completed based on whether or not the maintenance switch is turned off.
 ステップS5でエレベーターの保守が終了していない場合、監視装置2は、ステップS6の動作を行う。ステップS6では、監視装置2は、制御装置1からの信号において予め記憶された信号パターンに合致した信号の変化があるか否かを判定する。 If the maintenance of the elevator is not completed in step S5, the monitoring device 2 performs the operation of step S6. In step S6, the monitoring device 2 determines whether or not there is a change in the signal from the control device 1 that matches the signal pattern stored in advance.
 ステップS6で予め記憶された信号パターンに合致した信号の変化がない場合、監視装置2は、ステップS4の動作を行う。ステップS6で予め記憶された信号パターンに合致した信号の変化がある場合、監視装置2は、ステップS7の動作を行う。 If there is no change in the signal that matches the signal pattern stored in advance in step S6, the monitoring device 2 performs the operation of step S4. When there is a change in the signal that matches the signal pattern stored in advance in step S6, the monitoring device 2 performs the operation of step S7.
 ステップS7では、監視装置2は、建物番号の情報とエレベーターの識別情報と時刻の情報とをサーバ3へ送信する。その後、監視装置2は、ステップS4の動作を行う。 In step S7, the monitoring device 2 transmits the building number information, the elevator identification information, and the time information to the server 3. After that, the monitoring device 2 performs the operation of step S4.
 ステップS5でエレベーターの保守が完了した場合、監視装置2は、ステップS8の動作を行う。ステップS8では、監視装置2は、建物番号の情報とエレベーターの識別情報と時刻の情報とをサーバ3へ送信する。 When the maintenance of the elevator is completed in step S5, the monitoring device 2 performs the operation of step S8. In step S8, the monitoring device 2 transmits the building number information, the elevator identification information, and the time information to the server 3.
 その後、サーバ3は、ステップS9の動作を行う。ステップS9では、サーバ3は、建物番号の情報とエレベーターの識別情報とから保守員番号の情報を取得する。その後、サーバ3は、ステップS10の動作を行う。ステップS10では、サーバ3は、受信した情報に基づいて時刻ごとに当該時刻を中心にして予め設定された範囲の時間帯における保守員の携帯端末4の位置情報を取得する。 After that, the server 3 performs the operation of step S9. In step S9, the server 3 acquires the maintenance personnel number information from the building number information and the elevator identification information. After that, the server 3 performs the operation of step S10. In step S10, the server 3 acquires the position information of the maintenance staff's mobile terminal 4 in a time zone set in advance around the time for each time based on the received information.
 その後、サーバ3は、ステップS11の動作を行う。ステップS11では、サーバ3は、建物番号の情報とエレベーターの識別情報とから登録済みのエレベーターの位置情報を取得する。 After that, the server 3 performs the operation of step S11. In step S11, the server 3 acquires the registered elevator position information from the building number information and the elevator identification information.
 その後、サーバ3は、ステップS12の動作を行う。ステップS12では、サーバ3は、エレベーターの位置を中心に半径rの円に含まれる保守員の携帯端末4の位置の割合を算出する。その後、サーバ3は、ステップS13の動作を行う。ステップS13では、サーバ3は、当該割合が予め設定されたM%よりも小さいか否かを判定する。 After that, the server 3 performs the operation of step S12. In step S12, the server 3 calculates the ratio of the positions of the maintenance personnel's mobile terminals 4 included in the circle having the radius r around the position of the elevator. After that, the server 3 performs the operation of step S13. In step S13, the server 3 determines whether or not the ratio is smaller than the preset M%.
 ステップS13で当該割合が予め設定されたM%よりも小さくない場合、サーバ3は、ステップS14の動作を行う。ステップS14では、サーバ3は、エレベーターの位置情報を更新しない。 If the ratio is not smaller than the preset M% in step S13, the server 3 performs the operation of step S14. In step S14, the server 3 does not update the elevator position information.
 ステップS13で当該割合が予め設定されたM%よりも小さい場合、サーバ3は、ステップS15の動作を行う。ステップS15では、サーバ3は、位置情報の数、1つの位置情報当たりの予測誤差の小ささ等に基づいてエレベーターの位置情報と保守員の携帯端末4の位置情報との信頼性を算出する。 If the ratio is smaller than the preset M% in step S13, the server 3 performs the operation of step S15. In step S15, the server 3 calculates the reliability of the position information of the elevator and the position information of the maintenance staff's mobile terminal 4 based on the number of position information, the small prediction error per position information, and the like.
