CN108021104A - Production line monitoring system and method - Google Patents

Production line monitoring system and method Download PDF

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Publication number
CN108021104A
CN108021104A CN201610928402.7A CN201610928402A CN108021104A CN 108021104 A CN108021104 A CN 108021104A CN 201610928402 A CN201610928402 A CN 201610928402A CN 108021104 A CN108021104 A CN 108021104A
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CN
China
Prior art keywords
production line
operator
wearable device
data
sensors
Prior art date
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Pending
Application number
CN201610928402.7A
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Chinese (zh)
Inventor
姜小花
陈彦霖
代增
何莉
赵如彦
任骝
杨晓建
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.)
Bosch Automotive Products Suzhou Co Ltd
Original Assignee
Bosch Automotive Products Suzhou Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Bosch Automotive Products Suzhou Co Ltd filed Critical Bosch Automotive Products Suzhou Co Ltd
Priority to CN201610928402.7A priority Critical patent/CN108021104A/en
Priority to PCT/CN2017/103570 priority patent/WO2018076992A1/en
Publication of CN108021104A publication Critical patent/CN108021104A/en
Pending 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], computer integrated manufacturing [CIM]
    • G05B19/4183Total 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], computer integrated manufacturing [CIM] characterised by data acquisition, e.g. workpiece identification
    • 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], computer integrated manufacturing [CIM]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

Abstract

The present invention provides a kind of production line monitoring system, which includes:Wearable device, the wearable device include one or more sensors, and one or more of sensors are configured as sensing the operator for dressing the wearable device caused data when being operated on the work station of production line;And computing device, the computing device include being used for the harvester for the data that collection is sensed by one or more of sensors and the processing unit for being monitored the operation of the operator in the production line based on collected data.In addition, present invention also offers corresponding method and can be directly used for production line monitoring wearable device.

Description

Production line monitoring system and method
Technical field
This invention relates generally to production control technology field, and in particular it relates to intelligentized production line monitoring system System and method.
Background technology
There are various problems on current production line.For example, pre-job in new operator, enterprise's common practice at present It is that teaching needs the behaviour that the operator carries out in the production line by doing and illustrating by special trainer or experienced operator Make.When new operator formally starts initial stage for operating in the production line, to be usually also required to trainer and aside exercise supervision, to keep away Exempt from the generation of mistake.Even if whole production line all using experienced operator, still needs fool proof measure, to avoid as The increase of industry amount, affairs issuable mistake and danger when becoming busy.
Artificial professor's operation skill has its advantage, but extra burden may be produced to experienced operator, Expend its energy.The special human cost for setting training or supervisor to increase enterprise, and manual oversight can not usually reach To expected effect.For example, come the quality of production of monitor operator, there are the shortcomings that poor reliability by manual patrol.It is true On, do not have special risk management at present yet, at most by by specific people periodically or non-periodically make an inspection tour come prevention and control mistake, This kind of manual inspection is equally very easy to careless mistake occur.The operation that can be scanned the two-dimensional code by increasing in the production line monitors Selection of the operator to parts, but this greatly reduces production efficiency.
It is therefore desired to a kind of intelligentized production line monitoring scheme is designed, to help enterprise to improve the quality of production With production efficiency, reduction work safety accident and saving production cost.
The content of the invention
In view of this, the present invention provides intelligent production line monitoring system and method, can improve the above problem.On the one hand, originally Invention proposes a kind of production line monitoring system, which includes:Wearable device, the wearable device include one or more pass Sensor, wherein one or more of sensors, which are configured as sensing, dresses the operator of the wearable device in production line Caused data when being operated on work station.In addition, the system also includes computing device, which includes being used for Collect the harvester of data that is sensed by one or more of sensors and for based on collected data to institute State the processing unit that the operation of operator in the production line is monitored.
On the other hand, the present invention provides a kind of production line monitoring method, this method to include:Wearable device is provided, should Wearable device includes one or more sensors;It is described wearable that one or more of sensors are configured to sensing wearing The operator of equipment caused data when being operated on the work station of production line;Collect by one or more of sensings The data that device is sensed;And the operation of the operator in the production line is monitored based on collected data.
