EP3065113B1 - Système de surveillance - Google Patents

Système de surveillance Download PDF

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Publication number
EP3065113B1
EP3065113B1 EP15157870.5A EP15157870A EP3065113B1 EP 3065113 B1 EP3065113 B1 EP 3065113B1 EP 15157870 A EP15157870 A EP 15157870A EP 3065113 B1 EP3065113 B1 EP 3065113B1
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EP
European Patent Office
Prior art keywords
person
monitoring system
data
movement
motion detector
Prior art date
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Active
Application number
EP15157870.5A
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German (de)
English (en)
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EP3065113A1 (fr
Inventor
Nicholas Ord
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Gigaset Communications GmbH
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Gigaset Communications GmbH
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Priority to EP15157870.5A priority Critical patent/EP3065113B1/fr
Publication of EP3065113A1 publication Critical patent/EP3065113A1/fr
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    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B13/00Burglar, theft or intruder alarms
    • G08B13/18Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength
    • G08B13/189Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems
    • G08B13/194Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems
    • G08B13/196Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems using television cameras
    • G08B13/19602Image analysis to detect motion of the intruder, e.g. by frame subtraction
    • G08B13/19613Recognition of a predetermined image pattern or behaviour pattern indicating theft or intrusion
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/04Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
    • G08B21/0407Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons based on behaviour analysis
    • G08B21/0415Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons based on behaviour analysis detecting absence of activity per se
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/04Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
    • G08B21/0407Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons based on behaviour analysis
    • G08B21/0423Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons based on behaviour analysis detecting deviation from an expected pattern of behaviour or schedule
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/04Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
    • G08B21/0407Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons based on behaviour analysis
    • G08B21/043Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons based on behaviour analysis detecting an emergency event, e.g. a fall

Definitions

  • the invention relates to a monitoring system for monitoring the activities of a person in an apartment, with a motion detector provided in the apartment for detecting movement of the person in the apartment and a monitoring center, the geometric detection area of the motion detector being assigned to a predetermined geometric area of the apartment, the surveillance center continuously transmits data from the motion detector for detecting the stay of the person in the predetermined geometric area, the transmitted data are checked in the surveillance center to determine whether they are within an expected data area and an emergency signal is generated by the surveillance center when the transmitted Data is outside the expected data range for more than a predetermined period of time.
  • a monitoring system for monitoring the activities of a person in an apartment, with a motion detector provided in the apartment for detecting movement of the person in the apartment and a monitoring center, the geometric detection area of the motion detector being assigned to a predetermined geometric area of the apartment, the surveillance center continuously transmits data from the motion detector for detecting the stay of the person in the predetermined geometric area, the transmitted data are checked in the surveillance center to determine whether they are within an expected data area and an
  • Cameras with which the entire apartment can be monitored have been proposed for such surveillance systems. With the help of cameras, it is not only possible to record where the person to be monitored is in the apartment, but also how they are behaving, for example which pose they are taking, i.e. whether they are standing, sitting or lying.
  • surveillance by camera represents an encroachment on privacy, which is not accepted by many people.
  • Many people in the bedroom, bathroom and toilet refuse to be monitored by camera.
  • motion detectors are used in practice that do not provide images, but merely indicate whether a person is moving in a certain area in the apartment. So far, however, no reliable evaluation methods for the movements of the person to be monitored detected by such motion detectors are known. It has so far been difficult to determine whether there is actually an emergency in which the monitored person needs help from a third party. It is also problematic with such motion detectors that - unlike video images - it cannot be determined which person it is. So if there are other people in the apartment, it cannot be clearly determined whether a recorded movement pattern is due to the person to be monitored or at least partially to another person.
  • a security system for motion detection in a room is known, the motion being measurable by means of at least one distance sensor and wherein in a microcontroller an actual distance value of the distance sensor can be compared with an actual distance value of the distance sensor and a distance measurement signal can be generated , with which at least one timer can be triggered and a system-internal sensor-side alarm signal can be output after a time interval.
