WO2003085469A2 - Procede de diagnostic d'un equipement a controler, systeme de diagnostic, serveur intermediaire et module de communication associes - Google Patents
Procede de diagnostic d'un equipement a controler, systeme de diagnostic, serveur intermediaire et module de communication associes Download PDFInfo
- Publication number
- WO2003085469A2 WO2003085469A2 PCT/FR2003/001065 FR0301065W WO03085469A2 WO 2003085469 A2 WO2003085469 A2 WO 2003085469A2 FR 0301065 W FR0301065 W FR 0301065W WO 03085469 A2 WO03085469 A2 WO 03085469A2
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- WO
- WIPO (PCT)
- Prior art keywords
- equipment
- server
- communication module
- user
- adjustment
- Prior art date
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Classifications
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- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B23/00—Testing or monitoring of control systems or parts thereof
- G05B23/02—Electric testing or monitoring
- G05B23/0205—Electric testing or monitoring by means of a monitoring system capable of detecting and responding to faults
- G05B23/0259—Electric testing or monitoring by means of a monitoring system capable of detecting and responding to faults characterized by the response to fault detection
- G05B23/0297—Reconfiguration of monitoring system, e.g. use of virtual sensors; change monitoring method as a response to monitoring results
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- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B23/00—Testing or monitoring of control systems or parts thereof
- G05B23/02—Electric testing or monitoring
- G05B23/0205—Electric testing or monitoring by means of a monitoring system capable of detecting and responding to faults
- G05B23/0218—Electric testing or monitoring by means of a monitoring system capable of detecting and responding to faults characterised by the fault detection method dealing with either existing or incipient faults
- G05B23/0221—Preprocessing measurements, e.g. data collection rate adjustment; Standardization of measurements; Time series or signal analysis, e.g. frequency analysis or wavelets; Trustworthiness of measurements; Indexes therefor; Measurements using easily measured parameters to estimate parameters difficult to measure; Virtual sensor creation; De-noising; Sensor fusion; Unconventional preprocessing inherently present in specific fault detection methods like PCA-based methods
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- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B2223/00—Indexing scheme associated with group G05B23/00
- G05B2223/06—Remote monitoring
Definitions
- the present invention relates to a method for diagnosing an item of equipment to be checked, a diagnostic system, servers and a communication module for implementing the method.
- a first method consists in consulting and analyzing vehicle operating data collected for example by a vehicle on-board computer.
- a second method is to connect an external diagnostic device to a vehicle control outlet.
- the device reads vehicle operating data and, using this data, performs a diagnosis.
- the first method can be carried out simply by a user of the vehicle, but the diagnosis is rudimentary and proves to be ineffective.
- the second method is more efficient but more complex to implement because it generally requires the use of a specialized repairer equipped with the diagnostic device.
- Document WO 97/15009 discloses a method for diagnosing an item of equipment to be checked in which a communication module, associated with the item of equipment to be checked, takes operating data from the item of equipment to be checked and transmits them to a remote server, and the remote server performs a diagnosis on the basis of the operating data received.
- the diagnostic operation is triggered locally by the communication module and executed by the remote server. The user therefore does not systematically need to go to a repairer. Such a method therefore allows the user to simply obtain the diagnosis of his equipment.
- the present invention aims to further improve this diagnostic method in order to apply it to different sets of equipment, for example to motor vehicles manufactured by different manufacturers.
- the invention relates to a method for diagnosing an item of equipment to be checked in which a communication module, associated with the item of equipment to be checked, takes operating data from the item of equipment to be checked and forwards it to a server. remote, and the remote server performs a diagnosis on the basis of the operating data received, characterized in that an intermediate server determines, from among a plurality of specialized assistance servers, which server is suitable for the equipment and sets up relationship between the communication module and the specialized assistance server adapted to the equipment,
- the communication module transmits the operating data of the equipment to the specialized assistance server which performs the diagnosis.
- Each specialized assistance server is able to carry out diagnostics for a predefined set of equipment, for example for all vehicles of the same car manufacturer.
- the referral from the communication module to the specialized assistance server adapted to its equipment is carried out centrally by the intermediate server.
- the communication module can thus simply obtain an improved diagnosis from a distance.
- an adjustment step is provided during which the remote server transmits to the equipment, via the communication module, adjustment commands for repairing
- the communication module can also identify a distinctive characteristic of at least one item of equipment, for example the name of the manufacturer or the serial number of a piece of equipment or of the equipment itself, and retransmit it to the remote server.
- a distinctive characteristic of at least one item of equipment for example the name of the manufacturer or the serial number of a piece of equipment or of the equipment itself.
- Such feedback of information to the remote server makes it possible to facilitate the recall operations of equipment that manufacturers must launch when they have detected a manufacturing defect likely to concern a given set of equipment.
- the serial number of the equipment or of the part transmitted by the communication module to the server allows the server to determine whether the equipment in question is likely to present a manufacturing defect.
