EP3170139A1 - Unterstützungssystem und verfahren zum erkennen und signalisieren eines risikozustands in bezug auf einen benutzer - Google Patents

Unterstützungssystem und verfahren zum erkennen und signalisieren eines risikozustands in bezug auf einen benutzer

Info

Publication number
EP3170139A1
EP3170139A1 EP15741973.0A EP15741973A EP3170139A1 EP 3170139 A1 EP3170139 A1 EP 3170139A1 EP 15741973 A EP15741973 A EP 15741973A EP 3170139 A1 EP3170139 A1 EP 3170139A1
Authority
EP
European Patent Office
Prior art keywords
user
identification data
service
measurement
assistance
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
EP15741973.0A
Other languages
English (en)
French (fr)
Inventor
Karl Auzou
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Good Angel
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Publication of EP3170139A1 publication Critical patent/EP3170139A1/de
Ceased legal-status Critical Current

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Classifications

    • 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
    • G06Q40/00Finance; Insurance; Tax strategies; Processing of corporate or income taxes
    • G06Q40/08Insurance
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60KARRANGEMENT OR MOUNTING OF PROPULSION UNITS OR OF TRANSMISSIONS IN VEHICLES; ARRANGEMENT OR MOUNTING OF PLURAL DIVERSE PRIME-MOVERS IN VEHICLES; AUXILIARY DRIVES FOR VEHICLES; INSTRUMENTATION OR DASHBOARDS FOR VEHICLES; ARRANGEMENTS IN CONNECTION WITH COOLING, AIR INTAKE, GAS EXHAUST OR FUEL SUPPLY OF PROPULSION UNITS IN VEHICLES
    • B60K28/00Safety devices for propulsion-unit control, specially adapted for, or arranged in, vehicles, e.g. preventing fuel supply or ignition in the event of potentially dangerous conditions
    • B60K28/02Safety devices for propulsion-unit control, specially adapted for, or arranged in, vehicles, e.g. preventing fuel supply or ignition in the event of potentially dangerous conditions responsive to conditions relating to the driver
    • B60K28/06Safety devices for propulsion-unit control, specially adapted for, or arranged in, vehicles, e.g. preventing fuel supply or ignition in the event of potentially dangerous conditions responsive to conditions relating to the driver responsive to incapacity of driver

