WO2006024917A1 - System and method for worker supervision - Google Patents
System and method for worker supervision Download PDFInfo
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- WO2006024917A1 WO2006024917A1 PCT/IB2005/002535 IB2005002535W WO2006024917A1 WO 2006024917 A1 WO2006024917 A1 WO 2006024917A1 IB 2005002535 W IB2005002535 W IB 2005002535W WO 2006024917 A1 WO2006024917 A1 WO 2006024917A1
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- Prior art keywords
- node
- dispatch
- sensor
- capture
- receiving
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Classifications
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- G—PHYSICS
- G07—CHECKING-DEVICES
- G07C—TIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
- G07C1/00—Registering, indicating or recording the time of events or elapsed time, e.g. time-recorders for work people
- G07C1/10—Registering, indicating or recording the time of events or elapsed time, e.g. time-recorders for work people together with the recording, indicating or registering of other data, e.g. of signs of identity
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q10/00—Administration; Management
- G06Q10/06—Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
Definitions
- This invention relates to systems and methods for worker supervision.
- a worker device may be employed to access a storage
- element associated with a workplace location, and/or a sensor may capture.
- the worker device might, in various embodiments, provide to another device dispatch including, for example, sensor output and/or data read from the storage element.
- Fig. 1 shows exemplary steps involved in worker device operations according to various embodiments of the present invention.
- Fig. 2 shows exemplary steps involved in dispatch receipt operations according to various embodiments of the present invention.
- Fig. 3 shows further exemplary steps involved in dispatch receipt operations according to various embodiments of the present invention.
- Fig. 4 shows an exemplary computer.
- Fig. 5 shows a further exemplary computer.
- a worker may carry a device as she performs her duties.
- the worker might employ her device in accessing a storage element (e.g., a radio frequency identification (RFID) tag) associated with the workplace location.
- RFID radio frequency identification
- a sensor e.g., a camera integrated with and/or peripheral to the worker's device might capture. Accordingly, for instance, a photograph of the workplace location and/or a task performed there might be captured.
- the worker's device might, in various embodiments, provide to another device (e.g., a server) dispatch including, for example, sensor output and/or data read from the storage element .
- a server e.g., a server
- the dispatch might, perhaps, serve to evidence the worker having, for example, visited the workplace location and/or performed a task at the workplace location.
- storage elements may be installed at various workplace locations.
- Such storage elements might, for instance, be RFID tags, iButtons, barcodes, magnetic stripes, smartcards, flash memory, and/or wirelessly- accessible memory (e.g., memory accessible via Bluetooth, WiFi (e.g., 802.1 Ig), and/or ultra wide band (UWB).
- Such workplace locations might, for example, include locations to be visited by a security guard, containers, tanks, and/or meters to be inspected by an inspector, locations to be cleaned by a cleaning person, and/or locations to be maintained by a repairperson.
- a variety of data might be held by the placed storage elements.
- data identifying the workplace location might be held.
- Such identifying data might, for instance be one or more unique values, and/or location specifications such as descriptions (e.g., "first floor lobby - north side") and/or geographical specifications (e.g., latitude-longitude specifications).
- the placed storage elements might hold status data for the workplace location.
- status data might, for instance, be readings corresponding to the location provided to the storage element by a gauge, indicator, and/or the like.
- a worker's device e.g., a wireless node and/or other computer
- the worker might, in various embodiments, act to request and/or approve such access.
- the access might, for example, occur with the worker's visitation of the location, and/or in conjunction with performance of a task at the location (e.g., before, during, and/or after performing the task).
- the worker's device might, for instance, have at its disposal an appropriate interface for such access (e.g., an RFID interface in the case where the storage element is an RFID tag).
- the worker's device might, for example, include an integrated interface.
- the worker's device might communicate (e.g., via universal serial bus (USB), Firewire, Bluetooth, UWB, WiFi, and/or Ethernet) with a peripheral interface.
- USB universal serial bus
- a number of operations may be performed. For example, action may be taken (e.g., by software operating on the worker's device) to ascertain if the storage element is a suitable storage element (step 103). For instance, one or more operations may be performed to confirm that the storage device is a service tag, that it is not counterfeit, and/or that it is not expired. As another example, perhaps after determining the storage element to be suitable, one or more operations might be performed to read some or all of the data held by the storage element (step 105).
- the worker may be requested to, queried for, and/or provided with the opportunity to provide additional data (step 107).
- the worker might, for instance, be able to provide freeform remarks, comments, questions, and/or requests, be able to answer questions, and/or be able to fill out a form.
- the worker's device might provide the worker with a graphical user interface (GUI) and/or other interface.
