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WO2024068741A1 - Procédé de test et de documentation assistés par ordinateur d'une opération d'installation d'un utilisateur pour l'installation de composants spatialement décentralisés d'une machine - Google Patents

Procédé de test et de documentation assistés par ordinateur d'une opération d'installation d'un utilisateur pour l'installation de composants spatialement décentralisés d'une machine Download PDF

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Publication number
WO2024068741A1
WO2024068741A1 PCT/EP2023/076720 EP2023076720W WO2024068741A1 WO 2024068741 A1 WO2024068741 A1 WO 2024068741A1 EP 2023076720 W EP2023076720 W EP 2023076720W WO 2024068741 A1 WO2024068741 A1 WO 2024068741A1
Authority
WO
WIPO (PCT)
Prior art keywords
installation
connection
measured value
electrical
user
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
PCT/EP2023/076720
Other languages
German (de)
English (en)
Inventor
Sebastian Pfestorf
Paul Zeller
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.)
Murrelektronik GmbH
Original Assignee
Murrelektronik GmbH
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
Priority claimed from EP22199162.3A external-priority patent/EP4345554B1/fr
Application filed by Murrelektronik GmbH filed Critical Murrelektronik GmbH
Priority to DE112023003184.3T priority Critical patent/DE112023003184A5/de
Publication of WO2024068741A1 publication Critical patent/WO2024068741A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM]
    • G05B19/41805Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM] characterised by assembly
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B23/00Details of, or accessories for, spanners, wrenches, screwdrivers
    • B25B23/14Arrangement of torque limiters or torque indicators in wrenches or screwdrivers
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/30Nc systems
    • G05B2219/31From computer integrated manufacturing till monitoring
    • G05B2219/31027Computer assisted manual assembly CAA, display operation, tool, result