Definitions

  • the present invention relates to the field of assistance systems for detecting and reporting a state of risk in a user, in particular for a vehicle driver.
  • the present invention also relates to a method implementing such assistance, in particular for a vehicle driver.
  • Test devices are known in the prior art which make it possible, for example, to check an ability at a given moment for a user to drive a vehicle safely.
  • These devices may be communicating breathalyzers that measure an alcohol content in the breath of a user.
  • breathalyers generally comprise a tip in which the user blows, connected to a sensor for measuring the alcohol content in the exhaled air by the user.
  • a display shows the result of the measurement, usually in mg / liter of exhaled air or in grams per liter of blood. According to the result of the measurement, it is considered that the user is able or not to drive a vehicle, in particular a motor vehicle such as a car.
  • Other examples known in the prior art of devices for testing in particular an ability to safely drive a vehicle include blood pressure measuring devices, such as the electronic sphygmomanometer Arm Topcom 5000 ARM marketed by the company TOPCOM . These devices have the disadvantage of providing a raw result. The user himself or a third party must interpret the result to derive for example an ability or inability to drive a vehicle safely. The known devices also have the disadvantage of very little responsibility of the user, or in any case little more than a user who is aware of himself not to be able to manage a risk, for example to take the wheel of a vehicle.
  • immobilizer devices provided to block the starting of a vehicle in response to a result of a measurement of alcohol level above a certain threshold.
  • a device is for example the key Saab "AlcoKey”, marketed by Saab.
  • An object of the present invention is to propose a system performing a measurement that empowers a user.
  • Another object of the present invention is to propose a support system from a remote site, which in particular solves the problems related to a prohibition for the user to use his vehicle, that this prohibition takes the form of 'a simple advice not to drive with possible suggestion of alternative means of transport or blocking the start of his vehicle.
  • an object of the present invention is to provide an assistance method, which eliminates at least one of the aforementioned drawbacks.
  • the invention also aims to exploit a new combination of information that identifies a person.
  • Yet another goal is to ensure traceability of information.
  • an assistance system for detecting and reporting a risk state to a user comprising:
  • identification data acquisition means for acquiring identification data of the user
  • said coordination means being configured so that the acquisition means acquire said user identification data when the latter implements collecting information by said measuring means, and
  • recording means for recording a file comprising the information and the identification data, as well as the date and time of the measurement.
  • the user is empowered by his identification at the time of the measurement, and by the recording that unquestionably connects a measure, a person and a time stamp. It is therefore less necessary to block the vehicle or other risk position. The risk position can therefore remain operational for another person. In the event of an accident occurring in the period following the time stamped measurement, the recorded file may become evidence, one way or the other depending on its content.
  • the system activates geolocation means during and at the location of the measurement, and the recorded file contains a geolocation result.
  • the information typically includes at least one of: a blood alcohol level measurement, a blood pressure measurement, a heart rate measurement, a toxicology measurement, a blood glucose measurement.
  • the acquisition means which at the same time constitute the coordination means, comprise means for shooting the user while using the measuring means.
  • the coordination by the image is simple to realize and particularly effective.
  • the means of shooting are those of a communicating mobile terminal, in particular a geolocation device such as a digital tablet or smartphone, equipped with an application enabling it to communicate with the measuring means.
  • the coordination means may be an integral part of a mobile terminal, in particular a geolocation device, such as a mobile terminal such as a digital tablet or smartphone, equipped with an application enabling it to communicate with the measurement means.
  • a geolocation device such as a mobile terminal such as a digital tablet or smartphone, equipped with an application enabling it to communicate with the measurement means.
  • the identification data acquisition means form an identification data acquisition device that is independent of a geolocation device.
  • the information collected by the measurement means is advantageously transmitted to the geolocation device or other terminal, via Bluetooth, or other appropriate transmission means, preferably wireless.
  • the system comprises a communicating terminal, in particular a geolocation means, and at least one remote site, and a computer means, in particular an application, which can be installed in the terminal to enable it to communicate with the means. measurement and with the remote site.
  • the computer means in particular the application, has a button, physical or virtual, configured to send to a third person a position provided by the geolocation device. This sending can for example be made in the form of an SMS.
  • the coordinates, typically telephone, of the third person may have been previously recorded in the computer means, in particular the application.
  • the third party may display the position of the location device. This allows a third party to join a user of the system who would have had difficulty explaining his position in another way.
  • the computer means in particular the application, has a command configured to communicate to the remote site a position generated by the geolocation device.
  • This command can be made in the form of a physical button of the computer means or a virtual button generated by the application.
  • the site can record the position communicated.
  • a user of the system can inform the remote site of the geolocation of the computer means at a given instant.
  • the computer means in particular the application may have another command configured to send a query query the position communicated to the remote site.
  • This command can be made in the form of a physical button of the computer means or a virtual button generated by the application.