- the invention also relates to a system for diagnosing an equipment to be checked, for implementing the method defined above, comprising a communication module associated with the equipment to be checked and a diagnostic server, connected one to the other. to the other through a communication network, the communication module being arranged to transmit operating data from the equipment to the server and the server being arranged to perform a diagnosis on the basis of the data of operation of the equipment, characterized in that there is provided a plurality of specialized assistance servers able to carry out diagnostics and an intermediate server arranged to determine, among the plurality of specialized assistance servers, which is the suitable server to the equipment and to connect the communication module and said specialized assistance server adapted with a view to establishing a diagnosis relating to the equipment.
- the invention also relates to an intermediate server for implementing the previously defined method, comprising reception means for receiving a diagnostic request relating to an item of equipment to be checked, means for determining from among a plurality of specialized assistance servers which is the server suitable for the equipment to be checked and means for connecting said communication module and said adapted specialized assistance server.
- the invention also relates to a communication module for the implementation of the previously defined method, comprising collecting means arranged to collect operating data relating to an item of equipment to be controlled and means for sending operating data to a remote server. , characterized in that means are provided for detecting an emergency event relating to the equipment to be checked and then, upon detection of said emergency event, to connect as a priority to a “black box” server and transmit to it a data flow conveying data relating to the equipment to be checked.
- the invention relates to a "black box" server comprising means for receiving a data stream conveying data relating to a piece of equipment control and means for memorizing said data by associating it with temporal reception information.
- FIG. 1 shows a diagram of the diagnostic system
- FIG. 2 shows a functional block diagram of the intermediate server of Figure 1;
- FIG. 3 shows a functional block diagram of the communication module of Figure 1;
- FIG. 4 represents a functional block diagram of the specialized assistance server
- FIG. 5 represents a functional block diagram of a black box server of FIG. 1.
- the diagnostic system of the invention is represented comprising a communication module 1 associated with an item of equipment to be checked 2, an intermediate server 3, associated with a user database 4A, with a database data 4B from specialized assistance servers and to a database 4C for diagnostic applications and adjustment applications, a “black box” server 8 and a plurality of specialized assistance servers 5a, 5b, etc. , 5n.
- a single communication module 1 and a single associated equipment 2 have been shown.
- the system preferably comprises a plurality of communication modules 1 each associated with one or, preferably, with several pieces of equipment 2.
- a first communication network 6 is also shown, here a GSM cellular network , connecting the communication module 1 to the intermediate server 3 and to the “black box” server 8, and a second communication network 7, here a private network, connecting the intermediate server 3 to the specialized assistance servers 5a, 5b, ..., 5n.
- GSM Global System for Mobile communications
- Network 6 could, by way of nonlimiting example, be an ADSL, GPRS or UMTS network.
- the user database 4A contains, for each user, a personal user profile, with which they are associated
- the personal profile contains user identification data (name, or identifier, and confidential code).
- the profile of the communication module 1 contains the characteristics of this communication module 1, classified here in the following fields: "type”, “model”, “parameters” and “identifier”.
- the “type” field indicates the nature of the communication module 1. In this case, the communication module 1 comprising a GSM cellular telephone and a pocket computer, or “Poc etPC”, connected to each other, the “type” field contains the indication "GSM phone and PocketPC”.
- the “model” field indicates the brand and possibly the reference, or model, manufacturer of the communication module.
- the “parameter” field contains other useful information on the communication module, such as the telephone number of the communication module and the additional options of the communication module such as for example the GPS option.
- the “identifier” field contains an identifier assigned to the communication module 1, comprising for example the telephone number or data linked to the SIM card of the communication module 1
- the profile of the equipment 2 contains the characteristics of this equipment 2, classified in fields similar to those of the profile of the communication module 1, namely “type”, “model”, “parameters” and “identifier”.
- the equipment to be checked 2 is a motor vehicle
- the "type” field contains the indication "motor vehicle”
- the "model” field indicates the make and model of the vehicle, for example example "brand X, model Y”
- the "parameters” field contains useful information on the vehicle such as the registration number, the date of first entry into service, etc.
- the equipment profile 2 contains a "level of assistance” field containing a level of assistance for equipment 2, a "billing” field containing the method of invoicing for an assistance intervention on equipment 2 and a "repairer” field containing identification data of a repairer.
- the assistance level defines the conditions under which the user wishes to obtain assistance for his equipment 2.
- two assistance levels A and B are proposed. Assistance level A offers ad hoc assistance, on demand, when needed, and assistance level B offers not only ad hoc assistance, on demand, but also regular assistance, followed, for example once per month.
- the billing method specifies whether the user wishes to be billed here on a flat-rate, fee-for-service basis or for the duration, for assistance interventions on his equipment 2.
- the repairer's identification data contains the name and contact details (telephone number, postal address, etc.) of a user's preferred repairer for the equipment in question 2.
- the 4B server database he specialized assistance contains, for each server, all the information necessary to determine for which equipment this server is competent.