Definitions

  • the present invention relates generally to the field of planning and assembly of machines such as automation systems, and in particular to a computer-aided installation of spatially decentralized electrical components of a machine.
  • test equipment to record measured values is known in the prior art.
  • DE 19849293 A1 discloses a system for recording measured values at a large number of measuring points of a measurement object in a test device.
  • a torque wrench is provided as a measuring device for measuring a measured variable, which has a transmitting device for sending the measurement result and an identifier assigned to the measuring point to an evaluation device.
  • the evaluation device evaluates the received measurement results with regard to the presence of a predetermined state of the measurement object.
  • the disadvantage of the known solutions is that such tests are time-consuming and the verification of certain technical requirements during installation can often be incorrect.
  • the subject matter of the invention is in particular a method for computer-aided testing and documentation of an installation action by a user for installing, preferably spatially decentrally arranged, preferably electrical, components of a machine, in particular a system, wherein a complete establishment of an electrical and/or mechanical connection of an installation element, in particular a cable and/or a connector, with one of the components, in particular a module and/or device and/or further installation element, is tested and documented.
  • the machine can be designed as at least one of the following machines:
  • the machine can be designed as a machine with a modular character or as a mobile or movable machine in which individual parts of the machine are installed modularly according to an installation specification. This installation is carried out at least partially manually by a user such as a worker.
  • the components can be modules and in particular connection modules, which enable a decentralized and modular connection of installation elements.
  • Decentralized can refer to the fact that the modules or connection modules at least partially replace a central control cabinet in that the modules or connection modules only provide a part of the connections for the machine, but enable these connections in a decentralized manner in the field.
  • a central topology for example a centralized control cabinet concept
  • we speak in particular of a point-to-point connection i.e. the starting point, the connection and the end point are clearly defined.
  • the following components can also be provided for a machine, for example: devices such as actuators and/or sensors, connection modules and installation elements, e.g. for cabling.
  • devices such as actuators and/or sensors, connection modules and installation elements, e.g. for cabling.
  • connection modules e.g. for cabling.
  • the connection can, for example, be a connection of the installation element in the form of a connector with the other installation element in the form of a connector or T-piece or the like.
  • the components and/or the installation elements can be designed as electrical, decentralized components, since decentralized interconnection is provided by means of the connection modules.
  • the method according to the invention can comprise the following steps, which are preferably carried out one after the other or in any order, whereby the steps can also be carried out automatically and/or repeatedly:
  • a testing device in particular a torque wrench and/or a piezoelectric sensor, wherein the at least one measured value results from a detection of a measured variable which is specific to the installation action, in particular for a proper one Screw connection and/or power connection and/or data connection and/or signal connection and/or hybrid connection and/or contacting between the installation element and the component,
  • the method therefore enables faster and error-free installation and can provide significant support to a user when installing a machine and improve the quality of the process. It also enables easier and more efficient testing of the installation process with regard to the applicable or necessary requirements for the materials used or the connection, for example with regard to specifications from standards or norms. This also has the advantage that possible safety risks during the installation process carried out when installing machines are significantly reduced. Furthermore, the requirements for the specialist expertise previously required for the inspection are significantly reduced.
  • the specified measurement variable can be a reference value or limit value, which is compared with the transmitted measurement variable as the current measurement value.
  • the establishment of the connection can, for example, be considered correct and/or complete if the transmitted measurement variable meets a predefined condition such as exceeding the reference value or limit value.
  • this enables the user to be directly informed about the installation process through the stored information of the installation specification, for example an electrical connection plan as installation documentation, that the electrical and/or mechanical connection of the installation element is completely established.
  • documenting the installation action and/or the information of the installation element and/or the component advantageously enables the documented and/or stored information to be constantly and permanently available to the user even after the installation action has been carried out. This also has the further advantage that an installation element can be automatically recognized and documented after a successful installation.
  • a system for the installation in particular for cabling the installation element with the component, can be provided for guided qualitative support of the user, in which a data processing device can carry out the method steps automatically.
  • the data processing device in particular a data processing device according to the invention, can advantageously communicate with individual components and thus enable the installation information to be output.
  • the data processing device can have at least one interface for communication.
  • a user can, for example, be an installer and/or system mechanic and/or electrician and/or worker and/or planner and/or mechanical designer or developer and/or electrical designer or developer and/or PLC programmer and/or commissioning engineer and/or Be a maintenance worker and/or machine operator. It is possible for the user to use the method according to the invention by making the method available to the user via a computer. For this purpose, a computer program can be at least partially executed by the computer and/or another computer in order to carry out the method steps according to the invention.
  • a hybrid connection is understood to be a connection that is established using a hybrid cable.
  • the hybrid connection enables electrical current such as a supply voltage to be transmitted together with other signals.
  • These cables can be shielded or unshielded.
  • the validating step may include the following steps:
  • Defining a result of validation based on the evaluation of the comparison the result being the complete establishment or an incomplete establishment of the electrical and/or mechanical connection of the Installation element and/or incorrect and/or non-specific execution of the installation action is indicated and/or quantified, whereby when documenting the validated installation action, the marking for the connection in the installation specification is made based on the result of the validation.
  • the identification is defined depending on a result of the validation, and preferably the presence and/or extent of the establishment of the electrical and/or mechanical connection and/or a faulty one and/or the implementation of the installation procedure deviates from a specification.
  • documenting the validated installation action includes the following steps, which are preferably only carried out if the result of the validation is the complete establishment of the electrical and/or mechanical connection of the installation element and/or proper implementation of the Installation action indexed:
  • validation can be carried out on the basis of the installation action.
  • the validation thus enables the assessment of whether the user Installation action has been carried out correctly.
  • the result of the validation can be used to store the marking in the installation specification.
  • the installation specification can thus be used at a later point in time to check whether specified reference or limit values in the installation specification have been followed.
  • the user can be given the option of entering a corresponding installation parameter, in particular a reason for the marking, for example via the user interface and/or an input device such as voice input and/or a keyboard and/or a mouse and/or a touchscreen.
  • the documentation of the validated installation act includes the following steps, which are carried out if a result of the validation indicates incomplete production and/or incorrect and/or implementation of the installation act that deviates from a specification:
  • the installation specification can therefore be used at a later point in time for a check to check whether and/or why the installation action deviated from the specification. If a user deviates from specified reference or limit values during the installation action, this often happens for a relevant reason or occasion.
  • the user can therefore be provided with the option of entering a corresponding installation parameter, for example via the user interface and/or an input device such as voice input and/or a keyboard and/or a mouse and/or a touchscreen.
  • a further comparison takes place between the at least one received measured value and at least two further measured value specifications, preferably a tightening torque and/or pressure, as an additional test condition determine whether conformity of the at least one received measured value with a specification is guaranteed taking into account the additional test condition, wherein the identification for the connection in the installation specification is preferably carried out based on the further comparison.
  • the documentation of the validated installation act includes at least a deposit of information at the time of the proper installation act with regard to the establishment of the connection, in particular a plug-in connection, with a connection point, to an identifier of the installation element, in particular an equipment identification, and / or to an identifier of the user.
  • the testing means is a torque wrench, preferably an electronic torque wrench, in order to provide the measurement value, preferably a tightening torque, by the installation act, in particular screwing.
  • the test device is a piezoelectric sensor, wherein the piezoelectric sensor is arranged integrated as part of a plug connection in order to provide the detection of the measured value, preferably a pressure, by the installation action, in particular screwing.
  • a further advantage within the scope of the invention can be achieved if the validation and/or documentation of the validated installation action is initiated by receiving the at least one measured value and/or by the test device. This enables a secure and automatic initialization of the validation of the installation action.
  • the validation and/or documentation of the validated installation action is initiated by a user action, preferably by an input in a mobile data processing device such as a mobile computer.
  • a mobile data processing device such as a mobile computer.
  • the test device is a tool with which the installation action is carried out by the user in order to establish the mechanical and/or electrical connection or wherein the test device is an additional tool which is used in addition to the installation action to test the installation action.
  • a tool is used for the installation action, e.g. for assembly, and the additional tool is not used for the installation action but for testing as a test device.
  • the same tool is used for the installation action but also as a test device. This enables the test device to ensure simple and quick recording of the measured value.
  • the machine can be designed as an electrical engineering machine, preferably a system, preferably an automation system, particularly preferably an industrial automation system.
  • the computer-aided implementation of the testing and documentation can in particular refer to the fact that during the installation of the (real) machine, a computer program, in particular according to the invention, and/or a device, in particular according to the invention, automatically support the testing and documentation of this installation.
  • Documenting can e.g. B. can be done by storing documentation in a non-volatile manner or even at least partially physically outputting it, e.g. B. in paper form.
  • the machine in particular in the form of an automation system, can be intended and/or operated to automatically control and/or monitor processes, preferably in industrial applications and/or in a production or manufacturing line, and/or
  • the invention also relates to a device for data processing, comprising means for carrying out the steps of the method according to the invention.
  • the device according to the invention therefore brings with it the same advantages as have been described in detail with reference to a method according to the invention.
  • the device can be part of at least or exactly one of the at least one machine.
  • the invention also relates to a computer program, in particular a computer program product, comprising commands which, when the computer program is executed by a computer, cause it to carry out the method according to the invention.
  • a computer program in particular a computer program product, comprising commands which, when the computer program is executed by a computer, cause it to carry out the method according to the invention.
  • the computer program according to the invention thus brings with it the same advantages as have been described in detail with reference to a method according to the invention.
  • a data processing device for example the device according to the invention, which executes the computer program can be provided as the computer.
  • the computer can have at least one processor for executing the computer program.
  • a non-volatile data memory can also be provided in which the computer program is stored and from which the computer program can be read out by the processor for execution.
  • the computer comprises at least one integrated circuit such as a microprocessor or an application-specific integrated circuit (ASIC) or an application-specific standard product (ASSP) or a digital signal processor (DSP) or a field programmable gate array (FPGA) or the like.
  • the computer can also have at least one interface for data exchange, e.g. B. have an Ethernet interface or an interface for LAN (Local Area Network) or WLAN (Wireless Local Area Network) or System-on-a-Chip (SoC) or another radio interface such as Bluetooth or near field communication (NFC).
  • the computer can be used as one or more control devices, i.e. H. also be designed as a system of control devices.
  • the computer can, for example, also be provided in a cloud and/or as a server in order to provide data processing for a local application via the interface. It is also possible for the computer to be designed as a mobile device, such as a smartphone.
  • the invention may also include a computer-readable storage medium which includes the computer program according to the invention.
  • the storage medium is designed, for example, as a data storage such as a hard drive and/or a non-volatile memory and/or a memory card.
  • the storage medium can e.g. B. be integrated into the computer.
  • the method according to the invention can also be implemented as a computer-implemented method.
  • Fig. 1 A central connection in a machine using a control cabinet.
  • Fig. 2 A decentralized interconnection according to embodiments of the invention.
  • FIG. 3 A schematic representation of parts of a system according to exemplary embodiments of the invention.
  • FIG. 4 A schematic representation of details of a method according to embodiments of the invention.
  • FIG. 5 A schematic representation of steps of a method according to exemplary embodiments of the invention.