  • a user of the system can receive from the remote site the position communicated to the remote site at a previous time.
  • the computer means is configured to display a response sent by the remote site in response to the query in the form of a card.
  • the position of the computer means at an earlier time can be displayed on a card, for example by a third-party application.
  • the user can, for example, using this system, find the place where a car is parked, if he does not remember or the person he accompanies no longer remembers.
  • the remote site refers to the computer means proposals for requests relating to different types of assistance available.
  • a request may also be transmitted to at least one remote site, for example at the same time as the transmission of the file comprising the identification data and the measurement.
  • the request preferably includes at least one of the following elements: a request for intervention of a taxi service, a request for intervention of a carpool service, a request for intervention of a car-sharing service , a request for intervention of a service of accompaniment, a request for intervention of a service of medical assistance, a call of a human assistance service, a request for contact with a taxi service, a request for contact with a carpool service, a request to put in contact with a car-sharing service, a request for implementation contact with an escort service, a request to put in touch with a medical assistance service.
  • a car-sharing service is a service that connects a customer with a vehicle owner who offers to lend his vehicle when he does not use it himself.
  • the human assistance service is provided by a staff who is available to answer any question or request.
  • the at least one remote site comprises for example at least one of the following elements: a server, a contact service with a human assistance service, a carpool service, a car-sharing service, a car service escort, taxi service, medical assistance.
  • the at least one remote site comprises at least one server that itself comprises means for processing the identification data acquired by the identification data acquisition means and the measurement information and return a result.
  • this treatment to the mobile terminal such as geolocation device, in particular digital tablet or smartphone.
  • This treatment may include recognizing the person by comparing the credentials with a pre-recorded profile, custom processing the measurement information from the registered profile, which may include medical or paramedical data, generating advice , for example on the estimated time before a resorption of the blood alcohol level, or on the most appropriate requests given the file received, the generation of a visualization of the result of measurement and treatment of the file.
  • the server is linked to a database of rules applicable in different countries.
  • the content of the file is processed according to the rules applicable to the location of measurement identified by the geolocation, and the result of the processing sent to the geolocation device takes into account these rules.
  • the at least one remote site typically comprises at least a portion of the recording means, in conjunction with remote storage means. But alternatively or cumulatively, the recording means may also include a local memory, including a temporary memory for cases of unavailability of connection with remote recording means.
  • the system further comprises control means, in particular a communicating camera, placed at the place of risk, for example at the driving position of a vehicle, for at least one of the following functions :
  • the system may be configured to implement at least two times the measuring means, with a time interval, to collect double information on the same user. This makes it possible to determine a direction of evolution of the measured parameter, for example the blood alcohol level. If the value of the parameter is close to reaching a limit not to be exceeded, the direction of variation is decisive for the decision to be taken (for example whether or not to take the steering wheel of a vehicle).
  • the system may further comprise means adapted to prevent the starting of a vehicle and arranged to be controlled from data relating to information measured by the measuring means.
  • the assistance system comprises time stamp reading means of the substances ingested by a user, and for calculating and providing the user with an estimated cumulative effect of these ingestions at a given time and forecast evolution of this effect.
  • the assistance method for detecting and reporting a risk state in a user comprising the following steps:
  • the acquisition of identification data comprises an input of an image showing the user in his action of implementing the measuring means, that is to say that the image must show this action of the user and at the same time allow to recognize the user, typically show his face.
  • the method further comprises the following steps:
  • a communicating terminal such as a geolocation device, provided with means of communication with a remote site
  • the communicated result including an invitation to send a request from the terminal and to the remote site, said request relating to these identification data.
  • the method is advantageously implemented by a system according to the invention, as described above.
  • FIG. 1 illustrates an embodiment of the method according to the invention
  • FIG. 2 illustrates a first embodiment of the system according to the invention
  • FIG. 3 illustrates an embodiment for coordinating the identification data with the measurement information for the method of FIG. 1 or the system of FIG. 2,
  • FIG. 4 a second embodiment of a system according to the invention
  • FIG. 5 illustrates an embodiment of a geolocation device according to the invention
  • FIG. 6 illustrates a display of a man-machine interface of the geolocation device according to the invention.
  • FIG. 1 illustrates a method according to the invention in the form of a flowchart in which:
  • the different steps are each represented by a numbered rectangular box, the number of the box corresponding to the number of the step, and
  • the rectangular boxes are connected to each other by arrows oriented in the direction of a step towards the at least one immediately following step in chronological order.
  • Step 1
  • a user 101 records on a geolocation device 102 according to the invention, a user profile 112.
  • the geolocation device 102 is also in communication 116 with a server 110.
  • the server communicates with at least one database 210.
  • the user profile 112 is recorded on the server 110, via the geolocation device 102.