- the 4C database contains diagnostic applications and adjustment applications adapted to different equipment 2.
- the intermediate server 3 comprises a block 30 for connection to the network 6, a block 31 for connection to the network 7, a block 40 for access to the database 4A, a block 41 for access to the database 4B and a block 42 for accessing the database 4C.
- a server / user interface 32 is interposed between, on the one hand, the block 30 for connection to the network 6 and, on the other hand, a block 33 for receiving diagnostic requests and equipment operating data 2, a block 34 for sending information intended for equipment users 2 and a block 44 for sending diagnostic applications and adjustment applications intended for communication modules 1.
- the server / user interface 32 manages the communication between the server 3 and each user.
- the module 32 allows in particular each user to register with the server 3, to declare a communication module 1 and one or more items of equipment to be checked 2 associated with this communication module 1 and to request a diagnostic application and an application adjustment.
- the blocks 40-42 for accessing the various databases 4A, 4B, 4C are intended to extract, save, delete and / or modify information contained in the databases 4A, 4B and 4C.
- the block 42 for access to the database 4C is connected to a block 43 for acquiring diagnostic applications and adjustment applications, itself connected to the block 30 for connection to the network 6, as well as to a block 44 for sending diagnostic applications and adjustment applications to communication modules 1, itself connected to the server / user interface 32.
- the acquisition block 43 is intended to recover applications from diagnostic and equipment adjustment applications 2 from servers of manufacturers not shown in order to record them in the 4C database.
- the send block 44 is intended to send diagnostic applications and adjustment applications to the communication modules 1.
- the block 40 for accessing the database 4A is connected to the server / user interface 32.
- the intermediate server 3 further comprises a diagnostic module 36 arranged to perform diagnostics on the basis of equipment operating data 2 received by the reception block 33.
- a control module 39 is interposed between, on the one hand, the diagnostic module 36 and, on the other hand, a connection module 38, the module 34 for sending information intended for users, an adjustment module 45 and a module 46 for sending take requests of contact to repairers.
- the control module 39 is intended, depending on the result of each diagnosis, to control different actions, which will be explained later in the description of the process.
- the different cases are as follows: i) the diagnosis made it possible to detect a malfunction which could be repaired remotely by the server 3, ii) the diagnosis made it possible to detect a malfunction which could be repaired on site by the user, iii) the diagnosis made it possible to detect a malfunction whose repair requires the intervention of a repairer, iv) the diagnosis made it possible to detect a malfunction for which a remote repair is possible but requires adjustment capacities greater than those of the server 3 and v) the diagnosis did not detect any malfunction.
- the adjustment module 45 connected to the block 30 for connection to the network 6, is intended in case i) to send to equipment to be controlled 2, via the communication module 1, commands for adjusting the equipment. 2.
- the sending module 34 is intended to send various information to each user, depending on the result of the diagnosis, as will be explained in the description of the process.
- This information may in particular include all the information useful for enabling a user to repair his equipment 2 in case ii), the information according to which the repair of equipment 2 requires the intervention of a repairer in case iii) or the information according to which the communication module 1 and a specialized assistance server 5a, 5b, ..., 5n must be linked cases iv) and v).
- the block 39 is intended to trigger the linking of the module 1 and a specialized assistance server.
- the sending module 46 is intended, in case iii), to send a contacting request to a repairer, as will be explained in the description of the process.
- a module 37 for selecting a specialized assistance server 5a, 5b, ..., 5n is interposed between the control module 39 and the connection module 38.
- This selection module 37 connected to the diagnostic module 36 and block 41 for accessing the database 4B, is intended to determine, among the specialized assistance servers 5a, 5b, ..., 5n, which is the assistance server adapted to a given piece of equipment 2 and in selecting this server with a view to bringing the communication module associated with the equipment 2 into contact with the selected specialized server.
- connection module 38 connected to the selection module 37 and to the block 31 for connection to the network 7, is intended to connect a specialized assistance server 5a, 5b, ..., 5n and a communication module 1, with a view to establishing a diagnosis by the specialized server 5a, 5b, ..., 5n or downloading a diagnostic or adjustment application from the specialized server 5a, 5b, ..., 5n to the communication module 1.
- An identification module 35 is connected to the reception block 33, to the diagnostic module 36 and to the block 40 for access to the user database 4A.
- This identification block 35 is intended, upon receipt of a diagnostic request, to identify the communication module 1 having sent this request and the equipment 2 which is the subject of this request.
- the communication module 1 here consisting of a pocket computer associated with a GSM telephone, comprises a block 10 for connection to an equipment 2, a block 14 for connection to the network 6, a block 11 for collecting operating data from equipment 2 and a diagnostic block 12.
- connection block 10 is intended to connect the communication module 1 to the equipment 2, here by a BlueTooth link.
- any other type of link, radio or wired, could be provided between the communication module 1 and the equipment 2.
- the collection block 11, connected to the connection block 10 and to the diagnostic block 12, is intended to collect operating data from the equipment 2.