 その後、サーバ3は、ステップS16の動作を行う。ステップS16では、サーバ3は、登録済みのエレベーターの位置情報の信頼性が取得した保守員の携帯端末4の位置情報の信頼性以上であるか否かを判定する。 After that, the server 3 performs the operation of step S16. In step S16, the server 3 determines whether or not the reliability of the registered elevator position information is equal to or higher than the reliability of the acquired position information of the maintenance staff's mobile terminal 4.
 ステップS16で登録済みのエレベーターの位置情報の信頼性が取得した保守員の携帯端末4の位置情報の信頼性以上である場合、サーバ3は、ステップS14の動作を行う。ステップS14では、サーバ3は、エレベーターの位置情報を更新しない。 If the reliability of the position information of the elevator registered in step S16 is equal to or higher than the reliability of the position information of the maintenance staff's mobile terminal 4, the server 3 performs the operation of step S14. In step S14, the server 3 does not update the elevator position information.
 ステップS16で登録済みのエレベーターの位置情報の信頼性が取得した保守員の携帯端末4の位置情報の信頼性以上でない場合、サーバ3は、ステップS17の動作を行う。ステップS17では、サーバ3は、取得した保守員の携帯端末4の位置情報の代表点を算出してエレベーターの位置情報を当該代表点に更新する。 If the reliability of the position information of the elevator registered in step S16 is not equal to or higher than the reliability of the position information of the maintenance staff's mobile terminal 4, the server 3 performs the operation of step S17. In step S17, the server 3 calculates the representative point of the acquired position information of the mobile terminal 4 of the maintenance staff and updates the position information of the elevator to the representative point.
 以上で説明した実施の形態1によれば、サーバ3は、制御装置1からの信号パターンが予め記憶された情報に対応した信号パターンに合致した際における当該エレベーターの保守を行った保守員の携帯端末4の位置情報に基づいて、当該エレベーターの位置を判定する。このため、特別な機器を追加することなく、エレベーターの位置を確認することができる。 According to the first embodiment described above, the server 3 is carried by a maintenance worker who maintains the elevator when the signal pattern from the control device 1 matches the signal pattern corresponding to the information stored in advance. The position of the elevator is determined based on the position information of the terminal 4. Therefore, the position of the elevator can be confirmed without adding special equipment.
 また、サーバ3は、エレベーターの保守を行った保守員を特定したうえで、当該エレベーターの位置を判定する。このため、エレベーターの位置をより正確に確認することができる。 In addition, the server 3 determines the position of the elevator after identifying the maintenance staff who maintained the elevator. Therefore, the position of the elevator can be confirmed more accurately.
 また、サーバ3は、エレベーターの保守予定の情報に基づいて保守員を特定する。このため、当該エレベーターの保守を行った保守員を正確に特定することができる。 In addition, the server 3 identifies the maintenance staff based on the information on the maintenance schedule of the elevator. Therefore, it is possible to accurately identify the maintenance staff who maintained the elevator.
 また、サーバ3は、制御装置1からの信号が予め記憶された情報に対応した信号パターンに合致した時刻を中心にして予め設定された範囲の時間帯の携帯端末4の位置情報に対応した位置が登録済みのエレベーターの位置情報に対応した位置から予め設定された範囲内に含まれる割合を算出し、当該割合が予め設定された割合よりも小さくない場合、当該エレベーターの位置情報を更新しない。このため、エレベーターの位置情報が無用に更新されることを抑制できる。 Further, the server 3 has a position corresponding to the position information of the mobile terminal 4 in a time zone set in advance centering on the time when the signal from the control device 1 matches the signal pattern corresponding to the information stored in advance. Calculates the ratio included in the preset range from the position corresponding to the position information of the registered elevator, and if the ratio is not smaller than the preset ratio, the position information of the elevator is not updated. Therefore, it is possible to prevent the position information of the elevator from being updated unnecessarily.
 これに対し、サーバ3は、当該割合が予め設定された割合よりも小さくて、登録済みのエレベーターの位置情報の信頼性が保守員の携帯端末4の位置情報の信頼性よりも低い場合、保守員の携帯端末4の位置情報に基づいて当該設備の位置情報を更新する。このため、エレベーターの位置情報の更新の信頼性を高めることができる。 On the other hand, the server 3 is maintained when the ratio is smaller than the preset ratio and the reliability of the registered elevator position information is lower than the reliability of the position information of the maintenance staff's mobile terminal 4. The location information of the equipment is updated based on the location information of the member's mobile terminal 4. Therefore, the reliability of updating the position information of the elevator can be improved.