  • the geolocation device 102 comprises a satellite navigation receiver 106 (see FIG. 5) for receiving a satellite signal 105 in order to locate itself with reference to satellites 104 (only two of which are represented) which emit a GPS signal .
  • the geolocation device 102 will be described in greater detail below, with reference to FIG.
  • a user profile 112 may be related to the same geolocation device 102.
  • a user profile 112 includes a gender (male or female), a diverence (thin, medium, coated, etc.), an age, a size and a photograph.
  • the user profile may also include a number contract, for example a contract number relating to an insurance policy or a rental contract.
  • the user 101 wishes to use the vehicle 103. He needs to know if he is able to drive such a vehicle. It will therefore use the system 100 according to the invention. For this, it accesses a display on a human-machine interface 160 (a touch screen for example) of the geolocation device 102 (see Figure 5), and selects the implementation of an aptitude test to drive. The beginning of this test may be marked by a specific display relating for example to novelties in terms of road safety and related to the geographical location in which the user is located. For example, you may not have the same restrictions from one country to another. According to the geolocation data transmitted by the geolocation device to the server 110, the latter obtains from the database 210 the road and regulatory information relevant to the location where the user is, and transmits them to the geolocation device 102. .
  • a display allows the user 101 to identify himself if his user profile 112 has been previously registered.
  • the geolocation device 102 comprises means of identification with the server 110, for example a particular code attached to each sending of data to the server 110.
  • the only means of identification of the geolocation device 102 with the server 110 are the technical characteristics of the geolocation device 102 and the measuring means 107 which will be described later, the information of the user profile 112 being used in the example only by the geolocation device 102.
  • the device geolocation 102 according to the invention also comprises acquisition means 108 for identifying data for acquiring identification data of a user.
  • the geolocation device 102 further comprises means 109 for coordinating the measuring means 107 and the identification data acquisition means.
  • the coordination means are configured to acquire identification data of a user when the latter implements the measurement means 107.
  • the geolocation device is a digital terminal such as a smartphone whose Shooting is the means of acquisition 108 according to the invention.
  • the screen 160 of the smartphone serves as an interface with the user 101.
  • An application specific to the invention is installed in the terminal 102. While the user 101 implements the measuring means 107, he takes his own face in picture with the camera 108 of the smartphone, as shown in Figure 3. If necessary, by a link between the application and the camera, the measurement means measurement is validated only if a shot was taken during the measurement. Step 3:
  • the user 101 connects the geolocation device 102 to the measurement means 107.
  • the geolocation device 102 can detect and display (via a human-machine interface 160) a connection error to the measurement means.
  • These measuring means 107 are, for example, a communicating ethylotest of which there are several models on the market. These communicating measuring means 107 may also be means for measuring a blood pressure, means for measuring a heart rate, means for measuring blood glucose, means for measuring the presence of drugs in an organism, etc. .
  • the connection 115 between the navigation device 102 and the measurement means 107 is done by Bluetooth or any other available protocol. It is also possible to provide an information transfer by insertion into the navigation device 102 of a storage means containing information collected on a user by the measurement means 107.
  • the connection 115 is for example an SD (Secure) card. Digital) or microSD or miniSD, etc.
  • the user 101 can access via the geolocation device 102 to information on the measuring means 107 (including a battery charge level, a sensor temperature, a serial number, a number of measurements remaining before recalibration, etc.).
  • the measuring means 107 may require, before being ready for use, a preheating time of ten to twenty seconds, for example. Typically, it is possible to carry out several hundred measurements with an alcohol test between two successive calibrations.
  • the user 101 is invited by a display to perform at least one measurement, for example to blow in a tip of a breathalyzer.
  • a display on the geolocation device 102 may assist the user 101 in implementing a measurement with the measuring means 107, for example by displaying a loading bar indicating whether the user 101 should continue to blow into the mouthpiece.
  • a display may also indicate to the user 101 that the connection 115 is poorly established between the geolocation device 102 and the measuring means 107, that the measuring means 107 must be recalibrated, and so on.
  • identification with the identification data acquisition means 108 is implemented to identify the user blowing into the tip.
  • These acquisition means 108 for identification data are for example a camera, in particular the camera 108 (FIG. 3) of a smartphone.
  • the measuring means 107 thus collect information on a user 101, for example his blood alcohol level at the moment of the measurement.
  • the identification data acquisition means also collect identification data of a user, for example a photograph of the latter.
  • the information is then transmitted to the geolocation device 102.
  • the identification data is transmitted to the geolocation device 102 by the fact that the application installed in the geolocation device retrieves them from the camera 108 of the same smartphone.
  • the information and the identification data are then processed to know if the user 101 is able to drive the vehicle 103.
  • the processing is done in this example by an onboard intelligence of the geolocation device 102.
  • the information transmitted to the geolocation device 102 is associated with a user profile 112 chosen during step 2.
  • the geolocation device 102 analyzes the information as a function of data of the user profile 112, for example according to the size and weight of the user 101. This analysis according to certain data can be implemented by a prior calculation of danger thresholds which depend on said data. For example, a higher danger threshold may be provided in the case where the user is male, tall and diverent.