- GUI graphical user interface
- the worker might be able to employ such functionality to request assistance.
- the worker's device may act in having a sensor capture (step 109).
- a sensor might, for instance, be a camera, an audio sensor, a location sensor (e.g., a global positioning system (GPS) sensor), an accelerometer, temperature sensor, a pressure sensor, and/or an altimeter.
- a camera might, for instance, be a still camera and/or a motion camera.
- a camera might, for instance, be sensitive to the human-visible portion and/or other portions of the electromagnetic spectrum (e.g., a thermal or x-ray camera might be employed).
- the worker's device might receive capture via more than one sensor.
- sensor capture may be coupled to storage element access.
- sensor capture may be initiated in response to storage element access.
- action of the worker may be involved in sensor operation, (e.g., via a GUI and/or other interface provided by her device).
- a GUI and/or other interface provided by the worker's device might request that the worker aim the sensor and/or act to have the sensor capture (e.g., by pressing a virtual or actual button).
- no action of the worker might be involved.
- the worker's device might automatically have a sensor capture (e.g., with storage element access). It is noted that, in various embodiments, the worker's device might, after it requested that the worker aim a sensor, automatically have the sensor capture.
- the worker's device might, in various embodiments, specify (e.g., via a GUI other interface), an amount of time to the worker. For instance, the worker might be given an amount of time (e.g., 15 seconds) to aim a sensor (e.g., a camera). It might, for example, be the case that the worker's device would automatically have the sensor capture with the expiration of the amount of time. As another example, functionality might be such that, if the worker did not act to have the sensor capture before expiration of the amount of time, the worker's device would make a corresponding log entry, dispatch a corresponding message to an appropriate device (e.g., a server), dispatch a corresponding message to an appropriate user (e.g., a supervisor), and/or the like.
- an appropriate device e.g., a server
- an appropriate user e.g., a supervisor
- a sensor might capture for a particular period of time (e.g., 30 seconds of capture).
- the period of time might, for instance, be set by a worker, a system administrator, and/or a manufacturer. It is further noted that, in various embodiments, sensor capture might not occur unless a read storage element was found to be suitable.
- a sensor might, for example, be integrated into a worker's device. As another example, it might be peripheral to the worker's device, with the worker's device communicating with the sensor via, for instance, USB, Firewire, Bluetooth, UWB, WiFi, and/or Ethernet.
- a sensor might be employed to capture various aspects of the workplace location.
- the sensor might alternately or additionally be employed to capture various aspects of a task performed at the workplace location. Accordingly, for instance, a camera might capture a picture of the workplace location and/or of a task performed there (e.g., a repair).
- sensor employment might serve to capture the ambient sound of a workplace location (e.g., the sound of a warehouse floor or the sound of a restaurant kitchen) and/or sound indicative of a task having been correctly completed at a workplace location (e.g., the sound of a properly-running motor to compressor).
- a workplace location e.g., the sound of a warehouse floor or the sound of a restaurant kitchen
- sound indicative of a task having been correctly completed at a workplace location e.g., the sound of a properly-running motor to compressor
- sensor employment might serve to capture location, acceleration, temperature, pressure, and/or altitude corresponding to a workplace location and/or a task. It is noted that, in various embodiments, there may be multiple sensor captures. For instance, multiple pictures might be captured.
- the worker's device might, for example, act to provide dispatch to another device (e.g., a server). Such might, for example, be done after sensor capture and/or in response to sensor capture.
- Provided to the other device via such dispatch might, for instance, be data read from the storage element, additional data provided by the worker, sensor capture (e.g., one or more pictures), one or more time stamps, and/or one or more identifiers corresponding to the worker.
- the worker's device might act to provide such dispatch to the other device in a number of ways. For example, the worker's device might act to perform dispatch soon after all to be included in the dispatch was possessed by the worker's device. The worker's device might so act, for instance, in the case where additional data provided by the worker indicated that assistance was needed. As another example, a delay might occur between all to be included in the dispatch being possessed and performance of dispatch.
- the worker might be able to indicate (e.g., via GUI and/or other interface provided by her device) that dispatch be performed. It is further noted that, in various embodiments, dispatch from the worker's device to the other device might occur periodically (e.g., hourly). Such periodicity might, perhaps, be in accordance with specification provided by a worker, a system administrator, and/or a manufacturer.
- various of that which is included in dispatch might be combined with and/or linked to sensor capture.
- data read from a storage element, additional data provided by a worker, one or more time stamps, other capture, and/or one or more identifiers corresponding to the worker might be combined with and/or linked to sensor capture.