- the collection and sending of the operating data to the server 3 can be carried out "On demand” or "automatic".
- the “on demand” mode consists in collecting and sending to the server 3 operating data relating to the equipment 2 if necessary, at the request of the user, generally when the equipment 2 has a malfunction which could not be repaired locally by the module 1.
- the “automatic” mode consists in collecting and sending to the server 3 operating data relating to the equipment 2 automatically and regularly for maintenance followed by the equipment 2.
- the communication module 1 can only send operating data from equipment 2 in “on demand” mode, then that, in case the assistance level is level B, it can send data of operation at server 3 not only according to “on demand” mode, but also in “automatic” mode.
- the diagnostic unit 12 includes a diagnostic application intended to carry out diagnostics of the equipment 2 on the basis of the operating data recorded by the collection unit 11.
- a control block 18 is interposed between, on the one hand, the diagnostic block 12 and, on the other hand, an adjustment block 15, a block 16 for notification of information to a user and an access block 17 to the intermediate server 3.
- the control block 18 is intended to control different actions, depending on the result of each diagnosis, as will be explained later in the description of the process.
- the different possible cases are analogous to the cases i) to v) previously mentioned, namely: i ') the diagnosis made it possible to detect a malfunction which can be repaired locally by the module 1, ⁇ ') the diagnosis made it possible to detect a malfunction can be repaired on site by the user, iii ') the diagnosis made it possible to detect a malfunction whose repair requires the intervention of a repairer, iv') the diagnosis made it possible to detect a malfunction for which remote repair is possible but requires adjustment capacities greater than those of module 1 and V) the diagnosis did not detect any malfunction.
- the adjustment block 15 is intended to send adjustment commands to the equipment 2 in case i ').
- the information notification block 16 is intended to control the display of various information, as a function of the result of the diagnosis, as will be explained in the description of the process. This information may in particular include all the information useful for enabling a user to repair his equipment 2 in case ii '), the information according to which the repair of equipment 2 requires the intervention of a repairer in case iii ') or the information according to which the communication module 1 and the intermediate server 3 should be linked in cases iv') and v ').
- the block 18 is intended to trigger the connection of the module 1 to the intermediate server 3.
- the block 17 for access to the intermediate server 3, connected to the block 14 for connection to the network 6, is intended to connect the module 1 to the intermediate server 3 and to send data, in particular operating data of the equipment 2, to the intermediate server 3.
- a block 19 for acquiring applications is also provided, interposed between, on the one hand, the connection block 14 and, on the other hand, the diagnostic block 12 and the adjustment block 15, and intended to recover diagnostic applications and adjustment applications.
- a “black box” block 13 is interposed between the collection block 11 and the network connection block 14
- the block 13 is arranged to control the following actions: the immediate collection of a maximum of data relating to the equipment 2; - the priority connection of the communication module 1 to the “black box” server 8 and
- the data relating to the equipment 2 here includes operating data of the equipment 2.
- this data could also include data relating to the environment of the equipment 2 such as, for example, in the case where the equipment 2 is a motor vehicle, shooting data of '' a camera located in vehicle 2 and monitoring the road ahead of vehicle 2.
- the communication module 1 has a single data transmission channel.
- priority connection it is meant to indicate that, if it is already in communication with a correspondent through this transmission channel, the communication module 1 automatically interrupts this communication and connects to the server 3 by the transmission channel .
- the priority connection would consist in using the maximum of available transmission channels to transmit the data relating to the equipment 2.
- the pocket computer of module 1 integrates blocks 10-13 and 15-19 and the cell phone of module 1 is represented by block 14.
- the communication module 1 also comprises a man-machine interface, not shown, comprising a screen, a keyboard and a trackball.
- the screen can be touch-sensitive and the trackball can be replaced by a touch screen.
- each specialized assistance server 5a, ... , 5n comprises a block 50 for connection to the network 7, an interface 51 specialized server 5a, ..., 5n / intermediate server 3 (or communication module 1) and a diagnostic module 52.
- the interface 51, connected to the block 50 for connection to the network 7, is intended to manage the communication between the specialized server 5a, ..., 5n and the intermediate server 3, or the communication module 1.
- the diagnostic module 52 is intended to receive equipment operating data 2, via the interface 51, and to establish equipment diagnostics 2 on the basis of this operating data.
- a control module 53 is interposed between, on the one hand, the diagnostic module 52 and, on the other hand, an adjustment module 54, a module 55 for sending information intended for users and a module 56 d '' sending contact requests.
- This command module 53 is intended to trigger different actions depending on the result of each diagnosis, as will be explained in the description of the process.
- the different possible cases are analogous to the cases i), ii) iii) and v) previously mentioned, namely: i ") the diagnosis made it possible to detect a malfunction which could be repaired remotely by the specialized server 5a, ..., 5n, ii") the diagnosis made it possible to detect a malfunction which could be repaired on site by the user, iii ") the diagnosis made it possible to detect a malfunction whose repair requires the intervention of a repairer, iv ') the diagnosis made it possible to detect no malfunction.