  • Other surveillance systems for monitoring the activities of a person in an apartment are from the WO 2013/179201 A1 and from the US 2013/0002434 A1 known.
  • the first object of the invention is to provide an evaluation option for movement data recorded by means of motion detectors, which enables a reliable detection of an emergency.
  • the first aspect of the invention thus lies in a monitoring system for monitoring the activities of a person in an apartment, with a motion detector provided in the apartment for detecting movement of the person in the apartment and a monitoring center, the geometric detection area of the motion detector being a predetermined geometric area is assigned to the apartment, the surveillance center continuously transmits data from the motion detector for detecting the stay of the person in the predetermined geometric area, the transmitted data are checked in the surveillance center to determine whether they are within an expected data area and the surveillance center generates an emergency signal If the transmitted data is outside the expected data area for longer than a predetermined period of time, characterized in that the expected data area by means of a previous monitoring of the pers on has been determined.
  • an electronic sensor is provided as the motion detector, which detects movements in its surroundings, the detection area, and can output a signal on the basis of a detected movement.
  • the motion detector can actively with electromagnetic waves, e.g. work in the HF range or as a Doppler radar, or with ultrasound.
  • the motion detector is designed as a passive infrared sensor. This means that the motion detector works passively on the basis of the infrared radiation from the surroundings, specifically the infrared radiation of the person to be monitored or other people who come into the detection range of the motion detector.
  • a passive infrared sensor also called PIR sensor (passive infrared) reacts in particular to changes in angle, that is, when a person walks past the sensor.
  • the movement detector provided in the apartment is preferably active continuously, that is 24 hours a day, in order to detect a movement of the person to be monitored.
  • Data for detecting the stay of the person in the predetermined geometric area assigned to the motion detector is preferably sent regularly to the Monitoring center transmitted, for example at predetermined intervals or continuously. In the case of periodic or continuous data transmission to the monitoring center, the motion detector transmits a signal to the monitoring center even if no movement has been detected.
  • the data transmitted to the monitoring center then consist of the information “movement detected” or “no movement detected”.
  • this data can already be provided with a time stamp by the motion detector in the monitoring center, so that the information “motion detected” or “no motion detected” with a corresponding time or with a specific time a period of time defined can be linked.
  • the apartment it is possible for the apartment to be provided with a plurality of motion detectors, the geometric detection areas of the motion detectors preferably not overlapping one another and most preferably covering all geometric areas of the apartment in order to to be able to detect a movement of the person to be monitored in every area of the apartment.
  • all motion detectors in the apartment continuously transmit data for recording the person's stay in the apartment.
  • the function of the monitoring system can be increased by providing a plurality of motion detectors which are arranged in such a way that the detection areas of the motion detectors together cover the entire apartment.
  • the data received from the monitoring center are preferably combined in groups at previously determined time periods, for example movement data from an entire hour, from 15 minutes, 5 minutes or 1 minute. That way you can the data regarding the shares of the day with different activity levels are divided into classes and analyzed, for example as part of a cohort analysis.
  • the expected data area has been transmitted by means of a previous monitoring of the person.
  • Such a previous monitoring of the person is preferably carried out for at least one week, more preferably for at least two weeks, very particularly preferably for at least four weeks.
  • an upper and a lower limit for the movement activity of the person to be monitored can be specified for predetermined time windows, such as 15 minutes, for a movement detector, if several movement detectors are provided, but also for all movement detectors together and / or individually for each movement detector, when it falls below the emergency signal is generated.
  • a door sensor is provided with which the opening and closing of the apartment door is detected.
  • the motion detector from “zero” does not necessarily have to lead to an emergency signal.
  • This preferred embodiment of the invention can serve to avoid false alarms.
