WO2012081764A1 - Dispositif de relais et procédé de gestion de données mesurées utilisant ce dernier - Google Patents

Dispositif de relais et procédé de gestion de données mesurées utilisant ce dernier Download PDF

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Publication number
WO2012081764A1
WO2012081764A1 PCT/KR2010/009628 KR2010009628W WO2012081764A1 WO 2012081764 A1 WO2012081764 A1 WO 2012081764A1 KR 2010009628 W KR2010009628 W KR 2010009628W WO 2012081764 A1 WO2012081764 A1 WO 2012081764A1
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WIPO (PCT)
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data
information
measurement
result report
length
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PCT/KR2010/009628
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English (en)
Korean (ko)
Inventor
장달현
김영탁
이승환
정호열
박용완
박창현
정교일
Original Assignee
영남대학교 산학협력단
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Publication of WO2012081764A1 publication Critical patent/WO2012081764A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q9/00Arrangements in telecontrol or telemetry systems for selectively calling a substation from a main station, in which substation desired apparatus is selected for applying a control signal thereto or for obtaining measured values therefrom
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/0002Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C2201/00Transmission systems of control signals via wireless link
    • G08C2201/40Remote control systems using repeaters, converters, gateways
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2209/00Arrangements in telecontrol or telemetry systems
    • H04Q2209/30Arrangements in telecontrol or telemetry systems using a wired architecture
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2209/00Arrangements in telecontrol or telemetry systems
    • H04Q2209/40Arrangements in telecontrol or telemetry systems using a wireless architecture
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2209/00Arrangements in telecontrol or telemetry systems
    • H04Q2209/80Arrangements in the sub-station, i.e. sensing device
    • H04Q2209/82Arrangements in the sub-station, i.e. sensing device where the sensing device takes the initiative of sending data