- various of that which is included in dispatch might, for example, be superimposed over a captured picture.
- Dispatch from the worker's device to the other device might, for instance, employ Simple Object Access Protocol (SOAP), Remote Method Invocation (RMI), and/or Java Messaging Service (JMS).
- SOAP Simple Object Access Protocol
- RMI Remote Method Invocation
- JMS Java Messaging Service
- dispatch from the worker's device to the other device might, for instance, employ Universal Mobile Telephone Service (UMTS), General Packet Radio Service (GPRS), Short Message Service (SMS), Multimedia Messaging Service (MMS), and/or Internet Protocol (IP).
- UMTS Universal Mobile Telephone Service
- GPRS General Packet Radio Service
- SMS Short Message Service
- MMS Multimedia Messaging Service
- IP Internet Protocol
- a network address e.g., an IP address
- an identifier e.g., a phone number or email address
- a device to which a worker's device should send dispatch could, in various embodiments, be set in a number of ways. For example, such might be set by action of a worker, a system administrator, and/or a manufacturer. As another example, a worker's device might receive one or more such network addresses and/or identifiers when receiving software that allows the worker's device to perform various of the operations discussed herein. It is noted that, in various embodiments, the destination of a dispatch might be predefined.
- dispatch from the worker's device to the other device might be associated with a session established between the two devices.
- a session established between the two devices might be set (e.g., by a worker, a system administrator, and/or a manufacturer) to endure for a particular period of time (e.g., the working day of a worker).
- a session between the two devices might be established in a manner according to pending U.S. Application No. 10/802,414 "System and Method for Session Provision" (filed March 16, 2004), incorporated herein by reference.
- dispatch from the worker's device to the other device and/or portions thereof might be offered as indication that a workplace location was visited and/or that a task was performed.
- a worker's device may act to dispatch to another device (e.g., a remote server and/or the like) (step 201).
- another device e.g., a remote server and/or the like
- Such dispatch and/or portions thereof e.g., capture and/or data read from a storage element
- the other device receiving such dispatch might, for example, act to place into one or more accessible stores some or all of that which is included in the dispatch (step 203).
- the other device may, perhaps, have access to a store (e.g., a database) correlating various data held by storage elements with workplace locations. Accordingly, for example, such a store might correlate locations with unique values held by storage elements placed at workplace locations.
- the other device might, for instance, employ such a correlating store in the storage, correlation, and/or analysis of received dispatch. Accordingly, for example, the other device might act to correlate data received via dispatch with one or more workplace locations. It is noted that such a correlating store might, in various embodiments, be colocated with the other device.
- the other device may, for example, provide functionality whereby a user (e.g., a supervisor) can perform review (e.g., via a GUI and/or other interface provided by the other device) with respect to some or all of that which is received via the dispatch. Accordingly, for example, such a user might be able to perform review with respect to data read from a storage element at a location, additional data supplied by a worker, and/or capture (step 205).
- a user e.g., a supervisor
- review e.g., via a GUI and/or other interface provided by the other device
- the user might, for example, examine capture to determine if a workplace location was actually visited by the worker. As another example, the user might examine capture to determine if a task was correctly completed. As another example, the user might examine data read from a workplace location storage element to determine if a workplace location was actually visited by the worker and/or if a task was correctly completed.
- Such examination of capture might, for example, involve the user determining if a picture and/or sound corresponded to a particular workplace location and/or to correct completion of task. As another example, such examination of capture might involve the user determining if indication of location, pressure, and/or altitude corresponded to a particular workplace location and/or to correct completion of task.
- the user might, perhaps, be able to provide to the other device (e.g., via a GUI and/or other interface provided by the other device) one or more evaluations that she had made via such review (step 207). For instance, the user might be able to indicate whether or not a workplace location was visited and/or whether or not a task was correctly completed.
- one or more operations might be automatically performed (e.g., by the other device) to evaluate dispatch.
- one or more operations might be automatically performed whereby data read from a workplace location storage element is analyzed.
- one or more operations might be automatically performed whereby capture is analyzed.
- Fig. 3 it is noted that such analysis might, in various embodiments, act to make a determination as to whether or not a workplace location was visited (step 301) and/or whether or not a task was correctly completed (step 303). Results of such evaluation might, in various embodiments, be placed in an accessible store (step 305) and/or be brought to the attention of a user (e.g., a supervisor) (step 307).
- a user e.g., a supervisor
- Such analysis might, for example, involve data analysis, image analysis, sound analysis, location analysis, pressure analysis, and/or altitude analysis.