  • the second aspect of the invention which is combined with the first aspect of the invention, thus lies in a monitoring system for monitoring the activities of a person in an apartment, with a motion detector provided in the apartment for detecting movement of the person in the apartment, a radio receiver , a radio transmitter carried by the person and a monitoring center, the geometric detection area of the motion detector being assigned to a predetermined geometric area of the apartment, the radio transmitter emitting a radio signal for identifying the person when the person is detected by the motion detector, the radio signal being detected by the radio receiver and the surveillance center is given a date by the radio receiver for identifying the person and by the motion detector a date for detecting the stay of the person in the predetermined geometric area.
  • the monitoring system not only has a motion detector for detecting movements of the person to be monitored, but also that the person to be monitored also carries a radio transmitter which transmits a radio signal to identify the person sends out.
  • a radio transmitter which transmits a radio signal to identify the person sends out.
  • an electronic sensor is provided as a motion detector according to the invention, which detects movements in its surroundings, the detection area, and can output a signal on the basis of a detected movement.
  • the motion detector can work actively with electromagnetic waves, eg in the HF range or as a Doppler radar, or with ultrasound.
  • the motion detector is designed as a passive infrared sensor. This means that the motion detector works passively on the basis of the infrared radiation from the surroundings, specifically the infrared radiation of the person to be monitored or other people who come into the detection range of the motion detector.
  • a passive infrared sensor also known as a PIR sensor (passive infrared), especially reacts to changes in angle, i.e. when a person passes the sensor.
  • the radio transmitter and the radio receiver work on the basis of Bluetooth, preferably on the basis of Bluetooth LE (Bluetooth Low Energy).
  • Bluetooth LE also known as Bluetooth Smart, is a radio technology that can be used to network devices at a distance of about 10 meters from each other. Compared to conventional Bluetooth technology, Bluetooth LE offers significantly lower power consumption with approximately the same radio range. This is particularly relevant with regard to the radio transmitter, since this is carried by the person to be monitored and must therefore have a battery supply.
  • the radio receiver can be a simple receiver that can only determine the presence of a radio signal emitted by the radio transmitter.
  • the radio receiver has an array of at least two antennas. In this way it is fundamentally possible not only to determine the presence of the radio transmitter in the reception area of the radio receiver, but also to locate the radio transmitter.
  • the antennas can preferably be switched, so that it can be clearly verified from which antenna a respective signal has been received.
  • the antennas have different directional characteristics.
  • the radio receiver can be provided independently of the motion detector. However, it is advantageous if the radio receiver is in the vicinity of the motion detector. It is particularly preferred that the radio receiver is integrated in the motion detector. In particular, motion detectors with integrated radio receivers can be provided in this way, so that only the installation of a motion detector is necessary, since this already has the radio receiver. There is no need to equip the apartment separately with a radio receiver.
  • the function of the monitoring system can be significantly increased by providing a plurality of motion detectors which are arranged such that the detection areas of the motion detectors together cover the entire apartment. In other words, this means that the entire apartment is "illuminated" by the motion detectors, so that there is no space in the apartment where movement of the person to be monitored could not be registered.
  • each motion detector has an integrated radio receiver.
  • the distance between adjacent motion detectors is selected and the range of the radio transmitter is set such that it is detected by exactly one radio receiver integrated in one motion detector. This reduces the system's susceptibility to errors in that that it can be regularly ensured in this way that in addition to the detection of a movement of the person to be monitored, a radio signal is also detected by the radio transmitter carried by the person to be identified, in order to uniquely identify the person.
  • the data received in the monitoring center can be used or processed in different ways.
  • the data received in the monitoring center for the identification of the person or for the predetermined geometric area are linked together with a date at the time of the detection of the person in the predetermined area to form a data record and this data record is determined statistically Comparing data on the person's expected location at that time.
  • These statistical data on the expected location of the person have preferably been generated in that the monitoring system has collected movement data for the person to be monitored for a certain time before it has started the actual monitoring task, so that typical daily routines and thus recorded are recorded typical movement patterns can be determined if there are deviations from the typical behavior of the person.
  • a further radio transmitter is provided which is equipped with a motion sensor and is attached to a household object together with the motion sensor.