  • the analysis also implements the credentials to verify that the data identification numbers transmitted to the geolocation device 102 are in adequacy with the identification data relating to the user profile 112.
  • the information is analyzed for example according to legal thresholds in a given state, stored in a memory of the geolocation device 102. This analysis can also be performed within the server 110 which then returns to the geolocation device 102 the result of the analysis.
  • the geolocation device and / or the server 110 may implement a memory for storing the identification data.
  • the result of the analysis is then displayed to the user 101 by the geolocation device 102.
  • the geolocation device 102 is activated in a "night” mode, an additional display can be provided to attract the attention of the user. the user 101 on the dangers of night driving in a state of fatigue, stress, drunkenness, etc.
  • the "night” mode generally designates a particular setting of the geolocation device 102 that is particularly adapted to night conditions, for example relative to brightness, contrast and / or color adjustments of the display.
  • a display indicates to the user that the measurement indicates that he is in a driving state. However, if the BAC is non-zero, a display prompts the user not to drive away.
  • the display indicates that it is not necessary to drive in such a state, in both cases the display may be different depending on the geographical area, in particular the State.
  • the user can request details, for example, the display of a detail of a measurement, or a help on the interpretation of a measurement,
  • Figure 5 illustrates an example of This graph is ordered to display a blood alcohol level and for abscissa a number of hours after ingestion of alcohol, line 113 indicates a legal blood alcohol content.
  • a display proposes to the user 101 to send a request from the geolocation device 102.
  • the request may be a call from a human assistance service 117, or the sending of a request. a request for intervention of a given service.
  • the request consists of a call directly from a given service, via the geolocation device 102.
  • the request is associated with the instant geolocation data of the geolocation device 102, and can also be associated with the user profile 112.
  • An additional step may also be provided when the result is intermediate, the display then indicating to the user that it is not advisable to drive or that it is preferable to take another measurement.
  • the absorption of alcohol by the body occurs in three phases: an increasing phase during which the blood alcohol level increases, a constant phase during which blood alcohol concentration is constant, a decreasing phase during which the blood alcohol level decreases. It is essential to know the phase in which the driver is to determine the alcoholic state of the driver. A single measurement is usually not enough to determine if the driver is fit to safely hit the road. Indeed, if at the moment of measurement, the alcohol level of the user is below the limit, it may be higher than the limit in the next hour while the driver is on the road.
  • the geolocation device 102 is configured to implement the steps of 4 to 7 or 7 "twice, it can be configured to implement these steps twice, the second set of steps being implemented after a predetermined time, for example 15 minutes.
  • Step 8 '
  • the process can stop there.
  • a call to a service given is performed.
  • This service can be provided by service companies wishing to ensure that the driver is able to hit the road while driving.
  • service companies may include driving schools, insurers, car rental companies, etc.
  • system according to the invention may further comprise means adapted to prevent the starting of a vehicle and arranged to be controlled from data relating to information measured by the measuring means.
  • the system uses a communicating camera 180 installed in the vehicle and capable of communicating with the geolocation device 102. If after a measurement having revealed a physical state that does not allow the vehicle to be driven, somebody nevertheless tries to start the vehicle, the camera 180 captures an image of this person and this image is transmitted to the server 110 via the geolocation device 102.
  • the server implements a facial recognition software that compares the physiognomy of the driver with that of the user of the system, as identified by the identification data. If the person attempting to start the vehicle is the same as the person who has just been the subject of an alarming measurement, the starting of the vehicle is blocked or a specific alarm is transmitted or transmitted to the server 110. If the person is different, the start is blocked until this second person has implemented the process, and so on.
  • User 101 agrees to send a request. It can be provided a display in the form of a drop-down menu that allows the user 101 to specify the purpose of the request, for example to specify whether it requires the intervention of a carpool service 118, a a taxi service 119, a ride-back service 120, a car-sharing service 121 or a medical assistance service 122. It is also possible to provide a service assistance intervention request. Medical (not shown).
  • the geolocation device 102 sends the request.
  • the request is sent to the server 110 which is in two-way communication 218, 219, 220, 221, 222 respectively with the carpool service 118, the taxi service 119, the escort service 120, the car-sharing service 121 and the medical assistance service 122.
  • the request is analyzed by the server 110 which redirects it to the service indicated for example in the form of an electronic message.
  • the request consists of a call from the human assistance service 117, which then has access to the geolocation data of the geolocation device 102, by consulting the server 110.
  • the personnel 117 can then establish by for example, by means of the apparatus 124, for example telephone communication 318, 319, 320, 321, 322 respectively with the carpool service 118, the taxi service 119, the escort service 120, the car-sharing service 121 , or the medical assistance service 122 as provided in step 8.
  • the user 101 receives via his geolocation device 102 an acknowledgment of receipt indicating that his request has been transmitted and under what time the requested service can intervene.
  • This acknowledgment can be generated by the server 110 or formulated by the staff of the human assistance service 117.
  • Remote site 141 is the set constituted by the server 110, carpool 118, taxi 119, ride 120, car-sharing 121 and medical assistance 122, and, where appropriate, the assistance service. 117 and the apparatus 124.