  • Fig. 1 schematically shows a central interconnection using a control cabinet 9 in order to compare this with a decentralized interconnection using spatially decentralized electrical components 4 of a machine 1 in Fig. 2.
  • a control cabinet 9 instead of connecting all devices 5 such as sensors and actuators directly to the control cabinet 9 as shown in Fig. 1, several components 4, in particular connection modules, can be used in the decentralized interconnection in Fig. 2.
  • the connection modules 4 can be provided in a decentralized manner and distributed close to the devices 5.
  • the connection modules 4 thus only partially interconnect the devices 5, with the connection modules 4 together or, for example, one and/or several connection modules 4 via one and/or several hubs 6 each carrying out the entire interconnection.
  • a master module 3 can be connected upstream of several of the individual connection modules 4. It is also possible for the interconnection to be further subdivided by means of at least one hub 6.
  • a system 2 which can be provided for a computer-aided installation of spatially decentrally arranged electrical components 4 of a machine 1.
  • the system 2 can comprise a detection device 22, in particular a scanner 22 or a camera 22, for providing an identifier 11 of an installation element 10, preferably a cable 11 or a component 11.
  • the system 2 can have at least one electrical component 4, preferably in the form of a connection module 4 for connection to the installation element 10 and other installation elements 10.
  • a device 30 for data processing can also be part of the system 2, wherein this data processing device 30 can comprise means for carrying out the steps of a method 100 according to embodiments of the invention.
  • the identifier can also be part of the system 2, wherein this data processing device 30 can comprise means for carrying out the steps of a method 100 according to embodiments of the invention.
  • machine-readable code 12 associated with the installation element 10, in particular arranged on it, wherein the machine-readable code
  • the components 4 and at least one computer 30, 31 and/or a control device 8 can each be connected to one another via a bus system 21 for bidirectional communication, wherein the bidirectional communication can be provided on the basis of a communication protocol for a field bus system, in particular on the basis of a ProfiNet, Ethernet/IP or 802.3 standard, and/or the bidirectional communication can be provided wired via a bus system 21 or wirelessly using Bluetooth or WLAN, on the basis of a standard according to IEEE 802.11 or on the basis of a mobile radio telecommunications standard.
  • the component 4 can also be connected to a power supply 13.
  • a computer program 20 which comprises instructions which, when the program is executed by a computer 30, cause the computer 30 to carry out the steps of the method 100 according to embodiments of the invention.
  • FIG. 4 and 5 visualize method steps of the method 100, in which a complete establishment of an electrical and/or mechanical connection of an installation element, in particular a cable and/or a connector, with one of the electrical components, in particular a module and/or device, is checked and documented.
  • a first method step 101 shown in Fig. 5 receiving at least one measured value from a test device, in particular a torque wrench and/or a piezoelectric sensor, can be provided.
  • the at least one measured value results from a detection of a measured variable which is specific to the installation action, in particular for a proper screw connection and/or power connection and/or data connection and/or signal connection and/or hybrid connection and/or contact between the installation element and the electrical component.
  • the user's installation action can be validated with regard to the complete establishment of the electrical and/or mechanical connection of the installation element, in particular a proper screw connection and/or power connection and/or data connection and/or signal connection and/or hybrid connection and/or contacting, based on a comparison of the at least one received measured value with at least one measured value specification.
  • this can be used to determine whether conformity of the at least one received measured value with the at least one measured value specification is ensured.
  • the validated installation action can be documented based on the validation This can be done by identifying the connection in an installation specification, in particular in a circuit diagram and/or electrical connection plan.
  • the installation documentation can, for example, B. at least one of the following information can be documented: work steps of the user with additional information about the work steps such as a processing time, which machine is being worked on, which user, for example which installer or mechanic, carried out the work and when, which component is wired and/or has been wired, the assembly step has been completed, which port/connection point was used, are there open cables and what are the properties of the open cable, e.g. length, environmental parameters, e.g. temperature, humidity, current project status, protection class, e.g. IP67.
  • the user in particular the worker, can also enter the occasion, reason or complaint in the event of deviations from the validated installation actions.
  • the installation documentation can, for example, be stored in a database.
  • a user can trigger the documentation with physical actions (keystroke, screen, double click).
  • Storing the installation documentation allows the user to optionally check already installed installation elements 10 or components 4 using the method 100 according to the invention. It is possible for the installation elements 10 or components 4 to also be tested with regard to suitability and/or changed environmental conditions and/or environmental influences and/or technical requirements and/or the like.
  • a method 100 according to exemplary embodiments of the invention is visualized with further details.
  • a computer 31 shown in FIG. 3, such as a tablet or laptop a user can first carry out a user registration 301.
  • the user can use a graphical user interface 32, which is provided by the computer 31.
  • a project selection 302 can also be made via the user interface 32, through which, for example, an installation specification 200 is loaded for a desired project. This makes it possible to initiate a start 303 for checking whether an electrical and/or mechanical connection of the installation element 10 has been completely established.
  • an electronic torque wrench can optionally be used as an external test device.
  • a required tightening torque can be set as a reference value or limit value on the torque wrench according to method step 304. This means that what is necessary to achieve standard conformity Tightening torque can be adjusted.
  • a standard can, for example, include requirements regarding compliance with certain protection classes in electrical installations.
  • conformity with or compliance with protection class IP 67 can be specified, which includes, among other things, that a determination of a power and/or data transmission and documentation of compliance with or conformity to a previously specified tightening torque is required .
  • a piezoelectric sensor can be integrated and used in a plug connection between the installation element 10 and a device 5 or a module 4, which enables the detection 305 of a pressure that can be generated by a screw connection.
  • the installation element 10, e.g. the cable 10 is connected to a module 4 or device 5 by the user during the installation process.
  • a measured value for a tightening torque or a pressure is recorded by the test equipment used in each case.
  • the test device can optionally generate a signal in method step 306 that informs the user that the reference value previously set in method step 304 has been reached.
  • a signal can optionally be generated as an acoustic signal and/or an electronic signal and/or as a mechanical signal such as a vibration when the previously defined tightening torque is reached.
  • a specific electrical charge can optionally be generated for signaling when the specified pressure is reached.