  • the configuration of the invention in this way is particularly advantageous in that it can be used to detect, for example, whether a cabinet door has been moved, a tray has been picked up or a vessel has been moved. If the movement of one of these household items is associated with a typical activity to be performed by the person to be monitored, such as taking medication provided in a cabinet or on a tray, it can at least be determined in this way that the person opens the cabinet or has moved the tray so that - at least with a certain probability - it can also be assumed that the person has fulfilled their obligation to take the medication.
  • a date for identifying the household object and a date for the movement of the household object are transmitted to the monitoring center by the radio transmitter attached to the household object. It is preferably also provided that the data for identifying the household object or for moving the household object is transmitted to the monitoring center via a radio receiver integrated in a motion detector.
  • the data of the household object received in the monitoring center or on the movement of the household object are linked together with a date at the time the movement of the household object was recorded to form a data record, and this data record with statistically determined data on an expected one Movement of the household item can be compared at this time.
  • Monitoring is also possible in this way in that it can be used to check whether the person to be monitored has fulfilled his obligations for certain activities, such as taking medication or taking in liquid.
  • the motion sensor attached to the household object has an acceleration sensor and / or an inclination sensor.
  • An acceleration sensor also known as a G-sensor, is a sensor that measures its acceleration. This is preferably done by determining the inertial force acting on a test mass. It can thus be determined whether the acceleration sensor is experiencing a speed increase or a speed decrease, e.g. when picking up or setting down a tray or a container.
  • Fig. 1 is shown schematically a person 1 who is in her apartment 2 and is monitored there.
  • Four rooms are provided in the apartment, namely a living and dining room 3, a kitchen 4, a bathroom 5 and a bedroom 6.
  • Each of these rooms is equipped with an integrated sensor unit 7, each of which has a motion detector 8 into which a radio receiver 9 is integrated, as schematically Fig. 2 removable.
  • the apartment 2 is "illuminated” in such a way that a movement of the person 1 can be detected in the entire area of the apartment 2.
  • Passive infrared sensors are provided as motion detectors 8, which do not actively radiate into the room, but rather record changes in heat when the person 1 moves in the apartment 2.
  • the arrangement and range of the motion detectors 8 is selected such that there is no location in the apartment 2 in which a movement of the person 1 to be monitored could not be detected.
  • the person to be monitored 1 wears a radio transmitter 10 in the form of a beacon worn as a bracelet.
  • This radio transmitter 10 like the radio receivers 9 provided in the integrated sensor units 7, works on the basis of Bluetooth LE version 4.0.
  • the example described here thus relates to a solution that uses a beacon carried by the person to be monitored 1.
  • the invention can also be implemented without such a beacon, in particular when person 1 is alone in the apartment most of the time.
  • the person to be monitored 1 does not receive a visit for a few hours more than twice a week, their typical activity pattern is practically not influenced by the activities recorded by visitors.
  • the activities written on the basis of visitors are statistically higher than the top 90% of the activity data that are recorded for a person who essentially lives alone. In one In such a case, no identification of person 1 by means of radio transmitter 10 and radio receiver 9 is required.
  • the functioning of the monitoring system according to the preferred exemplary embodiment of the invention described here is as follows: If the person to be monitored 1, who carries the radio transmitter 10 on his arm, moves within the apartment 2, he thereby activates a respective motion detector 8, which installed in the room in which person 1 is currently moving. In addition, the radio receiver 9 provided together with the motion detector 8 in the integrated sensor unit 7 of the respective room receives a radio signal from the radio transmitter 10 carried by the person 1.
  • Fig. 2 shows how the four sensor units 7 arranged in the different rooms, each having a motion detector 8 and an associated radio receiver 9, are connected to a monitoring center 11.
  • This connection is shown in the present case in a wired manner, but a connection of the sensor units 7 to the monitoring center 11 by radio can of course also be provided.
  • the individual motion detectors 8 can be used not only to detect in which area, in particular in which room, the the person to be monitored 1 has moved. In addition, it can also be ensured that the movement detected is actually a movement of the person 1 to be monitored, after all, along with the movement of the person 1, the radio signal emitted by the radio transmitter 10 is also the same as the one that is activated Motion detector 8 in the sensor unit 7 provided radio receiver 9 has been received.
