会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 11. 发明公开
    • A SECURITY MONITORING SYSTEM
    • EP4369321A3
    • 2024-08-14
    • EP24166223.8
    • 2020-09-30
    • Verisure Sàrl
    • IGLESIAS, Angel Francisco PiornoECHEVERRIA, Jon Noble
    • G08B25/00G08B13/08G08B25/08
    • G08B25/008G08B13/08G08B25/007G08B25/08
    • The invention relates to a security monitoring system for a building or a secured space within a building, the system including:
      a control unit for controlling, arming and disarming the security monitoring system, and having a radio frequency transceiver;
      a door giving access to the building or the secured space;
      an electrically controlled lock which is lockable to lock the door to prevent the door being opened from outside the building or the secured space, and which can be unlocked to enable the door to be opened from outside the building;
      a disarm node for disarming the system, the node having a user interface to receive a user input to change the status of the system, and a radio frequency transmitter to transmit, in consequence of the user input, a status change message to the control unit, the disarm node being located outside the building or the space;
      and a portable authentication device to permit hands-free disarming of the security monitoring system, the portable authentication device including a radio frequency transceiver,
      a memory storing a portable authentication device ID that is registered with the control unit,
      a motion sensor
      and a processor operatively connected to the transceiver, the motion sensor and the memory;
      wherein the motion sensor is configured to sense motion of the portable authentication device and to provide an output based on sensed motion of the portable authentication device, and wherein the processor is configured to determine whether the portable authentication device is stationary or in motion,
      based on the output of the motion sensor;
      the disarm node being configured to:
      (i) transmit from the portable authentication device's transceiver, using a short-range transmission mode, a wake up message including a status change event identifier;

      the portable authentication device being configured to respond to receipt of the wake up message by transmitting, using the portable authentication device's transceiver, a response message including the status change event identifier and the portable authentication device identity, the portable authentication device's transceiver only transmitting the response message if, when the instruction is received, the portable authentication device is not deemed to be stationary;;

      the control unit being configured:
      in response to receiving the response message from the portable authentication device, to :
      (iv) check whether the status change event identifier is for a current status change event;
      (v) check whether the portable authentication device identifier is for a portable authentication device registered with the control unit; and
      (vi) if the two checks both give positive results, to implement the requested status change, and, if the status change request includes a request to unlock the electronic lock, to use the control unit's transceiver to transmit a signal to cause the electronic lock to be unlocked.
    • 13. 发明公开
    • PREMISES SECURITY MONITORING SYSTEM
    • EP4231263A1
    • 2023-08-23
    • EP22157535.0
    • 2022-02-18
    • Verisure Sàrl
    • TORRES MONTERO, PabloHACKETT, NicholasPIEDBOIS, JulienMÅNSSON, Bo-Erik
    • G08B13/24G08B29/18G08B25/00
    • Provided is a premises security monitoring system comprising a system control unit and at least one sensor node to detect security events, each sensor node including a first transceiver to receive control signals from, and to report security events to, the control unit. The control unit is configured to operate as an access point for a Wi-Fi network. At least one of the sensor nodes is powered by an autonomous power supply and includes, in addition to the first transceiver, a Wi-Fi transceiver for communication with the control unit over the Wi-Fi network.
      The control unit being configured to respond to a report of a security event by reporting the security event to a remote monitoring station, sending an instruction to the first transceiver of the autonomously powered node for the autonomously powered node to activate its Wi-Fi transceiver to transmit Wi-Fi signals that function as illumination signals in a Wi-Fi sensing function for a sensing area of the premises. The control unit activates the Wi-Fi sensing function for the sensing area and uses Wi-Fi illumination signals transmitted by the autonomously powered node in the Wi-Fi sensing function to perform a determination of whether there is human presence in the sensing area. The control unit then transmits the result of the determination to the remote monitoring station.
    • 17. 发明公开
    • A SECURITY MONITORING SYSTEM
    • EP3828849A1
    • 2021-06-02
    • EP19211597.0
    • 2019-11-26
    • Verisure Sàrl
    • Wells, AndrewWestergren, ChristianRyd, PatrikWinge, Carl OlofBlomé, Per OlofHederstierna, Christer FredrikHackett, Nicholas J.
    • G08B13/196
    • A security monitoring system for a building or a secured space within a building, the system being operatively connected to a monitoring station, the system including:
      a control unit for controlling, arming and disarming the security monitoring system, and having a radio frequency transceiver, and a controller for controlling the radio frequency transceiver;
      a camera node having: a node controller;
      an image sensor for capturing images;
      a node radio frequency transceiver, for communication with the control unit;
      the node controller being configured to:
      transmit a captured image as an image file using the node radio frequency transceiver, wherein the transmission of the image file to the control unit is subject to a predetermined maximum transmission duration; and
      wherein the node controller is further configured to determine the resolution and compression of the image file based on the predetermined maximum transmission duration and an estimate up of the uplink bandwidth between the camera node and the control unit in order to enable the image file to be transmitted to the control unit within the predetermined maximum transmission duration;

      the control unit being configured:
      to perform measurement of RSSI and to transmit a measured RSSI value to the camera node;
      in response to receiving an event notification from a node of the system, to transmit, using the radio frequency transceiver, a control message to the camera node for the camera node to transmit a captured image;
      the control unit being further configured, on reception of a captured image file from the camera node, to transmit the received image file to the monitoring station.