A platform for research: civil engineering, architecture and urbanism
LOCK CONTROL SYSTEM, LOCK CONTROL METHOD, AND LOCK CONTROL PROGRAM
To provide a lock control system, a lock control method, and a lock control program which reduce power consumption of a lock opening/closing device.SOLUTION: In a lock control system, a user terminal 2 includes a first terminal communication unit, a second terminal communication unit, and a terminal request notification unit for notifying a control device 4 of a standby request including user identification information via the first terminal communication unit when a presence position of the user terminal 2 falls within a specified area. The control device 4 includes a device storage unit, and a device notification unit for notifying a lock opening/closing device 1 indicated by lock identification information stored in the device storage unit in association with user identification information included in a standby request, of a standby instruction when receiving the standby request from the user terminal 2. The lock opening/closing device 1 includes a first lock communication unit 11, a second lock communication unit 12 whose power consumption during standby is larger than that of the first lock communication unit 11, and a mode switching unit 142 for switching the second lock communication unit 12 to a standby mode when receiving a standby instruction from a control device 4 via the first lock communication unit 11.SELECTED DRAWING: Figure 2
【課題】錠開閉機器の消費電力量を低減させる錠制御システム、錠制御方法及び錠制御プログラムを提供する。【解決手段】錠制御システムは、ユーザ端末2が、第1端末通信部と、第2端末通信部と、ユーザ端末2の存在位置が所定のエリアに含まれる場合に、第1端末通信部を介して、ユーザ識別情報を含む待受要求を制御装置4に通知する端末要求通知部とを備え、制御装置4が、装置記憶部と、ユーザ端末2から待受要求を受信した場合に、待受指示を、待受要求に含まれるユーザ識別情報に関連付けて装置記憶部に記憶されている錠識別情報が示す錠開閉機器1に通知する装置通知部と、を備え、錠開閉機器1が、第1錠通信部11と、第1錠通信部11より待受時の消費電力が大きい第2錠通信部12と、第1錠通信部11を介して制御装置4から待受指示を受信した場合に、第2錠通信部12を待受モードに切り替えるモード切替部142と、を備える。【選択図】図2
LOCK CONTROL SYSTEM, LOCK CONTROL METHOD, AND LOCK CONTROL PROGRAM
To provide a lock control system, a lock control method, and a lock control program which reduce power consumption of a lock opening/closing device.SOLUTION: In a lock control system, a user terminal 2 includes a first terminal communication unit, a second terminal communication unit, and a terminal request notification unit for notifying a control device 4 of a standby request including user identification information via the first terminal communication unit when a presence position of the user terminal 2 falls within a specified area. The control device 4 includes a device storage unit, and a device notification unit for notifying a lock opening/closing device 1 indicated by lock identification information stored in the device storage unit in association with user identification information included in a standby request, of a standby instruction when receiving the standby request from the user terminal 2. The lock opening/closing device 1 includes a first lock communication unit 11, a second lock communication unit 12 whose power consumption during standby is larger than that of the first lock communication unit 11, and a mode switching unit 142 for switching the second lock communication unit 12 to a standby mode when receiving a standby instruction from a control device 4 via the first lock communication unit 11.SELECTED DRAWING: Figure 2
【課題】錠開閉機器の消費電力量を低減させる錠制御システム、錠制御方法及び錠制御プログラムを提供する。【解決手段】錠制御システムは、ユーザ端末2が、第1端末通信部と、第2端末通信部と、ユーザ端末2の存在位置が所定のエリアに含まれる場合に、第1端末通信部を介して、ユーザ識別情報を含む待受要求を制御装置4に通知する端末要求通知部とを備え、制御装置4が、装置記憶部と、ユーザ端末2から待受要求を受信した場合に、待受指示を、待受要求に含まれるユーザ識別情報に関連付けて装置記憶部に記憶されている錠識別情報が示す錠開閉機器1に通知する装置通知部と、を備え、錠開閉機器1が、第1錠通信部11と、第1錠通信部11より待受時の消費電力が大きい第2錠通信部12と、第1錠通信部11を介して制御装置4から待受指示を受信した場合に、第2錠通信部12を待受モードに切り替えるモード切替部142と、を備える。【選択図】図2
LOCK CONTROL SYSTEM, LOCK CONTROL METHOD, AND LOCK CONTROL PROGRAM
錠制御システム、錠制御方法及び錠制御プログラム
KISHI TOSHIMITSU (author)
2020-09-24
Patent
Electronic Resource
Japanese
LOCK CONTROL DEVICE, LOCK CONTROL PROGRAM, AND LOCK CONTROL METHOD
European Patent Office | 2022
|LOCK CONTROL SYSTEM, LOCK CONTROL METHOD, USER TERMINAL AND LOCK CONTROL PROGRAM
European Patent Office | 2021
|European Patent Office | 2023
|European Patent Office | 2019
|