  • the server 110 can be multiple. There may be at least two servers, one to perform data processing, the other, intermediate, to manage the exchange of information between a data processing server and the geolocation device 102.
  • the server intermediate encapsulates network communication frames
  • the measuring means 107 make it possible to collect data on the user 101.
  • the server 110 may have the role of collecting data via the geolocation device 102 and returning a result after analysis. It can serve as a database for event management such as calibrations associated with measurement means 107. For example, the server 110 can count a number of uses of the measurement means 107 and compare it with a maximum number of uses between two calibrations to send to the geolocation device 102 messages inviting the measurement means 107 to be calibrated.
  • the geolocation device 102 plays a role both as a user interface with a server 110 for access to services, and as a data collector, both data collected by means of measurement means 107 and geolocation data.
  • the geolocation device may consist of a smartphone, the measuring means 107 then connecting to the smartphone using a port that may have been initially provided for any data transfer.
  • the geolocation device 102 can:
  • the geolocation device 102 and the measurement means 107 may each have a source of clean energy, for example their own battery.
  • the geolocation device 102 comprises:
  • a satellite navigation receiver 106 for receiving a satellite signal 105
  • identification data acquisition means 108 for acquiring identification data of a user, this acquisition means being implemented in this embodiment in the form of an image sensor;
  • the means 109 for coordinating the measuring means 107 and the identification data acquisition means.
  • the means of coordination are configured to acquire identification data of a user when the latter implements the measuring means 107;
  • a wireless communication module 130 enabling the communication 116 with the server 110;
  • a memory 131 in bidirectional communication 132, 133, 134, 135 and 137 respectively with the processor 136, the satellite navigation receiver 106, the wireless communication module 130, the human-machine interface 160 and the transport port 140.
  • the processor 136 comprises the means 109 for coordinating the measuring means 107 and the identification data acquisition means 108.
  • the human-machine interface 160 may present at any time t one or more of the following information:
  • the estimated time at which the user can renew ie the estimated time from which the alcohol concentration rate in the blood will be lower than the legal
  • the user's consumption can be entered in a system memory in a manual mode or an automatic mode.
  • the user selects on the human-machine interface the drink and a quantity from a list of consumptions.
  • this drink is a homemade cocktail recipe and is therefore not present in the database of known drinks
  • the user himself enters a new drink via the man interface -machine by describing the quantities of each ingredient that makes up this drink.
  • the system comprises means for reading information relating to consumption.
  • a bar code may be present on a glass including the drink.
  • the user can scan with his phone the barcode present on the glass he consumes.
  • it is the telephone that includes means for reading information relating to consumption.
  • each drink has its own barcode attached to the drink's nomenclature. The drink is automatically added to the user's list of drinks.
  • a barcode may be present on an information board.
  • the user can scan with his phone the barcode present on a table describing drinks served in the establishment. Thus, it is the telephone that includes means for reading information relating to consumption.
  • the drink is automatically added to the user's list of drinks.
  • An NFC tag Near Field Communication
  • the user can scan with his phone the NFC tag embedded in the glass he consumes.
  • the telephone that includes means for reading information relating to consumption.
  • each drink has its tag attached to the nomenclature of the drink. The drink is automatically added to the user's list of drinks.
  • a N FC tag can be present on an information board.
  • the user can scan with his phone the NFC tag present on a table describing the drinks served in the establishment.
  • the telephone that includes means for reading information relating to consumption.
  • the drink is automatically added to the user's list of drinks.
  • the system is then configured, based on the history entered by the user and / or measurements made by the user through the means of measure, to warn the user of: the time of a next measurement, the estimated time at which he can drive again, the estimated time at which he will be sober.
  • the information available at the level of the geolocation device are also available on external servers.
  • This availability can be ensured by real-time replication of databases containing this information.
  • This availability is particularly ensured on servers directly accessible by companies interested in the possibility of preventing a user from driving when his blood alcohol level exceeds a certain threshold.
  • these servers can be located in computer "clouds”.
  • a user profile further comprises information on the type of vehicle to be driven and that the danger thresholds are different according to the type of vehicle. For example, if the vehicle is a bicycle, a higher danger threshold may be provided, but if the vehicle is a public transport vehicle, a more restrictive danger threshold may be provided.
  • Other services, communication protocols, connection means can be envisaged without departing from the scope of the invention.
  • the invention is also applicable to a person other than a driver. It is particularly applicable to a vehicle occupant other than the driver.
  • a vehicle that usually transports a person suffering from a chronic condition may be equipped with a system according to the invention comprising specific measuring means for detecting an acute state or a seizure, and for transmitting to the remote site a request medical assistance.
  • a system according to the invention comprising specific measuring means for detecting an acute state or a seizure, and for transmitting to the remote site a request medical assistance.
  • services other than taxi services, carpool services, escort, medical assistance without departing from the scope of the invention, and other means of measurement.
  • the geolocation device may be in particular a navigation device.