- the adjustment module 54 is intended to send adjustment commands to the equipment 2 via the communication module 1 in the case i ").
- the sending module 55 is intended to send to each communication module 1 various information intended for a user, depending on the result of the diagnosis, as will be explained in the description of the process.
- This information may in particular include all the information useful for enabling the user to repair his equipment 2 in case ii ") or the information according to which the repair of equipment 2 requires the intervention of a repairer in the cases iii ") and iv").
- the sending module 56 is intended to send a contacting request to a repairer, as will be explained in the description of the process.
- the specialized assistance server 5a, ..., 5n could also include means for sending diagnostic applications and adjustment applications to the communication modules 1.
- the “black box” server 8 comprises a module 80 for connection to the network 6, a module 81 for receiving data relating to equipment 2, a database 82 and a recording module 83.
- the “black box” server 8 transmits to the “black box” server 8 a data stream carrying identification data and data relating to the equipment 2.
- the module 81 receives this data and the module 83 records it in the database 82 by associating it with temporal information, in this case the date and time of reception of this data.
- the equipment 2 is a motor vehicle.
- the user of the communication module 1 registers with the server 3, here from the communication module 1. However, this registration could be carried out from any communication terminal .
- the user declares to the server 3 the equipment to be controlled 2 and the communication module 1 and transmits to it all the useful characteristics of the equipment 2 and of the communication module 1.
- the intermediate server 3 associates a profile personal to the user.
- an equipment profile and a communication module profile are respectively associated with the equipment 2 and with the communication module 1.
- the personal profile of the user contains user identification data, namely here a name and a confidential code.
- the characteristics of the equipment 2 and of the communication module 1 are classified in the various fields described above. In the particular example of the description, the profile of the equipment 2 contains - in the "type" field: the indication that the equipment 2 is a motor vehicle;
- model field the make and model of the vehicle manufacturer
- parameters field the registration number and the date of first entry into service of the vehicle
- the assistance level the assistance level chosen, here level A
- in the “invoicing” field the invoicing mode, here in the deed
- identifier a identifier assigned by the server 3 to the equipment 2.
- the communication module 1 profile contains
- the server 3 records the communication module profile I and the profile of the equipment 2 in the user database 4A by associating them with the personal profile of the user.
- the intermediate server 3 extracts from the database 4C a diagnostic application and an adjustment application adapted to the equipment 2 and transmits them to the communication module 1.
- Three levels I, II and III are provided for of diagnosis and adjustment or, in the absence of adjustment, of notification of information, respectively intended to be implemented, one after the other, by the communication module 1 , by the intermediate server 3 and by a specialized assistance server 5a, ..., 5n.
- a diagnosis is made.
- an assistance intervention is triggered at level N or use is made of level N + I to carry out a more detailed diagnosis.
- the assistance intervention consists, as the case may be, of sending adjustment commands to the equipment 2, of informing the user that the repair requires the intervention of a repairer or of providing the user with all useful information to repair the malfunction itself.
- the communication module 1 collects operating data from the equipment 2 and performs a local diagnosis using this data. If module 1 detects a malfunction that can be repaired locally (case i ')), it sends adjustment commands to equipment 2. These adjustment commands are used to adjust certain vehicle operating parameters or possibly activate a circuit backup to replace a faulty circuit.
- module 1 If module 1 detects a malfunction that can be repaired by the user (case ii ')), it displays all the information necessary to allow the user to repair the vehicle himself.
- module 1 If module 1 detects a malfunction requiring the intervention of a repairer (case iii ')), it displays the information according to which the repair of the malfunction requires the intervention of a repairer.
- module 1 If module 1 does not have sufficient adjustment capacities to repair the malfunction (case iv ')) or if it does not detect any malfunction (case V)), communication module 1 displays the information according to which it is necessary to call on a remote server with diagnostic and adjustment capabilities greater than those of module 1.
- the communication module 1 connects to the intermediate server 3, possibly after acceptance by the user, collects operating data from the equipment 2 and sends them to the server 3 , with a diagnostic request containing:
- the intermediate server 3 checks the validity of the user identification data and extracts the profiles of the equipment 2 and of the communication module 1 from the database 4A, using their respective identifiers. If the user identification data is correct, the server 3 performs a diagnosis of the equipment 2 on the basis of the operating data received. Depending on the results of this diagnosis, the server 3 triggers different interventions.
- the server 3 If the server 3 detects a malfunction that can be repaired remotely (case i)), it sends adjustment commands to the equipment 2, via the communication module 1, through the network 6. These adjustment commands are used to adjust certain operating parameters of the equipment 2 or to activate a backup circuit in place of a faulty circuit. In parallel, the server 3 sends to the communication module 1 information on the nature of the malfunction and the indication that the repair of the malfunction has been carried out remotely and the module 1 displays this information.