Another aspect, a kind of production line monitoring device, the equipment include:Harvester, for collecting by one or more The data that a sensor is sensed, wherein one or more of sensors be arranged on it is in wearable device and one Or multiple sensors are configured as sensing and dress the operator of the wearable device being operated on the work station of production line When caused data;And processing unit, its based on the data collected by harvester to the operator in the production line Operation be monitored.
On the other hand, the present invention provides a kind of wearable device, the wearable device to include:One or more sensing Device, one or more of sensors are configured as work station of the operator in production line that sensing dresses the wearable device On caused data when being operated;And control device, the control device are configured as collecting by one or more The data and carried out based on collected data to operation of the operator on the work station that a sensor is sensed Monitoring.
Another aspect, the present invention provides a kind of production line monitoring method, this method includes:Wearable device, institute are provided Stating wearable device includes one or more sensors and control device;One or more of sensors are configured to sense The operator for dressing the wearable device caused data when being operated on the work station of production line;And by described in Control device is configured to collect the data that are sensed by one or more of sensors and based on collected data to institute Operation of the operator on production line work station is stated to be monitored.
Brief description of the drawings
The present invention foregoing and other target, feature and advantage according to it is following to the embodiment of the present invention in particular Bright to will be apparent, these embodiments are illustrated in the accompanying drawings.
Fig. 1 is the structure diagram of an exemplary manufacturing monitoring system according to the present invention.
Fig. 2 is the structure diagram of another exemplary manufacturing monitoring system according to the present invention.
Fig. 3 is the structure diagram of an exemplary wearable device according to the present invention.
Fig. 4 is that exemplary production line monitoring system realizes schematic diagram according to the present invention.
Fig. 5 is the flow diagram of an exemplary production line monitoring method according to the present invention.
Fig. 6 is the flow diagram of another exemplary production line monitoring method according to the present invention.
Embodiment
Referring now to the schematic example of the attached drawing description present invention, identical drawing reference numeral represents identical element.Hereafter Each example of description contributes to those skilled in the art to understand thoroughly the present invention, and each example is intended to example and unrestricted.In figure Each element, component, module, the diagram of device and apparatus body only illustrate schematically that there are these elements, component, module, device And apparatus body also shows relativeness between them at the same time, but not limiting their concrete shape;In flow chart The relation of each step is not also limited with given order, can be adjusted according to practical application but not departed from the protection of the application Scope.
Fig. 1 is the structure diagram of an exemplary production line monitoring system according to the present invention.As shown in Figure 1, system 100 It may include wearable device 101 and computing device 102.To carry out production monitoring, wearable device 101 is being produced by operator Dress, can for example be realized in the form of gloves or wrist strap when being operated on line.Usually, wearable device 101 includes passing Sensor 11, these sensors, which are configured as sensing, to be dressed the operator of equipment 101 and is operated on the work station of production line When caused data.Sensor 11 is such as can be inertial sensor, touch sensor, force snesor, sound pick-up.Inertia Sensor can be for example accelerometer, turn meter, magnetometer etc. or its combination, and sound pick-up can be for example microphone, be used for The sound sent when connector is snapped to during sensing is for example manually operated.
Computing device 102 includes at least harvester 12 and processing unit 13.Harvester 12 can be configured as collection The data sensed by each sensor 11, and processing unit 13 can then be configured as existing to operator based on collected data Operation on production line is monitored.For example, computing device 102 can be by various types of computers, personal digital assistant (PDA), the equipment with data-handling capacity such as cell phone realizes.
Usually, operator needs to complete fixed series of standards operation in the production line, and may need in life Some parts are selected during production to be assembled, these parts are generally also some predetermined defined parts.Calculate It is accurate that processing unit 13 in equipment 102 can be configured to that the information from sensor 11 is analyzed and handled Judge the action that operator done, thus determine whether operator has been appropriately carried out standard operation and judgement in ground Whether operator has selected correct part, so as to fulfill the real time monitoring of the performance to operator in the production line.Citing comes Say, inertial sensor can be arranged on wearable device 101, corresponding with finger part and be arranged on and the back of the hand pair On the part answered.Processing unit 13 can be configured as to be sentenced based on inertial sensor in the acceleration measured by the two positions Cut off the hands the degree of crook of finger.