  • movement patterns in the present case movement data recorded at regular intervals of 15 seconds, are processed in an evaluation unit 12 provided in the monitoring center 11 by using statistically expected ones previously determined Movements are compared.
  • a signal can be sent by a communication device 13 of the monitoring center 11, which can be received by a smartphone 14, for example, so that a warning display 15 can be displayed on the smartphone 14.
  • a caregiver can be informed that there is an emergency in the person 1 to be monitored in the apartment 2 or at least such a situation that requires the caregiver to check it.
  • the household object 16 is provided with a motion sensor 18 and with a further radio transmitter 19.
  • Fig. 4 a box plot for the movement data expected on the one hand by all motion detectors 8 in the apartment and on the other hand recorded on a normal day can be seen.
  • the box represents the area within which 50% of all values recorded in the past to prepare for the current surveillance lie.
  • the box thus represents the expected range of values.
  • An upper and a lower antenna indicate the ranges up to the maximum or minimum values recorded in the past.
  • the median of the values recorded in the past is given as a point within the box.
  • Fig. 4 also see what effects it has if activities of visitors of person 1 are recorded.
  • Fig. 5 the activity of person 1 is several times significantly outside during the day, namely below the boxes, which indicates a reduced activity. This could mean that the person to be monitored 1 lay down several times, which can indicate a disease state. In such a case, according to the preferred exemplary embodiment of the invention described here, provision is made to generate a low-level emergency signal so that nursing staff can be informed, for example, that the person to be monitored 1 may not be doing well.
  • FIG. 7 removable, as with the help of activity patterns of mutually different motion detectors 8, namely a motion detector 8 in the dining room and a motion detector 8 in the living room, more can be detected than that the activity of the monitored person 1 is high or low.
  • the activities in the dining room stopped at noon, while the activities in the living room were abnormally high.
  • Such comparisons and analyzes can help to determine the level of the emergency signal to be emitted by inferring the probable situation in which the person 1 to be monitored is located in the apartment through the activity patterns detected.
  • a monitoring system of this type for monitoring the activities of a person 1 in an apartment 2, with which a reliable detection of an emergency and a clear assignment of a detected movement of a person to the person 1 to be monitored is made possible.
  • Evaluation device 12 Communication device 13
  • Smartphone 14 Warning indicator 15 Household item 16 drug 17th Motion sensor 18th Radio transmitter 19th

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  • Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Physics & Mathematics (AREA)
  • Social Psychology (AREA)
  • General Health & Medical Sciences (AREA)
  • Gerontology & Geriatric Medicine (AREA)
  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Psychology (AREA)
  • Psychiatry (AREA)
  • Engineering & Computer Science (AREA)
  • Computer Vision & Pattern Recognition (AREA)
  • Emergency Alarm Devices (AREA)
  • Alarm Systems (AREA)

Claims (14)

  1. Système de surveillance permettant de surveiller les activités d'une personne (1) dans un appartement (2) avec
    un détecteur de mouvements (8), prévu dans l'appartement (2) permettant la détection d'un mouvement de la personne (1) dans l'appartement (2), et un centre de surveillance (11), où
    la zone de détection géométrique du détecteur de mouvements (8) est associée à une zone géométrique prédéterminée de l'appartement (2),
    des données de détection de la présence de la personne (1) dans la zone géométrique prédéterminée sont transmises en continu au centre de surveillance (11) par le détecteur de mouvements (8),
    il est par contre vérifié dans le centre de surveillance (11) si les données transmises se situent dans un domaine de données attendues, et
    un signal de détresse est généré dans le centre de surveillance (11) lorsque les données transmises se situent plus longtemps qu'un intervalle de temps prédéterminé en dehors du domaine de données attendu,
    caractérisé en ce que le domaine de données attendu a été déterminé au moyen d'une surveillance précédente de la personne (1).