- the server 3 If the server 3 detects a malfunction that can be repaired by the user (case ii)), it sends to the communication module 1 all the useful information to allow the user to repair the equipment 2 and the communication 1 displays this information.
- the server 3 If the server 3 detects a malfunction requiring the intervention of a repairer (case iii)), it sends the communication module 1 the information that the repair of the malfunction requires the intervention of a repairer and the communication module 1 displays this information. If the server 3 does not have sufficient adjustment capabilities to repair the detected malfunction (case iv)) or if it does not detect any malfunction (case v)), the server 3 transmits the information according to the communication module 1 which it is necessary to call on a specialized assistance server 5a, ..., 5n having diagnostic and adjustment capacities greater than those of the server 3 and the communication module 1 displays this information. The intermediate server 3 possibly invites the user to confirm that he accepts the connection of the communication module 1 and a specialized assistance server 5a, ..., 5n.
- the server 3 determines, among the plurality of specialized assistance servers 5a, ..., 5n, which server is suitable for the equipment 2, that is to say competent to carry out a diagnosis of the equipment 2.
- the specialized assistance server adapted to the equipment 2 is the server 5a.
- the intermediate server 3 then links the communication module 1 and specialized assistance server 5a.
- the server 3 retransmits to the assistance server 5a the operating data of the equipment 2.
- the operating data of the equipment 2 are transmitted from the communication module 1 to the specialized server 5a by the intermediary of the server 3.
- the communication module 1 directly transmits the operating data of the equipment 2 to the server 5a, after connection.
- the specialized server 5a performs a diagnosis of the equipment 2, on the basis of the operating data received. If the server 5a detects a malfunction which can be repaired remotely (case i ")), it sends adjustment commands to the equipment 2, via the communication module 1, through the networks 6 and 7. These adjustment commands make it possible to adjust certain operating parameters of the equipment 2 or to activate a backup circuit in place of a defective circuit At the same time, the specialized server 5a sends information to the communication module 1 on the detected malfunction and the information that the malfunction has been repaired remotely The communication module 1 displays this information.
- the server 5a If the server 5a detects a malfunction which can be repaired by the user (case ii ”)), it sends to the communication module 1 all the useful information to allow the user to repair the equipment 2 and the module himself. Communication 1 displays this information.
- the server 5a If the server 5a detects a malfunction requiring the intervention of a repairer (case iii ”)), it sends to the communication module 1 the information according to which the repair of the malfunction requires the intervention of a repairer and the module communication 1 displays this information. If the server 5a does not have sufficient adjustment capabilities to repair the detected malfunction (case iv ”)) or if it does not detect any malfunction (case v")), the server 5a transmits to communication module 1 the information that it is necessary to call a repairer and the communication module 1 displays this information.
- the server in question (3 or 5a) sends a repair request to the repairer contact containing identification data of the user of the equipment 2, the address of the communication module 1 on the network 6 (namely the cellular telephone call number of the communication module 1) and relative information to malfunction.
- the repairer is either the one appearing in the profile of the equipment 2, or the closest repairer of the equipment 2, depending on the severity of the malfunction.
- the repairer contacts the user, through network 6, in order to arrange an appointment.
- the server considered (3 or 5a) could send this request to contact the repairer only after acceptance by the user.
- the server considered (3 or 5a) sends to the communication module 1 the telephone number of the selected repairer.
- the communication module 1 displays an alert message intended to warn the user. If this malfunction is detected at level II or III, the alert message is transmitted beforehand by the intermediate server 3 or by the specialized server 5a, ..., 5n to the communication module 1 to be displayed by the latter.
- the various operations performed by the server 3 and by the specialized assistance server 5a are billed centrally by the intermediate server 3, according to the billing method chosen for the equipment 2. If the subscription of a user does not does not allow access to the services provided by specialized assistance servers, it can nevertheless access them from time to time, against payment.
- the communication module 1 continuously monitors the operating data of the equipment 2. On detection of an emergency event concerning the equipment 2, for example in the event of detection of a significant increase in '' a given circuit or sudden braking, the communication module 1 connects as a priority to the "black box" server 8, collects a maximum of operating data from the equipment 2 and transmits to the server 8 a data stream conveying the identifier and the operating data of the equipment 2. The server 8 records the identifier and the operating data of the equipment 2 by associating therewith the time and date of reception of these data. The communication module 1 could authenticate the data transmitted to the "black box" server by encrypting this data using an authentication algorithm. In the case of maintenance followed by the equipment
- the communication module 1 regularly sends, automatically, a diagnostic request to the intermediate server 3.
- the intermediate server 3 could itself perform remote readings of the operating data of the equipment 2 by calling the communication module 1 regularly.
- Equipment 2 could be a rescue vehicle, for example an ambulance incorporating medical monitoring linked to a communication module 1.
- the intermediate server 3 manages, centrally, the referral of a fleet of emergency vehicles to different emergency centers, such as these hospital centers, and the setting in relation to the communication modules 1 of the emergency vehicles and of specialized assistance servers 5a, 5b, ..., 5n respectively associated with the various destination rescue centers.