More preferably to realize production monitoring, can also in the production machine of production line placement sensor, and will processing Device 13 is configured to also be collected data caused by the sensor in production machine.Thus, processing unit 13 can be with base In both the data from sensor 11 and the data sensed by the sensor in production machine come policer operation person in life Behavior in producing line.For this reason, computing device 102 can also include communicator, with from production machine receiving sensor data, example Such as using WiFi, bluetooth mode.For example, the sensor in production machine may include that infrared sensor, cylinder location pass Sensor etc..Data caused by these sensors can be received for example by the programmable logic controller (PLC) PLC of production machine, and for example It is wirelessly transmitted to computing device 102.By these information, processing unit 13 for example can more accurately judge that operator is It is no that component has been put into the correct position in production machine or the operation by human hand of monitoring operation person, thus reduce the hair of mistake It is raw, improve production efficiency.
Computing device 102 can also include storage device, for storing and requiring the standard operation performed in the production line Relevant characteristic parameter.Processing unit 13, can will when based on sensing data policer operation person operation in the production line Collected data and predetermined characteristic parameter be compared to judge whether operator performs in the production line must The standard operation of palpus judges whether operator performs series of standards according to correct order and operate surely in the production line.
For example, the standard operation on production line may include to need operator to overturn production component.For detection Whether operator performs the rotary movement to particular elements, and processing unit 13 can be configured as collects to behaviour from sensor 11 The orientation of work person's hand motion or the sensing of acceleration change, and the standard value that real time data is acted with characterization turning part It is compared.If sensing data result reaches the standard value prestored, processing unit 13 determines that operator has performed The action of turning part.
Further, it is also possible to judge whether operator has selected correct zero using the production line monitoring system shown in Fig. 1 Part.For example, processing unit 13 can be configured as sensing of the collecting sensor 11 to operator's hand position.At the same time it can also The datum mark on production line work station is predefined, such as the datum mark can be the placement position of required each parts.By This, processing unit 13 can be by the way that the operator sensed hand position be compared with reference point location, to judge to grasp Whether work person has selected correct part in appropriate circumstances.
In general, in itself or put possible layout on the babinet of part in part and have the RFID tag comprising parts information.Phase Ying Di, can also arrange RFID reader in wearable device 101.In this case, can by operator's directly use Wearable device reads parts information from these RFID tags.Harvester 12 can be additionally configured to collect from wearable device The read parts information of RFID reader, and processing unit 13 can be configured as and these information are parsed, thus By judge the part whether be regulation parts to be used determine operator choose whether it is correct.
Under normal conditions, enterprise may can also require carries out total evaluation to the performance of operator in the production line.For this reason, Processing unit 13 can be configured to also count the parameter of characterization operation performance, these parameters for example can be a whole set of operation Execution cycle, the percent of pass and the accuracy that each operates etc. of a whole set of operation.Processing unit 13 can be additionally configured to By from the data collected by each sensor 11 either statistical result be stored in the local storage of computing device 102 or Send to remote port, such as can be the server either high in the clouds in factory.These data for example can be excavated further For optimization production procedure, work station design, production environment planning etc..For this reason, computing device 102 can also include communication Device, to transmit data to remote port.Computing device 102 can transmit data by the way of wired or wireless, such as pass through Data cable, WiFi, bluetooth etc..
In some implementations, it may be desirable to fed back to operator to be sent in time to it when it faulty operation occurs Remind.Therefore, wearable device 101 can also include feedback device, which can receive from computing device 102 refers to Order, and provide feedback to correspondingly operator.Operation of the feedback with operator in the production line is associated, such as is operating When member is not carried out standard operation or is not operated in the correct order in a manner of voice, vibration or LED flicker etc. Prompting is sent to operator.Feedback device may, for example, be light-emitting diode display, loudspeaker, vibrator etc..For example occurring seriously In emergency circumstances, processing unit 13 can be additionally configured to send instruction to the production machine on production line to indicate for maloperation Production machine is out of service or indicates that the warning device on production line sends alarm, thus prevents great production accident in time Occur, production safety is effectively ensured.