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EP15741973.0A 2014-07-17 2015-07-17 Unterstützungssystem und verfahren zum erkennen und signalisieren eines risikozustands in bezug auf einen benutzer Ceased EP3170139A1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR1456891A FR3023955B1 (fr) 2014-07-17 2014-07-17 Systeme et procede d'assistance pour detecter et signaler un etat de risque chez un utilisateur
PCT/EP2015/066442 WO2016009058A1 (fr) 2014-07-17 2015-07-17 Systeme et procede d'assistance pour detecter et signaler un etat de risque chez un utilisateur

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EP3170139A1 true EP3170139A1 (de) 2017-05-24

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EP (1) EP3170139A1 (de)
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US10604011B2 (en) 2015-10-13 2020-03-31 Consumer Safety Technology, Llc Networked intoxication vehicle immobilization

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JP2009160988A (ja) * 2007-12-28 2009-07-23 Omron Corp 検出装置および方法、並びに、プログラム
US8957771B2 (en) * 2008-07-17 2015-02-17 Consumer Safety Technology, Inc. Apparatus, system, and method for implementing and monitoring breath alcohol testing programs, usually from a fixed point location, such as a home
US8707758B2 (en) * 2009-10-02 2014-04-29 Soberlink, Inc. Sobriety monitoring system
US9558520B2 (en) * 2009-12-31 2017-01-31 Hartford Fire Insurance Company System and method for geocoded insurance processing using mobile devices

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Also Published As

Publication number Publication date
FR3023955B1 (fr) 2017-05-19
FR3023955A1 (fr) 2016-01-22
FR3027720B1 (fr) 2018-07-27
WO2016009058A1 (fr) 2016-01-21
FR3027720A1 (fr) 2016-04-29

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