  2. Système de surveillance selon la revendication 1, dans lequel un capteur de porte est prévu, avec lequel l'ouverture et la fermeture de la porte de l'appartement sont détectées.
  3. Système de surveillance selon la revendication 1 ou la revendication 2, doté
    d'un récepteur radio (9) et d'un émetteur radio (10) porté par la personne (1), où
    l'émetteur radio (10) émet un signal radio pour l'identification de la personne (1) lors de la détection de la personne (1) par le détecteur de mouvements (8),
    le signal radio est détecté par le récepteur radio (9) et
    une donnée d'identification de la personne (1) est transmise au centre de surveillance (11) par le récepteur radio (9) et une donnée de détection de la présence de la personne (1) dans la zone géométrique prédéterminée est transmise à partir du détecteur de mouvements (8).
  4. Système de surveillance selon la revendication 3, dans lequel le récepteur radio (9) présente un réseau à base d'au moins deux antennes.
  5. Système de surveillance selon la revendication 4, dans lequel les antennes présentent des caractéristiques d'orientation différentes l'une de l'autre.
  6. Système de surveillance selon l'une des revendications 3 à 5, dans lequel le récepteur radio (9) est intégré conjointement avec le détecteur de mouvements (8) dans une unité de capteur (7) commune.
  7. Système de surveillance selon l'une des revendications précédentes, dans lequel une multiplicité de détecteurs de mouvements (8) est prévue, détecteurs qui sont disposés de telle manière que les zones de détection des détecteurs de mouvements (9) couvrent ensemble la totalité de l'appartement (2).
  8. Système de surveillance selon la revendication 7, dans lequel les détecteurs de mouvements (8) présentent respectivement un récepteur radio (9) intégré.
  9. Système de surveillance selon la revendication 7 ou la revendication 8, dans lequel la distance entre des détecteurs de mouvements (8) voisins les uns des autres est choisie de telle manière et la portée de l'émetteur radio (10) est réglée de telle manière que l'émetteur radio (10) est détecté respectivement par exactement un récepteur radio (9).
  10. Système de surveillance selon l'une des revendications 3 à 9, dans lequel les données pour l'identification de la personne (1) reçues dans le centre de surveillance (11) et les données reçues dans le centre de surveillance (11) pour la région géométrique prédéterminée sont recoupées ensemble avec une donnée correspondant à l'instant de détection de la personne (1) dans une zone prédéterminée pour former un ensemble de données et cet ensemble de données est comparé avec des données déterminées statistiquement pour le lieu de résidence attendu de la personne (1) à cet instant.
  11. Système de surveillance selon l'une des revendications 3 à 10, dans lequel un autre émetteur radio (19) est prévu, qui est rattaché conjointement avec un détecteur de mouvements (18) à un objet domestique (16).
  12. Système de surveillance selon la revendication 11, dans lequel, lors d'un déplacement de l'objet domestique (16), une donnée d'identification de l'objet domestique (16) est transmise par l'émetteur radio (19) rattaché à l'objet domestique (16) et une donnée de mouvement de l'objet domestique (16) est transmise au centre de surveillance (11).
  13. Système de surveillance selon la revendication 12, dans lequel des données reçues dans le centre de surveillance (11) concernant l'objet domestique (16), respectivement le déplacement de l'objet domestique (16), sont recoupées ensemble avec une donnée concernant l'instant de détection du déplacement de l'objet domestique (16) pour former un ensemble de données et cet ensemble de données est comparé avec des données déterminées statistiquement concernant le déplacement attendu de l'objet domestique (16) à cet instant.
  14. Système de surveillance selon la revendication 13 ou la revendication 14, dans lequel le capteur de mouvements (18) est un capteur d'accélération et/ou un capteur d'inclinaison.
EP15157870.5A 2015-03-05 2015-03-05 Système de surveillance Active EP3065113B1 (fr)

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EP3065113B1 true EP3065113B1 (fr) 2020-06-10

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