 なお、信号パターン情報記憶部2aと信号処理部2bとの機能を監視装置2以外の装置に設けてもよい。例えば、信号パターン情報記憶部2aと信号処理部2bとの機能をサーバ3に設けてもよい。この場合も、特別な機器を追加することなく、エレベーターの位置を確認することができる。 Note that the functions of the signal pattern information storage unit 2a and the signal processing unit 2b may be provided in a device other than the monitoring device 2. For example, the server 3 may be provided with the functions of the signal pattern information storage unit 2a and the signal processing unit 2b. In this case as well, the position of the elevator can be confirmed without adding any special equipment.
 また、保守員編成情報記憶部3aと保守員位置情報記憶部3bとエレベーター位置情報記憶部3cと保守員特定部3dと位置判定部3eとの機能をサーバ3以外の装置に設けてもよい。例えば、保守員編成情報記憶部3aと保守員位置情報記憶部3bとエレベーター位置情報記憶部3cと保守員特定部3dと位置判定部3eとの機能を監視装置2に設けてもよい。この場合も、特別な機器を追加することなく、エレベーターの位置を確認することができる。 Further, the functions of the maintenance staff organization information storage unit 3a, the maintenance staff position information storage unit 3b, the elevator position information storage unit 3c, the maintenance staff identification unit 3d, and the position determination unit 3e may be provided in a device other than the server 3. For example, the monitoring device 2 may be provided with the functions of the maintenance staff organization information storage unit 3a, the maintenance staff position information storage unit 3b, the elevator position information storage unit 3c, the maintenance staff identification unit 3d, and the position determination unit 3e. In this case as well, the position of the elevator can be confirmed without adding any special equipment.
 また、実施の形態1の位置確認システムをエレベーター以外の設備に適用してもよい。例えば、当該位置確認システムを照明装置または空調装置に適用してもよい。これらの場合も、特別な機器を追加することなく、エレベーターの位置を確認することができる。 Further, the position confirmation system of the first embodiment may be applied to equipment other than the elevator. For example, the positioning system may be applied to a lighting device or an air conditioner. In these cases as well, the position of the elevator can be confirmed without adding special equipment.
 また、実施の形態1の位置確認システムを建築物に固定されていない設備に適用してもよい。さらに、実施の形態1の位置確認システムを屋外の設備に適用してもよい。 Further, the position confirmation system of the first embodiment may be applied to equipment that is not fixed to the building. Further, the position confirmation system of the first embodiment may be applied to outdoor equipment.
 次に、図4を用いて、サーバ3の例を説明する。
 図4は実施の形態1における設備の位置確認システムの一部としてのサーバのハードウェア構成図である。
Next, an example of the server 3 will be described with reference to FIG.
FIG. 4 is a hardware configuration diagram of a server as a part of the equipment position confirmation system according to the first embodiment.
 サーバ3の各機能は、処理回路により実現し得る。例えば、処理回路は、少なくとも1つのプロセッサ100aと少なくとも1つのメモリ100bとを備える。例えば、処理回路は、少なくとも1つの専用のハードウェア200を備える。 Each function of the server 3 can be realized by a processing circuit. For example, the processing circuit includes at least one processor 100a and at least one memory 100b. For example, the processing circuit comprises at least one dedicated hardware 200.
 処理回路が少なくとも1つのプロセッサ100aと少なくとも1つのメモリ100bとを備える場合、サーバ3の各機能は、ソフトウェア、ファームウェア、またはソフトウェアとファームウェアとの組み合わせで実現される。ソフトウェアおよびファームウェアの少なくとも一方は、プログラムとして記述される。ソフトウェアおよびファームウェアの少なくとも一方は、少なくとも1つのメモリ100bに格納される。少なくとも1つのプロセッサ100aは、少なくとも1つのメモリ100bに記憶されたプログラムを読み出して実行することにより、サーバ3の各機能を実現する。少なくとも1つのプロセッサ100aは、中央処理装置、処理装置、演算装置、マイクロプロセッサ、マイクロコンピュータ、DSPともいう。例えば、少なくとも1つのメモリ100bは、RAM、ROM、フラッシュメモリ、EPROM、EEPROM等の、不揮発性または揮発性の半導体メモリ、磁気ディスク、フレキシブルディスク、光ディスク、コンパクトディスク、ミニディスク、DVD等である。 When the processing circuit includes at least one processor 100a and at least one memory 100b, each function of the server 3 is realized by software, firmware, or a combination of software and firmware. At least one of the software and firmware is written as a program. At least one of the software and firmware is stored in at least one memory 100b. At least one processor 100a realizes each function of the server 3 by reading and executing a program stored in at least one memory 100b. At least one processor 100a is also referred to as a central processing unit, a processing unit, an arithmetic unit, a microprocessor, a microcomputer, and a DSP. For example, at least one memory 100b is a non-volatile or volatile semiconductor memory such as RAM, ROM, flash memory, EPROM, EEPROM, magnetic disk, flexible disk, optical disk, compact disk, mini disk, DVD or the like.