Computing device 102 can also include display device, which can be used for the operation to wearable device Member's demonstration requires the standard operation performed in the production line.This is particularly useful for training novice operators.As it was previously stated, at present It is generally necessary to trainer by doing and illustrating gives new operator training, the standard operation required to new trainer demonstration, and Point out mistake of the new operator during study or practice.Production line monitoring system shown in Fig. 1 can be completed nearly all The work undertaken at present by trainer.In the study stage, new operator can put on wearable device 101 first, and calculate The display device of equipment 102 can be configured as to the standard operation to perform in the production line of new operator demonstration, such as with The form of video or picture.Can for example it be sent out by the feedback device being arranged on wearable device to the operator learnt Go out prompting, making it, shown content performs corresponding operation according to the display device, and provides for each operation correct Or the feedback of mistake.Display device can be configured as instruction of the response from processing unit 13, and only receive study Personnel are correctly completed after the instruction of previous operation and just demonstrate next operation to it.In practice stage, processing unit 13 can be by Sensor caused data in operator's independent exercise whole operation process are configured to, judge that the operator's is each Whether action is correct and whether performs all operations in the correct order, and the indication feedback device when there is mistake Send prompting.Thus, by using the production line monitoring system shown in Fig. 1, enterprise can greatly save the time of new person's training And human cost, improve production efficiency.
Fig. 2 is the structure diagram of another exemplary manufacturing monitoring system according to the present invention.In the production monitoring shown in Fig. 2 In system 200, wearable device 101 further comprises control device 14.The control device can at least be designed to include using In collecting the data that are sensed from each sensor 11 and the transceiver of collected data transmitted to computing device 102.This Outside, control device 14 can also include RFID reader.In this case, operator can directly use wearable device Parts information is read in 101 RFID tag from the parts or parts to be selected packaging.Control device will be read Parts information be sent to computing device 102, and then these information are parsed by processing unit 13, thus can determine that operation Member chooses whether correctly to parts.The control device can for example be arranged on wearable device 101, with operator In the back of the hand or the corresponding part of wrist.In some cases, it is, for example, the feedback dress of light-emitting diode display, loudspeaker, vibrator etc. Putting can also integrate with the control device 14.
Fig. 3 is the structure diagram of an exemplary wearable device according to the present invention.As shown in Figure 1, wearable device 300 include sensor 11 and control device 14, and wherein sensor 11 for example can be inertial sensor, touch sensor, power Sensor, sound pick-up etc..Wearable device 300 is dressed when can be operated in the production line by operator, can be for example with gloves Or the form of wrist strap is realized.Similar to the example shown in Fig. 2, control device 14 can include being used to collect by each sensor The component of 11 data sensed.In addition, in the example of fig. 3, control device 14 can also include being used to carry out data processing Component, be achieved in the 13 described all functions of processing unit above in conjunction with Fig. 1.Therefore, can be every by making Wearable device 300 is dressed when a operator is operated in the production line to be monitored come the performance to each operator, by This forms production line monitoring system, without other computing devices in addition to wearable device.
In some cases, wearable device 300 can also include RFID reader, the RFID reader can for example by It is integrated in control device 14.Thus, it is possible to for example by being read using wearable device by operator and being wanted selected zero The RFID tag that part is associated determines if to employ correct part or instrument in the production line.
Similar to the example of Fig. 1, memory can also be set in wearable device 300, which can also be collected Into in control device 14, to store and require the relevant characteristic parameter of standard operation performed on specific production line.
Similarly, control device 14 can include transceiver with from the sensor collection data being arranged in production machine. In some cases, the feedback device for being, for example, light-emitting diode display, loudspeaker, vibrator etc. can also be integrated in control device In 14.