  • system 2 receives the measured value sent by the test equipment via an information interface.
  • system 2 compares the received measured value with the measured value specification of the relevant measured variable, which is optionally stored in a data memory 33, in order to determine whether the received measured value conforms to the measured value specification.
  • system 2 analyzes the comparison data for decision-making with regard to a match between the received measured value for the established connection and the specified measured value specification.
  • system 2 documents the installation action as a complete connection by means of a marking in the Circuit diagram, e.g. the circuit diagram and/or electrical connection plan.
  • system 2 In the event of a deviation or discrepancy between the received measured value and the measured value specification, which can be determined by system 2 to be different from the signaled result of the test equipment, system 2 also documents a marking for the corresponding connection in method step 308 that the connection requires inspection.
  • the documentation can also include a notification to the user, e.g. as an acoustic signal and/or an electronic signal and/or as a mechanical signal, which indicates whether the received measured value and the specified measured value match and/or whether the connection requires inspection.
  • the user has the option of leaving a comment or complaint.
  • a connection is manually marked on the user interface by the user, a check by another user, for example the supervisor or plant manager, can preferably be entered and/or requested. A corresponding connection is thus marked as requiring inspection.
  • aspects have been described in connection with a device, it is clear that these aspects also represent a description of the corresponding method, where an element or device corresponds to a method step or a feature of a method step. Analogously, aspects that are described in connection with a method step also represent a description of a corresponding block or element or feature of a corresponding device.
  • Embodiments of the invention may be implemented on a computer system.
  • the computer system may be a local computing device (e.g., personal computer, laptop, tablet computer, or mobile phone) having one or more processors and one or more storage devices, or a distributed computing system (e.g., a cloud computing system having one or more processors and one or more storage devices distributed at different locations, e.g., at a local client and/or one or more remote server farms and/or data centers).
  • the computer system may include any circuit or combination of circuits.
  • the computer system may include one or more processors of any type.
  • processor may refer to any type of computing circuit, e.g., a microprocessor, a microcontroller, a complex instruction set computing (CISC) microprocessor, a reduced instruction set computing (RISC) microprocessor, a very long instruction word (VLIW) microprocessor, a graphics processor, a digital signal processor (DSP), a multi-core processor, a field programmable gate array (FPGA), or any other type of processor or processing circuit.
  • CISC complex instruction set computing
  • RISC reduced instruction set computing
  • VLIW very long instruction word
  • DSP digital signal processor
  • FPGA field programmable gate array
  • circuitry may be a custom circuit, an application specific integrated circuit (ASIC), or the like, such as one or more circuits (e.g., a communications circuit) for use in wireless devices such as mobile phones, tablet computers, laptop computers, two-way radios, and similar electronic systems.
  • the computer system may include one or more storage devices, which may include one or more storage elements suitable for the particular application, such as main memory in the form of random access memory (RAM), one or more hard disks, and/or one or more drives that handle removable storage media such as compact disks (CDs), flash memory cards, digital video disks (DVDs), and the like.
  • RAM random access memory
  • CDs compact disks
  • DVDs digital video disks
  • the computer system may also include a display device, one or more speakers, and a keyboard and/or a controller, which may include a mouse, a trackball, a touch screen, a voice recognition device, or other device that enables a system user to input information into and receive information from the computer system.
  • a display device one or more speakers
  • a keyboard and/or a controller which may include a mouse, a trackball, a touch screen, a voice recognition device, or other device that enables a system user to input information into and receive information from the computer system.
  • Some or all of the method steps may be performed by (or using) a hardware device, such as: B. a processor, a microprocessor, a programmable computer or an electronic circuit. In some embodiments, some or more of the key process steps may be performed by such a device.
  • embodiments of the invention may be implemented in hardware or in software.
  • the implementation may be made using a non-transferable storage medium such as a digital storage medium, for example a floppy disk, a DVD, a Blu-Ray, a CD, a ROM, a PROM, an EPROM, an EEPROM or a FLASH memory, on which electronically readable control signals are stored that interact (or can interact) with a programmable computer system so that the respective method is carried out. Therefore, the digital storage medium may be computer readable.
  • Some embodiments of the invention include a data carrier having electronically readable control signals capable of interoperating with a programmable computer system to perform one of the methods described herein.
  • embodiments of the present invention may be implemented as a computer program product with program code, the program code being used to perform one of the methods when the computer program product is running on a computer.
  • the program code can, for example, be stored on a machine-readable medium.
  • inventions include the computer program for performing one of the methods described herein stored on a machine-readable medium.
  • one embodiment of the present invention is therefore a computer program having program code for performing one of the methods described herein when the computer program runs on a computer.
  • a further embodiment of the present invention is therefore a storage medium (or a data carrier or a computer-readable medium) on which the computer program for carrying out one of the methods described herein is stored when executed by a processor.
  • the data carrier, digital storage medium or recorded medium is typically tangible and/or non-transferable.
  • Another embodiment of the present invention is a device as described herein, including a processor and the storage medium.
  • a further embodiment of the invention is therefore a data stream or a sequence of signals that represent the computer program for carrying out one of the methods described herein.
  • the data stream or the signal sequence can, for example, be designed so that it can be transmitted via a data communication connection, for example via the Internet.
  • Another embodiment includes a processing agent, e.g. B. a computer or programmable logic device configured or adapted to perform any of the methods described herein.
  • a processing agent e.g. B. a computer or programmable logic device configured or adapted to perform any of the methods described herein.
  • Another embodiment includes a computer on which the computer program for carrying out one of the methods described herein is installed.
  • a further embodiment of the invention comprises a device or a system configured to transmit a computer program for carrying out one of the methods described herein to a recipient (e.g., electronically or optically).
  • the recipient may, for example, be a computer, a mobile device, a storage device or the like.
  • the device or system may, for example, comprise a file server for transmitting the computer program to the recipient.
  • a programmable logic device e.g., a field programmable gate array
  • a field programmable gate array may cooperate with a microprocessor to perform any of the methods described herein. In general, the methods are preferably performed by any hardware device.