 処理回路が少なくとも1つの専用のハードウェア200を備える場合、処理回路は、例えば、単一回路、複合回路、プログラム化したプロセッサ、並列プログラム化したプロセッサ、ASIC、FPGA、またはこれらの組み合わせで実現される。例えば、サーバ3の各機能は、それぞれ処理回路で実現される。例えば、サーバ3の各機能は、まとめて処理回路で実現される。 When the processing circuit includes at least one dedicated hardware 200, the processing circuit is realized, for example, by a single circuit, a composite circuit, a programmed processor, a parallel programmed processor, an ASIC, an FPGA, or a combination thereof. To. For example, each function of the server 3 is realized by a processing circuit. For example, each function of the server 3 is collectively realized by a processing circuit.
 サーバ3の各機能について、一部を専用のハードウェア200で実現し、他部をソフトウェアまたはファームウェアで実現してもよい。例えば、位置判定部3eの機能については専用のハードウェア200としての処理回路で実現し、位置判定部3eの機能以外の機能については少なくとも1つのプロセッサ100aが少なくとも1つのメモリ100bに格納されたプログラムを読み出して実行することにより実現してもよい。 For each function of the server 3, a part may be realized by the dedicated hardware 200, and the other part may be realized by software or firmware. For example, the function of the position determination unit 3e is realized by a processing circuit as dedicated hardware 200, and the function other than the function of the position determination unit 3e is a program in which at least one processor 100a is stored in at least one memory 100b. It may be realized by reading and executing.
 このように、処理回路は、ハードウェア200、ソフトウェア、ファームウェア、またはこれらの組み合わせでサーバ3の各機能を実現する。 In this way, the processing circuit realizes each function of the server 3 with hardware 200, software, firmware, or a combination thereof.
 図示されないが、制御装置1の各機能も、サーバ3の各機能を実現する処理回路と同等の処理回路で実現される。監視装置2の各機能も、サーバ3の各機能を実現する処理回路と同等の処理回路で実現される。 Although not shown, each function of the control device 1 is also realized by a processing circuit equivalent to a processing circuit that realizes each function of the server 3. Each function of the monitoring device 2 is also realized by a processing circuit equivalent to a processing circuit that realizes each function of the server 3.
 以上のように、この発明に係る設備の位置確認システムは、エレベーターシステム等に利用できる。 As described above, the equipment position confirmation system according to the present invention can be used for an elevator system or the like.
 1 制御装置、2 監視装置、 2a 信号パターン情報記憶部、 2b 信号処理部、 3 サーバ、 3a 保守員編成情報記憶部、 3b 保守員位置情報記憶部、 3c エレベーター位置情報記憶部、 3d 保守員特定部、 3e 位置判定部、 4 携帯端末、 4a 位置検出部、 100a プロセッサ、 100b メモリ、 200 ハードウェア 1 control device, 2 monitoring device, 2a signal pattern information storage unit, 2b signal processing unit, 3 server, 3a maintenance staff organization information storage unit, 3b maintenance staff position information storage unit, 3c elevator position information storage unit, 3d maintenance staff identification Unit, 3e position determination unit, 4 mobile terminal, 4a position detection unit, 100a processor, 100b memory, 200 hardware

Claims (6)

  1.  設備の保守時における信号パターンの情報を予め記憶した信号パターン情報記憶部と、
     前記設備からの信号パターンが前記信号パターン情報記憶部に記憶された情報に対応した信号パターンに合致した際における当該設備の保守を行った保守員の携帯端末の位置情報に基づいて、当該設備の位置を判定する位置判定部と、
    を備えた設備の位置確認システム。
    A signal pattern information storage unit that stores signal pattern information in advance during equipment maintenance,
    Based on the position information of the mobile terminal of the maintenance staff who maintained the equipment when the signal pattern from the equipment matches the signal pattern corresponding to the information stored in the signal pattern information storage unit, the equipment A position determination unit that determines the position and
    Equipment location confirmation system equipped with.