Fig. 4 illustrates a kind of specific implementation of wearable device according to the present invention.As shown in figure 4, the present invention's wears Wear equipment and may be implemented as wearable Intelligent glove 20.In this example, Intelligent glove 20 include control device 30 and Sensor 40.Specifically, the inertia that sensor 40 can include being arranged on the finger position and/or the back of the hand position of gloves 20 passes Sensor, sound pick-up, the palm part for being arranged on gloves 20 or the power of the touch sensor at finger fingertip position or other forms pass Sensor.As shown in figure 4, control device 30 is disposed in the back of the hand position of gloves 20.In a further embodiment, control device 30 The wrist strap position of gloves 20 can also be disposed in.Control device 30 can be according to according to the described control devices 14 of Fig. 2 Realize.In this case, Intelligent glove 20 can come together to form production line monitoring system with reference to other computing device.Control Device 30 processed can also be realized according to according to the described control devices 14 of Fig. 3.At this time, Intelligent glove 20 can individually by with In progress production line monitoring.
Operator can be required to wear Intelligent glove 20 as shown in Figure 4 when being operated on the work station of production line.It is logical Crossing makes wearable device as operator's wearing be operated in the production line, and enterprise can carry out the situation on production line Monitor in real time and exactly, so as to avoid mistake in time, improve production efficiency.Since wearable device will practically undergo behaviour Do the everything performed as member, the timeliness and accuracy of monitoring will significantly larger than manual inspection, while also superior to it is external, Such as the production line monitoring system based on monitoring camera.
Fig. 5 is the flow diagram of an exemplary production line monitoring method according to the present invention.According to method 500, in step In rapid 51, there is provided the wearable device including one or more sensors.In step 52, which is matched somebody with somebody It is set to and senses the operator for dressing the wearable device caused data when being operated on the work station of production line.In step In rapid 53, the data sensed by the sensor in wearable device are collected, which can be by the meter independently of wearable device Equipment is calculated to realize, such as various types of computers, personal digital assistant(PDA), cell phone etc. there is data processing energy The equipment of power.In step 54, the processing dress being monitored based on collected data to the operation of operator in the production line Put, which can equally be realized by the computing device independently of wearable device.
Fig. 6 is the flow diagram of another exemplary production line monitoring method according to the present invention.According to method 600, in step In rapid 61, there is provided wearable device, the wearable device include one or more sensors and control device.For production line The wearable device of monitoring can be such as when being implemented as operator and can carry out production operation the Intelligent glove of wearing, bracelet. In step 62, the sensor in wearable device is configured as sensing and dresses the operator of the wearable device in production line Work station on caused data when being operated.In step 63, the control device in wearable device is configured to receive Collect the data that are sensed by the one or more sensors and based on collected data to operator in production line work station On operation be monitored.The production line monitoring method provided based on wearable device can effectively help enterprise to improve production Quality and production efficiency, reduce work safety accident and save production cost.
It should be noted that above embodiment is merely illustrative of the technical solution of the present invention rather than it is limited System.Although the present invention is described in detail with reference to above-mentioned embodiment, those of ordinary skill in the art should Understand, can still modify to the embodiment of the present invention or equivalent substitution is carried out without de- to some technical characteristics From the essence of the present invention, it is encompassed by the claimed scope of the present invention.

Claims (21)

  1. A kind of 1. production line monitoring system, it is characterised in that the system comprises:
    Wearable device, the wearable device include one or more sensors, and one or more of sensors are configured To sense the operator for dressing the wearable device caused data when being operated on the work station of production line;
    Computing device, the computing device include being used for the collection for collecting the data sensed by one or more of sensors Device and the processing unit for being monitored based on collected data to the operation of the operator in the production line.
  2. 2. production line monitoring system as claimed in claim 1, wherein, the harvester is additionally configured to collect by being arranged in The data that sensor in the production machine of production line is sensed, and the processing unit is additionally configured to be based on from described one The data of a or multiple sensor collections and from both data of sensor collection in the production machine to the operator Operation in the production line is monitored.
  3. 3. production line monitoring system as claimed in claim 1, wherein, the computing device further includes storage device, described to deposit Storage device is configured as storage and the relevant characteristic parameter of standard operation for requiring to perform in the production line, and based on collected Data the operation of the operator in the production line is monitored including by collected data and the characteristic parameter ratio Compared with determine the operator whether perform in the production line necessary to standard operation or the operator whether according to Correct order performs standard operation in the production line.
  4. 4. production line monitoring system as claimed in claim 1, wherein, based on by collected data to the operator in life Operation in producing line is monitored including determining whether the operator employs correct part or instrument in the production line.