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  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

L'invention concerne un procédé (100) de test et de documentation assistés par ordinateur d'une opération d'installation d'un utilisateur pour l'installation de composants électriques (4) spatialement décentralisés d'une machine (1), en particulier d'un système (1), une formation complète d'une connexion électrique et/ou mécanique d'un élément d'installation (10), en particulier d'un câble et/ou d'un connecteur enfichable, à l'un des composants électriques (4), en particulier un module et/ou un dispositif, étant testée et documentée, le procédé comprenant les étapes suivantes consistant à : recevoir (101) d'au moins une valeur de mesure à partir d'un dispositif sous test, en particulier d'une clé dynamométrique et/ou d'un capteur piézoélectrique, l'au moins une valeur de mesure étant le résultat de l'obtention d'une variable de mesure, qui est spécifique à l'opération d'installation, en particulier pour une fixation par vis et/ou une connexion de puissance et/ou une connexion de données et/ou la mise en contact appropriées entre l'élément d'installation (10) et le composant électrique (4) ; valider (102) l'opération d'installation de l'utilisateur en termes de la formation complète de la connexion électrique et/ou mécanique de l'élément d'installation (10), en particulier d'une connexion par vis et/ou d'une connexion de puissance et/ou d'une connexion de données et/ou de la mise en contact appropriées, sur la base d'une comparaison entre l'au moins une valeur de mesure reçue et au moins une spécification de valeur de mesure, de préférence afin de déterminer si une conformité de l'au moins une valeur de mesure reçue avec l'au moins une spécification de valeur de mesure est assurée ; et documenter (103) l'opération d'installation validée sur la base du processus de validation (102) de telle sorte qu'une identification est effectuée pour la connexion dans une spécification d'installation, en particulier dans un plan de circuit.
PCT/EP2023/076720 2022-09-30 2023-09-27 Procédé de test et de documentation assistés par ordinateur d'une opération d'installation d'un utilisateur pour l'installation de composants spatialement décentralisés d'une machine Ceased WO2024068741A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
DE112023003184.3T DE112023003184A5 (de) 2022-09-30 2023-09-27 Ein Verfahren zur computer-gestützten Prüfung und Dokumentation einer Installationshandlung eines Benutzers zur Installation von räumlich dezentral angeordneten Komponenten einer Maschine

