Abstract:
Systems and methods may detect a condition with respect to a first device and generate a distress signal if the condition satisfies one or more safety criteria that are relevant to a second device. Additionally, the distress signal may be broadcasted, wherein the distress signal bypasses one or more application controls of the first device and has a transmission range that is restricted to a local area. In one example, one or more local preventive actions may be triggered, via the application control(s), based on the distress signal.
Abstract:
An approach is described for sending alert messages and notifications (310, 312, 508) to individual communication devices (102, 122, 124) and in a format understandable by a user of the communication device (102, 122, 124).
Abstract:
A safety automation system (20) for an occupiable structure and method of operation includes a plurality of detection devices (30) to facilitate the detection of a hazard condition and output a hazard detected signal to a computing management system (44) that may be a cloud computing system. The management system includes a computer processor (46), and a computer readable storage medium (48) capable of generating various notifications to a mobile user interface device (32).
Abstract:
A system (100) for surveillance of a person wearing a shoe, comprising: a shoe (105) wearable by the person, an accelerometer (115) solidly associated to the shoe (105), and an electronic processing unit (120) configured such as to receive the signal generated by the accelerometer (115), recognise if the signal received indicates that the shoe (105) is in free fall, had an impact or is stationary in a vertical or nearly-vertical position with respect to the floor, indicating that the wearer is in a lying down position. Detection occurs by comparison of acceleration values to thresholds. An alarm signal is transmitted to a remote unit carried by a safety supervisor and can be relayed by an intermediate unit to the remote unit.
Abstract:
A system (100) for surveillance of a person wearing a shoe, comprising: a shoe (105) wearable by the person, an accelerometer (115) solidly associated to the shoe (105), and an electronic processing unit (120) configured such as to receive the signal generated by the accelerometer (115), recognise if the signal received indicates that the shoe (105) is in free fall, had an impact or is stationary in a vertical or nearly-vertical position, with respect to the floor, indicating that the wearer is in a lying down position. Detection occurs by comparison of acceleration values to thresholds. An alarm signal is transmitted to a remote unit carried by a safety supervisor and can be relayed by an intermediate unit to the remote unit.
Abstract:
The present invention relates to a community security system capable of monitoring multiple, generally adjacent, consecutive private security areas to confirm human activity and engage sensory alerts. The community security system includes at least two private security areas having the capability of being networked together to enable information sharing. Each private security area is monitored by a private security system and contains one or more detection devices for monitoring and detecting activity occurring within the boundaries of the private security area. Information detected by detection devices within the private security areas can then communicate with other detection devices within the private security area or with the community security system to confirm activity, track activity across adjacent boundaries, engage sensory alerts and notify community members or authorities, as needed.
Abstract:
Die vorliegende Erfindung betrifft einen Gurtständer (2) für ein Personenleitsystem (1), umfassend einen aus dem Gurtständer (2) gegen die Kraft einer Rückholeinrichtung (4) ausziehbaren Gurt (5) und eine Schließe (9) mit zwei zueinander komplementären Kupplungsgliedern (7, 8), von denen das erste am freien Ende (6) des Gurts (5) und das zweite am Gurtständer (2) angeordnet ist, wobei zumindest eines der Kupplungsglieder (7, 8) mit einem Öffner (15) für die Schließe (9) ausgestattet ist, welcher einen Empfänger (16) zur Detektion eines Fernsteuersignals (14), einen vom Empfänger (16) bei Detektion angesteuerten Aktor (17) zum Öffnen der Schließe (9), und zumindest einen den Empfänger (16) und den Aktor (17) speisenden Energiespeicher (19) umfasst.
Abstract:
Disclosed are techniques to authenticate tags passing through detection regions against an access control list, receive data that identifies a number of people passing through or within the detection regions, compare the number people identified by the received data with the number of tags identified by the system, and cause an alarm to be asserted when a discrepancy is detected in the number people identified with the number of tags in a detection region with personnel within the detection region.
Abstract:
A method of emergency response on a network of Bluetooth low energy (BLE) beacons includes: broadcasting corresponding identification information from each of at least three of the BLE beacons over the BLE network; and receiving a distress message at one of the BLE beacons over the BLE network from a user device that received the broadcasted corresponding identification information from the at least three of the BLE beacons. The method may further include installing the network of the BLE beacons at corresponding dispersed locations over a venue to provide an emergency response network for the venue. The network of BLE beacons may include a master BLE beacon, the method further including retransmitting the distress message by one or more of the BLE beacons over the BLE network until the master BLE beacon receives the distress message, and alerting an emergency response provider by the master BLE beacon.
Abstract:
이상신호의 신뢰성을 향상시킬 수 있으며 사용자가 제어 가능한 통합감시 시스템 및 방법에 관한 것으로, 이상상황이 발생하면 이상신호를 발생하여 전송하는 이상신호 감지 및 발생부, 상기 이상신호를 수신하여 중계하는 홈단말기, 상기 중계된 이상신호를 수신하여 이상상황을 전송하는 서버를 포함하며, 상기 서버는 상기 홈단말기로부터 수신한 상기 이상신호가 첫 번째 신호일 경우 의사신호로 간주하여 폐기하며, 두 번째 신호를 미리 결정된 주기의 시점으로 설정하여 상기 미리 정해진 주기 동안 연속적으로 상기 이상신호가 수신되면 실제 이상상황으로 인지하여 이상신호 데이터를 생성하여 사용자에게 전송하는 구성을 마련하여, 신뢰성을 향상시킬 수 있고, 사용자에 의해 시스템을 조정할 수 있으며, 유지비용을 감소시킬 수 있다.