- such might involve comparison of dispatch content with held data. For example, received data read from a workplace location storage element, received pictures and/or sound, and/or indications of location, pressure, and/or altitude might be compared with accessible data, values, patterns, reference examples, and/or the like corresponding to various locations and/or to correct completion of various tasks.
- reference example pictures e.g., including a reference example picture of a correctly installed window or a correct gear installation
- reference example sounds e.g., including a reference example sound of a properly-running motor or compressor
- reference example pictures e.g., including a reference example picture of a warehouse floor or a lobby
- reference example sounds e.g., including a reference example sound of a warehouse floor or a restaurant kitchen
- the other device may provide to the "worker's device software that allows the worker's device to perform various of the operations discussed herein (e.g., the worker's device initiating sensor capture and/or the worker's device providing dispatch to another device).
- the worker's device might, in various embodiments, receive such software at a time previous to performing various of the operations discussed herein. Dispatch of such software to the worker's node might, for example, be performed in a manner analogous to that discussed above.
- Various operations and/or the like described herein may be executed by and/or with the help of computers. Further, for example, devices described herein may be and/or may incorporate computers.
- the phrases "computer”, "general purpose computer”, and the like, as used herein, refer but are not limited to a smart card, a media device, a personal computer, an engineering workstation, a PC, a Macintosh, a PDA, a portable computer, a computerized watch, a wired or wireless terminal, phone, node, and/or the like, a server, a network access point, a network multicast point, a set-top box, a personal video recorder (PVR), a game console, or the like, perhaps running an operating system such as OS X, Linux, Darwin, Windows CE, Windows XP, Windows Server 2003, Palm OS, Symbian OS, or the like, perhaps employing the Series 40 Platform, Series 60 Platform, and/or Series 90 Platform, and perhaps having support for Java and/or .Net.
- exemplary computer 4000 as shown in Fig. 4 includes system bus 4050 which operatively connects two processors 4051 and 4052, random access memory 4053* read-only memory 4055, input output (I/O) interfaces 4057 and 4058, storage interface 4059, and display interface 4061.
- Storage interface 4059 in turn connects to mass storage 4063.
- Each of I/O interfaces 4057 and 4058 may, for example, be an Ethernet, IEEE 1394, IEEE 1394b, IEEE 802.11a, IEEE 802.11b, IEEE 802.1 Ig 5 IEEE 802.11i, IEEE 802.1 Ie, IEEE 802.1 In, IEEE 802.15a, IEEE 802.16a, IEEE 802.16d, IEEE 802.16e, IEEE 802.16x, IEEE 802.20, IEEE 802.15.3, ZigBee, Bluetooth, Wireless Universal Serial Bus (WUSB), wireless Firewire, terrestrial digital video broadcast (DVB-T), satellite digital video broadcast (DVB-S), Advanced Television Systems Committee (ATSC), Integrated Services Digital Broadcasting (ISDB), Digital Audio Broadcast (DAB), General Packet Radio Service (GPRS), Universal Mobile Telecommunications Service (UMTS), Global System for Mobile Communications (GSM), DVB-H (Digital Video Broadcasting: Handhelds), IrDA (Infrared Data Association), and/or other interface.
- WUSB Wireless Universal Serial Bus
- WUSB Wireless Firewire
- Mass storage 4063 may be a hard drive, optical drive, or the like.
- Processors 4051 and 4052 may each be a commonly known processor such as an IBM or Motorola PowerPC, an AMD Athlon, an AMD Opteron, an Intel ARM, an Intel XScale, a Transmeta Crusoe, a Transmeta Efficeon, an Intel Xenon, an Intel Itanium, or an Intel Pentium.
- Computer 4000 as shown in this example also includes a touch screen 4001 and a keyboard 4002. Li various embodiments, a mouse, keypad, and/or interface might alternately or additionally be employed.
- Computer 4000 may additionally include or be attached to card readers, DVD drives, floppy disk drives, hard drives, memory cards, ROM, and/or the like whereby media containing program code (e.g., for performing various operations and/or the like described herein) may be inserted for the purpose of loading the code onto the computer.
- media containing program code e.g., for performing various operations and/or the like described herein
- a computer may run one or more software modules designed to perform one or more of the above-described operations.
- modules might, for example, be programmed using languages such as Java, Objective C, C, C#, C++, Perl, Python, and/or Xen according to methods known in the art.
- Corresponding program code might be placed on media such as, for example, DVD, CD-ROM, and/or floppy disk. It is noted that any described division of operations among particular software modules is for purposes of illustration, and that alternate divisions of operation may be employed. Accordingly, any operations discussed as being performed by one software module might instead be performed by a plurality of software modules.