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
EP22199162.3 2022-09-30
EP22199162.3A EP4345554B1 (fr) 2022-09-30 2022-09-30 Procédé d'installation assistée par ordinateur de composants électriques d'une machine agencés de manière décentralisée dans l'espace
EP22205851.3 2022-11-07
EP22205851.3A EP4345555B1 (fr) 2022-09-30 2022-11-07 Procédé de contrôle assisté par ordinateur et documentation d'une action d'installation d'un utilisateur pour installer des composants d'une machine agencés de manière spatiale

Publications (1)

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WO2024068741A1 true WO2024068741A1 (fr) 2024-04-04

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DE (1) DE112023003184A5 (fr)
RS (1) RS66384B1 (fr)
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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19849293A1 (de) 1998-10-26 2000-04-27 Ibtl Ing Buero Lang & Partner Vorrichtung und Verfahren zum Erfassen von Meßwerten an einer Viehlzahl von Meßstellen eines Meßobjekts
EP1764596A2 (fr) * 2005-09-20 2007-03-21 AS Tech Industrie- und Spannhydraulik GmbH Arrangement de collection de grandeurs de mesure dans des raccords filetés
EP2085849A2 (fr) * 2008-01-30 2009-08-05 Deere & Company Procédé et système de fabrication d'un article utilisant des outils portables
US20150227943A1 (en) * 2014-02-07 2015-08-13 Qvolve, LLC System and Method for Documenting Regulatory Compliance
WO2022020787A1 (fr) * 2020-07-24 2022-01-27 Schneider Electric USA, Inc. Gestion d'équipement électrique

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19849293A1 (de) 1998-10-26 2000-04-27 Ibtl Ing Buero Lang & Partner Vorrichtung und Verfahren zum Erfassen von Meßwerten an einer Viehlzahl von Meßstellen eines Meßobjekts
EP1764596A2 (fr) * 2005-09-20 2007-03-21 AS Tech Industrie- und Spannhydraulik GmbH Arrangement de collection de grandeurs de mesure dans des raccords filetés
EP2085849A2 (fr) * 2008-01-30 2009-08-05 Deere & Company Procédé et système de fabrication d'un article utilisant des outils portables
US20150227943A1 (en) * 2014-02-07 2015-08-13 Qvolve, LLC System and Method for Documenting Regulatory Compliance
WO2022020787A1 (fr) * 2020-07-24 2022-01-27 Schneider Electric USA, Inc. Gestion d'équipement électrique

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RS66384B1 (sr) 2025-02-28
DE112023003184A5 (de) 2025-05-08

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