  2.  前記設備からの信号が前記信号パターン情報記憶部に記憶された情報に対応した信号パターンに合致した際に当該設備の識別情報と時刻の情報とを前記位置判定部に送信する信号処理部と、
     前記信号処理部が受信した当該設備の識別情報と時刻の情報とに基づいて当該時刻に当該設備の保守を行った保守員を特定する保守員特定部と、
    を備え、
     前記位置判定部は、前記保守員特定部により特定された保守員の携帯端末の当該時刻における位置情報に基づいて、当該設備の位置を判定する請求項1に記載の設備の位置確認システム。
    A signal processing unit that transmits the identification information and time information of the equipment to the position determination unit when the signal from the equipment matches the signal pattern corresponding to the information stored in the signal pattern information storage unit.
    A maintenance worker identification unit that identifies a maintenance worker who maintained the equipment at the time based on the equipment identification information and time information received by the signal processing unit.
    With
    The equipment position confirmation system according to claim 1, wherein the position determination unit determines the position of the equipment based on the position information of the maintenance person's mobile terminal specified by the maintenance person identification unit at the time.
  3.  設備の識別情報と保守予定の時刻の情報と保守員の識別情報とを対応付けて記憶した保守員編成情報記憶部、
    を備え、
     前記保守員特定部は、前記保守員編成情報記憶部において前記信号処理部が受信した当該設備の識別情報と時刻の情報とに対応付けられた保守員の識別情報を特定する請求項2に記載の設備の位置確認システム。
    Maintenance staff organization information storage unit, which stores equipment identification information, scheduled maintenance time information, and maintenance staff identification information in association with each other.
    With
    The maintenance worker identification unit is described in claim 2 for specifying maintenance personnel identification information associated with the equipment identification information and time information received by the signal processing unit in the maintenance staff organization information storage unit. Equipment location confirmation system.
  4.  前記位置判定部は、前記設備からの信号が前記信号パターン情報記憶部に記憶された情報に対応した信号パターンに合致した時刻を中心にして予め設定された範囲の時間帯の前記保守員の携帯端末の位置情報に対応した位置が登録済みの前記設備の位置情報に対応した位置から予め設定された範囲内に含まれる割合を算出し、当該割合が予め設定された割合よりも小さくない場合、当該設備の位置情報を更新しない請求項1から請求項3のいずれか一項に記載の設備の位置確認システム。 The position determination unit is carried by the maintenance staff in a preset range of time around the time when the signal from the equipment matches the signal pattern corresponding to the information stored in the signal pattern information storage unit. When the ratio of the position corresponding to the position information of the terminal included in the preset range from the position corresponding to the registered position information of the equipment is calculated, and the ratio is not smaller than the preset ratio. The equipment position confirmation system according to any one of claims 1 to 3, which does not update the location information of the equipment.
  5.  前記位置判定部は、当該割合が予め設定された割合よりも小さくて、登録済みの設備の位置情報の信頼性が前記保守員の携帯端末の位置情報の信頼性よりも低い場合、前記保守員の携帯端末の位置情報に基づいて当該設備の位置情報を更新する請求項4に記載の設備の位置確認システム。 When the ratio is smaller than the preset ratio and the reliability of the position information of the registered equipment is lower than the reliability of the position information of the mobile terminal of the maintenance person, the position determination unit is the maintenance person. The equipment location confirmation system according to claim 4, wherein the location information of the equipment is updated based on the location information of the mobile terminal.
  6.  前記信号パターン情報記憶部は、前記設備としてのエレベーターの保守時における信号パターンの情報を予め記憶し、
     前記位置判定部は、前記エレベーターの制御装置からの信号パターンが前記信号パターン情報記憶部に記憶された情報に対応した信号パターンに合致した際における当該エレベーターの保守を行った保守員の携帯端末の位置情報に基づいて、当該設備の位置を判定する請求項1から請求項5のいずれか一項に記載の設備の位置確認システム。
    The signal pattern information storage unit stores in advance signal pattern information at the time of maintenance of the elevator as the equipment.
    The position determination unit is a mobile terminal of a maintenance worker who maintains the elevator when the signal pattern from the control device of the elevator matches the signal pattern corresponding to the information stored in the signal pattern information storage unit. The equipment position confirmation system according to any one of claims 1 to 5, which determines the position of the equipment based on the position information.
PCT/JP2019/024763 2019-06-21 2019-06-21 Equipment location confirmation system WO2020255386A1 (en)

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CN201980096242.6A CN113811901B (en) 2019-06-21 2019-06-21 Position confirmation system for equipment
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