  5. 5. production line monitoring system as claimed in claim 4, wherein, the processing unit be configured as based on one or Multiple sensors sense to the hand position of the operator and combine pre-defined, on production line work station benchmark Put to determine whether the operator employs correct part or instrument in the production line.
  6. 6. production line monitoring system as claimed in claim 1, wherein, the processing unit is additionally configured to described in statistics characterization The parameter of the operation performance of operator.
  7. 7. production line monitoring system as claimed in claim 1, wherein, the processing unit be additionally configured to one or The data sending of multiple sensors sensing is to remote port.
  8. 8. production line monitoring system as claimed in claim 1, wherein, the processing unit is additionally configured in the definite behaviour Work person operation occur mistake when indicate production line on production machine it is out of service or instruction production line on warning device Send alarm.
  9. 9. production line monitoring system as claimed in claim 1, wherein, the wearable device further includes feedback device, described Feedback device is configured as providing with the operator in production line to the operator based on the instruction from the computing device On the associated feedback of operation.
  10. 10. production line monitoring system as claimed in claim 9, wherein, the feedback device include light-emitting diode display, loudspeaker, One or more of vibrator.
  11. 11. production line monitoring system as claimed in claim 1, wherein, the wearable device further includes control device, the control Device processed includes being used to collect the data sensed from one or more of sensors and transmits institute to the computing device The transceiver of the data of collection.
  12. 12. production line monitoring system as claimed in claim 11, wherein, the control device further includes RFID reader.
  13. 13. production line monitoring system as claimed in claim 11, wherein, the control device is arranged on wearable device With in the corresponding part of the back of the hand or wrist of operator.
  14. 14. production line monitoring system as claimed in claim 1, wherein, one or more of sensors include inertia sensing One or more of device, touch sensor, force snesor, sound pick-up.
  15. 15. production line monitoring system as claimed in claim 1, wherein, the wearable device uses the shape of gloves or wrist strap Formula.
  16. 16. production line monitoring system as claimed in claim 1, wherein, the computing device further includes display device, described aobvious Showing device be used to demonstrate the standard operation for requiring to perform in the production line to the operator of the wearable device.
  17. 17. a kind of production line monitoring method, wherein, the described method includes:
    Wearable device is provided, the wearable device includes one or more sensors;
    One or more of sensors are configured to work of the operator in production line of the sensing wearing wearable device Caused data when being operated on standing;
    Collect the data sensed by one or more of sensors;And
    The operation of the operator in the production line is monitored based on collected data.
  18. 18. a kind of production line monitoring device, it is characterised in that the equipment includes:
    Harvester, for collecting the data sensed by one or more sensors, wherein one or more of sensors It is arranged in wearable device and one or more of sensors is configured as sensing and dresses the wearable device Operator's caused data when being operated on the work station of production line;And
    Processing unit, it is monitored the operation of the operator in the production line based on the data collected by harvester.
  19. 19. a kind of wearable device, it is characterised in that the wearable device includes:
    One or more sensors, one or more of sensors are configured as the operation that sensing dresses the wearable device Member's caused data when being operated on the work station of production line;And
    Control device, the control device are configured as collecting the data sensed by one or more of sensors and base Operation of the operator on the work station is monitored in collected data.
  20. 20. a kind of production line monitoring system, it is characterised in that the system is as the wearable device structure described in claim 19 Into.
  21. A kind of 21. production line monitoring method, it is characterised in that the described method includes:
    Wearable device is provided, the wearable device includes one or more sensors and control device;
    One or more of sensors are configured to work of the operator in production line of the sensing wearing wearable device Caused data when being operated on standing;And
    The control device is configured to collect the data that are sensed by one or more of sensors and based on collected Data operation of the operator on production line work station is monitored.
CN201610928402.7A 2016-10-31 2016-10-31 Production line monitoring system and method Pending CN108021104A (en)

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CN201610928402.7A CN108021104A (en) 2016-10-31 2016-10-31 Production line monitoring system and method
PCT/CN2017/103570 WO2018076992A1 (en) 2016-10-31 2017-09-27 Production-line monitoring system and method

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