- any operations discussed as being performed by a plurality of modules might instead be performed by a single module. It is noted that operations disclosed as being performed by a particular computer might instead be performed by a plurality of computers. It is further noted that, in various embodiments, peer-to-peer and/or grid computing techniques may be employed.
- Fig. 5 Shown in Fig. 5 is a block diagram of a terminal, an exemplary computer employable in various embodiments of the present invention.
- exemplary terminal 5000 of Fig. 5 comprises a processing unit CPU 503, a signal receiver 505, and a user interface (501, 502).
- Signal receiver 505 may, for example, be a single-carrier or multi-carrier receiver.
- Signal receiver 505 and the user interface (501, 502) are coupled with the processing unit CPU 503.
- One or more direct memory access (DMA) channels may exist between multi-carrier signal terminal part 505 and memory 504.
- the user interface (501, 502) comprises a display and a keyboard to enable a user to use the terminal 5000.
- the user interface (501, 502) comprises a microphone and a speaker for receiving and producing audio signals.
- the user interface (501, 502) may also comprise voice recognition (not shown).
- the processing unit CPU 503 comprises a microprocessor (not shown), memory 504 and possibly software.
- the software can be stored in the memory 504.
- the microprocessor controls, on the basis of the software, the operation of the terminal 5000, such as receiving of a data stream, tolerance of the impulse burst noise in data reception, displaying output in the user interface and the reading of inputs received from the user interface.
- the hardware contains circuitry for detecting signal, circuitry for demodulation, circuitry for detecting impulse, circuitry for blanking those samples of the symbol where significant amount of impulse noise is present, circuitry for calculating estimates, and circuitry for performing the corrections of the corrupted data.
- the terminal 5000 can, for instance, be a hand-held device which a user can comfortably carry.
- the terminal 5000 can, for example, be a cellular mobile phone which comprises the multi-carrier signal terminal part 505 for receiving multicast transmission streams. Therefore, the terminal 5000 may possibly interact with the service providers.
Abstract
Description
Claims
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
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EP05782188A EP1784792A1 (en) | 2004-08-30 | 2005-08-25 | System and method for worker supervision |
CA002578548A CA2578548A1 (en) | 2004-08-30 | 2005-08-25 | System and method for worker supervision |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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US10/930,002 | 2004-08-30 | ||
US10/930,002 US7532125B2 (en) | 2004-08-30 | 2004-08-30 | System and method for worker supervision |
Publications (2)
Publication Number | Publication Date |
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WO2006024917A1 true WO2006024917A1 (en) | 2006-03-09 |
WO2006024917B1 WO2006024917B1 (en) | 2006-05-18 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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PCT/IB2005/002535 WO2006024917A1 (en) | 2004-08-30 | 2005-08-25 | System and method for worker supervision |
Country Status (5)
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US (1) | US7532125B2 (en) |
EP (1) | EP1784792A1 (en) |
CN (1) | CN101010702A (en) |
CA (1) | CA2578548A1 (en) |
WO (1) | WO2006024917A1 (en) |
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2004
- 2004-08-30 US US10/930,002 patent/US7532125B2/en not_active Expired - Fee Related
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2005
- 2005-08-25 CN CNA2005800290179A patent/CN101010702A/en active Pending
- 2005-08-25 CA CA002578548A patent/CA2578548A1/en not_active Abandoned
- 2005-08-25 WO PCT/IB2005/002535 patent/WO2006024917A1/en active Application Filing
- 2005-08-25 EP EP05782188A patent/EP1784792A1/en not_active Withdrawn
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DE10103266A1 (en) * | 2000-10-12 | 2002-04-25 | Identcom Gmbh | Processing letter and goods consignments using a mobile data processing device allowing a bar code affixed to any type of postal item to be read with additional data fields that can be used to obtain extra information |
US20020175211A1 (en) * | 2001-03-19 | 2002-11-28 | Francisco Dominquez | Time and attendance system with verification of employee identity and geographical location |
WO2003088156A2 (en) * | 2002-04-10 | 2003-10-23 | Michael Jonathan Elliott | Security device |
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EP2015239A3 (en) * | 2007-07-02 | 2009-07-15 | Hitachi Ltd. | Device, method, program, and storage medium of work instruction delivery |
Also Published As
Publication number | Publication date |
---|---|
CA2578548A1 (en) | 2006-03-09 |
WO2006024917B1 (en) | 2006-05-18 |
EP1784792A1 (en) | 2007-05-16 |
CN101010702A (en) | 2007-08-01 |
US20060044141A1 (en) | 2006-03-02 |
US7532125B2 (en) | 2009-05-12 |
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