- the communication module 1 collects operating data supplied by the medical monitoring devices, corresponding to vital patient data and transmits this data to the specialized server 5a, 5b, .. ., 5n. The latter can thus remotely monitor the state of the patient present in the ambulance and carry out diagnostics on the patient and possibly provide the ambulance with medical assistance by sending information to the communication module 1.
- the “black box” server 8 could be integrated into the intermediate server 3.
- Communication between the communication module 1 and the intermediate server 3, or a specialized server 5a, 5b, ..., 5n, can be written and / or voice.
- the communication module 1 directly retrieves the diagnostic application and the adjustment application adapted to the equipment to be checked 2.
- the user could also retrieve these applications on another device, such as a PC computer, and then load them into the communication module 1 from the device.
- the diagnosis made at level N + I could only be a complementary diagnosis.
- the “pocket computer” function and the connection to the communication network 6 function of the communication module 1 could be integrated into the same device, for example a pocket computer integrating the UMTS function.
- the communication module 1 could also be integrated into the equipment 2. To use the example of the motor vehicle 2, the communication module 1 could be integrated into the on-board computer of the vehicle 2. It will be recalled that the communication module 1 can be associated with different equipment 2.
- the communication module 1 collects operating data from the equipment 2 and retransmits them to a remote server 3 or 5a, ..., 5n with a view to establishing a diagnosis.
- the communication module can also identify one or more distinctive characteristic (s) relating to an item of equipment or the equipment itself and retransmit this or these characteristic (s) to the remote server 3 or 5a, ..., 5n.
- distinguishing characteristics there may be mentioned, by way of nonlimiting examples, the name of the manufacturer or the serial number of a piece of equipment 2 (for example the serial number of the gearbox of a motor vehicle ) or equipment 2 itself.
- the intermediate server 3 or the specialized server 5a, ..., 5n determines which equipment in a given fleet of equipment is likely to be affected by this manufacturing defect thanks to the feedback of the distinctive characteristics of elements of the equipment 2 or of the equipment 2 itself of the fleet considered.
- the server 3 or 5a, ..., 5n can then easily alert the users of this equipment, by sending alert messages to the associated communication modules 1, and ask them to bring the equipment to the manufacturers or repairers for repair or exchange.
Landscapes
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Engineering & Computer Science (AREA)
- Automation & Control Theory (AREA)
- Selective Calling Equipment (AREA)
- Telephonic Communication Services (AREA)
- Computer And Data Communications (AREA)
- Test And Diagnosis Of Digital Computers (AREA)
- Management, Administration, Business Operations System, And Electronic Commerce (AREA)
- Air Bags (AREA)
Abstract
Description
Claims
Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
AU2003246776A AU2003246776A1 (en) | 2002-04-08 | 2003-04-04 | Method for diagnosing an equipment to be controlled, diagnostic system, related intermediate server and communication module |
US10/510,429 US20050177761A1 (en) | 2002-04-08 | 2003-04-04 | Method for diagnosing an equipment to be controlled, diagnostic system, related intermediate server and communication module |
DE60312667T DE60312667T2 (de) | 2002-04-08 | 2003-04-04 | Diagnostisches verfahren für ein gesteuertes gerät und entsprechendes diagnostiksystem |
EP03745820A EP1493069B1 (fr) | 2002-04-08 | 2003-04-04 | Procede de diagnostic d'un equipement a controler et systeme de diagnostic associe |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
FR02/04371 | 2002-04-08 | ||
FR0204371A FR2838204A1 (fr) | 2002-04-08 | 2002-04-08 | Procede de diagnostic d'un equipement a controler, et systeme diagnostic, serveurs et module de communication associes |
Publications (2)
Publication Number | Publication Date |
---|---|
WO2003085469A2 true WO2003085469A2 (fr) | 2003-10-16 |
WO2003085469A3 WO2003085469A3 (fr) | 2004-04-01 |
Family
ID=28052212
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/FR2003/001065 WO2003085469A2 (fr) | 2002-04-08 | 2003-04-04 | Procede de diagnostic d'un equipement a controler, systeme de diagnostic, serveur intermediaire et module de communication associes |
Country Status (8)
Country | Link |
---|---|
US (1) | US20050177761A1 (fr) |
EP (1) | EP1493069B1 (fr) |
AT (1) | ATE357686T1 (fr) |
AU (1) | AU2003246776A1 (fr) |
DE (1) | DE60312667T2 (fr) |
ES (1) | ES2285159T3 (fr) |
FR (1) | FR2838204A1 (fr) |
WO (1) | WO2003085469A2 (fr) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2006065824A1 (fr) * | 2004-12-17 | 2006-06-22 | General Electric Company | Procede et systeme de suivi et de diagnostic a distance automatises de services |
US8422377B2 (en) | 2004-12-17 | 2013-04-16 | General Electric Company | Remote monitoring and diagnostics system with automated problem notification |
Families Citing this family (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CA2644885C (fr) | 2008-11-25 | 2017-01-03 | Electrolux Home Products, Inc. | Systeme et methodes etendus d'entreprise permettant de configurer, de diagnostiquer et d'actualiser des appareils |
US20100262403A1 (en) * | 2009-04-10 | 2010-10-14 | Bradford White Corporation | Systems and methods for monitoring water heaters or boilers |
JP5807990B2 (ja) * | 2011-09-22 | 2015-11-10 | アイトーン、インコーポレイテッド | 自律移動ロボット用の監視、診断及び追跡ツール |
WO2015022539A2 (fr) * | 2013-08-14 | 2015-02-19 | Bae Systems Plc | Évaluation de santé structurelle |
EP2837983A1 (fr) * | 2013-08-14 | 2015-02-18 | BAE Systems PLC | Évaluation de la santé structurale |
DE102017205276A1 (de) * | 2017-03-29 | 2018-10-04 | Bayerische Motoren Werke Aktiengesellschaft | System und Verfahren zur automatischen Erkennung einer technischen Aktion eines Fahrzeugs |
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EP0895399A1 (fr) * | 1997-07-30 | 1999-02-03 | Xerox Corporation | Améliorations de serveurs ou en relation avec des serveurs |
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US6424860B1 (en) * | 1994-10-07 | 2002-07-23 | Ortivus Ab | Myocardial ischemia and infarction analysis and monitoring method and apparatus |
US5812656A (en) * | 1995-11-15 | 1998-09-22 | Lucent Technologies, Inc. | System for providing prioritized connections in a public switched network |
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US6618692B2 (en) * | 2000-09-20 | 2003-09-09 | Hitachi, Ltd. | Remote diagnostic system and method for semiconductor manufacturing equipment |
-
2002
- 2002-04-08 FR FR0204371A patent/FR2838204A1/fr active Pending
-
2003
- 2003-04-04 US US10/510,429 patent/US20050177761A1/en not_active Abandoned
- 2003-04-04 ES ES03745820T patent/ES2285159T3/es not_active Expired - Lifetime
- 2003-04-04 EP EP03745820A patent/EP1493069B1/fr not_active Expired - Lifetime
- 2003-04-04 AT AT03745820T patent/ATE357686T1/de not_active IP Right Cessation
- 2003-04-04 DE DE60312667T patent/DE60312667T2/de not_active Expired - Lifetime
- 2003-04-04 AU AU2003246776A patent/AU2003246776A1/en not_active Abandoned
- 2003-04-04 WO PCT/FR2003/001065 patent/WO2003085469A2/fr active IP Right Grant
Patent Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
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EP0599606A2 (fr) * | 1992-11-24 | 1994-06-01 | Xerox Corporation | Système de transfert de données de diagnostic interactif pour diagnostics à distance |
WO1997015009A1 (fr) * | 1995-10-18 | 1997-04-24 | Systemsoft Corporation | Systeme et procede de diagnostic pour processeurs de donnees numeriques |
EP0895399A1 (fr) * | 1997-07-30 | 1999-02-03 | Xerox Corporation | Améliorations de serveurs ou en relation avec des serveurs |
US6311101B1 (en) * | 1997-11-14 | 2001-10-30 | Engel Maschinenbau Gesellschaft M.B.H. | Method of operating an injection molding machine |
EP0965897A1 (fr) * | 1998-06-17 | 1999-12-22 | Neles Controls Oy | Systéme de gestion de dispositifs de terrain |
EP1045302A1 (fr) * | 1999-04-16 | 2000-10-18 | Neles Field Controls Oy | Commande sans fil d'un appareil sur site dans processus industriel |
US20020032544A1 (en) * | 1999-05-20 | 2002-03-14 | Reid Alan J. | Diagnostic network with automated proactive local experts |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
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WO2006065824A1 (fr) * | 2004-12-17 | 2006-06-22 | General Electric Company | Procede et systeme de suivi et de diagnostic a distance automatises de services |
US7734764B2 (en) | 2004-12-17 | 2010-06-08 | General Electric Company | Automated remote monitoring and diagnostics service method and system |
US8422377B2 (en) | 2004-12-17 | 2013-04-16 | General Electric Company | Remote monitoring and diagnostics system with automated problem notification |
Also Published As
Publication number | Publication date |
---|---|
EP1493069B1 (fr) | 2007-03-21 |
EP1493069A2 (fr) | 2005-01-05 |
ATE357686T1 (de) | 2007-04-15 |
ES2285159T3 (es) | 2007-11-16 |
US20050177761A1 (en) | 2005-08-11 |
DE60312667D1 (de) | 2007-05-03 |
WO2003085469A3 (fr) | 2004-04-01 |
AU2003246776A1 (en) | 2003-10-20 |
DE60312667T2 (de) | 2007-11-29 |
FR2838204A1 (fr) | 2003-10-10 |
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