Definitions

  • the present invention relates to a relay device and a method for managing measurement data using the same, and more particularly, to a relay device for relaying measurement data and a method for managing measurement data using the same.
  • a conventional medical measuring device such as a blood pressure monitor or a blood glucose meter that can be purchased and used by a user is only used for self-diagnosis in connection with a personal PC.
  • an object of the present invention is to provide a relay device capable of converting the data measured by the medical measurement device to the measurement data management server and a measurement data management method using the same In providing.
  • a relay device for achieving the above object is connected to at least one or more medical measurement device via a cable, the first receiving the measurement data measured for the measurement target in the medical measurement device
  • the interface unit generates a data frame of a first format for management by the relay device based on the measurement data, converts the data frame of the first format into a data frame of a second format for a measurement data management server, and transmits the data.
  • a second interface unit for transmitting the transmission data to a measurement data management server through a wired / wireless communication method so that the measurement data management server can update data for the measurement object.
  • the data is report data generated based on the measurement data, It includes the characteristic information and signaling information for the report data.
  • the data frame of the first format includes transmission data type information, data total length information byte, byte string total length information, invoke ID information, selection event message type information, remaining selection data length information, and an object. It may include at least one of handle information, event information, result report information, result report data information, and measurement data period information.
  • the event information may include at least one of event time information, event type information, and event information length information.
  • the result report information may include at least one of result report request ID information, result report number information, result report data number information, and result report data length information.
  • the result report data information includes n-th result report data type information, n-th result report data length information, n-th result report data numerical information, n-th result report data measurement time information, and n-th result report additional data type information. At least one of the n th result report additional data length information, the n th result report additional data measurement time information, and the n th result report data additional information.
  • the transmission data type information has a length of 2 bytes
  • the measurement data period information has a length of 8 bytes.
  • the event time information may have a length of 4 bytes
  • the event type information and the event information length information may have a length of 2 bytes.
  • the result report request ID information, the result report number information, the result report data number information, and the result report data length information have a length of 2 bytes.
  • the n th result report data type information, the n th result report data length information, the n th result report data numerical information, the n th result report additional data type information, the n th result report additional data length information, and the The n th result report data additional information has length information of 2 bytes, and the n th result report data measurement time information and the n th result report additional data measurement time information preferably have 8 bytes of length information.
  • the data frame of the second format includes at least one packet divided into a packet header portion and a data portion, and the packet header portion includes at least one of a target type, a cradle S / N, a target S / N, an RSSI, and a checksum.
  • a target type e.g., a target S / N
  • an RSSI e.g., RSSI
  • a checksum e.g., a measurement date, a measurement time, a measurement value, and a checksum may be recorded in the data portion.
  • the packet header portion may have a size of 29 bytes, and the data portion may have a size of 20 bytes.
  • the first interface unit may be implemented as a 10-pin plug that supports all of Serial, USB, and Line using Jack.
  • the medical data management method using a relay device the step of receiving the measurement data measured for the measurement target in the medical measuring device via a cable connected to at least one medical measurement device, Generating transmission data by generating a data frame of a first format for management by the relay device based on the measurement data and converting the data frame of the first format into a data frame of a second format for a medical data management server And transmitting the transmission data to a medical data management server in a wireless communication method, wherein the transmission data includes report data, characteristic information on the report data, and signaling information created based on the measurement data.
  • a medical measuring device such as a blood glucose meter or a blood pressure meter and transmitting the measured data to a remote server or a management center. You can do it.
  • FIG. 1 is a view for explaining the configuration of a data transmission system according to an embodiment of the present invention.
  • FIGS. 2 and 3 are block diagrams illustrating a configuration of a relay device according to various embodiments of the present disclosure.
  • FIG 4 is a view for explaining a configuration of a data receiving plug attachable to the relay device 200 according to an exemplary embodiment.
  • 5 and 6 are diagrams illustrating a data frame format for a relay device according to an embodiment of the present invention.
  • FIG. 7 is a diagram illustrating a data frame format for a measurement data management server according to an exemplary embodiment.
  • FIG. 8 is a flowchart illustrating a method of operating a relay device according to an embodiment of the present invention.
  • FIG. 9 is a sequence diagram illustrating a data transmission method between the medical measurement device 100 and the relay device 200 or 200 ′ according to an embodiment of the present invention.
  • FIG. 10 is a sequence diagram illustrating a data transmission method between the relay device 200 or 200 ′ and the measurement data management server 300 according to an exemplary embodiment.
  • FIG. 1 is a view for explaining the configuration of a data transmission system according to an embodiment of the present invention.
  • a data transmission system includes a medical measurement device 100, a relay device 200, and a measurement data management server 300.
  • the medical measuring device 100 serves to generate measurement data by measuring a medical state of a predetermined measurement target.
  • the medical measurement device 100 may be implemented as a blood glucose meter or a blood pressure meter that measures a user's blood sugar or blood pressure.
  • the medical measurement device 100 may transmit the blood sugar data or the blood pressure data measured for the measurement object to the relay device 200 by a wired or wireless communication method.
  • the wired or wireless communication method may be a communication method supported by the medical measurement device 100.
  • the medical measurement device 100 may transmit measured data measured by a wireless communication module embedded in the relay device 200 using a wireless communication method supported by the device.
  • the medical measurement device 100 may transmit the measurement data measured through the data transmission plug provided in the relay device 200 to the relay device 200 using a wired communication method supported by the device.
  • the relay device 200 may convert the data received from the medical measurement device 100 into a specific data format and transmit the data to the measurement data management server 300.
  • the relay device 200 may transmit blood sugar data or blood pressure data from the medical measurement device 100 to the measurement data management server 300 by a wired or wireless communication method.
  • the relay device 200 may transmit corresponding measurement data to the measurement data management server 300 using a wireless communication module provided therein.
  • a wireless communication module provided therein.
  • CDMA, WCDMA, HSDPA, Wibro, WLAN, or the like may be applied as the wireless communication scheme.
  • the relay device 200 may transmit the corresponding measurement data to the measurement data management server 300 using an internet protocol built therein.
  • the relay device 200 may transmit the measurement data measured through the data transmission plug provided in the measurement data management server 300 to the measurement data management server 300 using a wired communication method supported by the own device. .
  • the measurement data management server 300 may process the measurement data received from the relay device 200 to fit the application.
  • the measurement data management server 300 may provide the processed measurement data to a user through a user interface.
  • FIGS. 2 and 3 are block diagrams illustrating a configuration of a relay device according to various embodiments of the present disclosure.
  • the relay device 200 includes a first interface unit 210, a converter 220, a second interface unit 230, and a controller 240.
  • the relay device 200 may perform a function of receiving measurement data measured by the medical measurement device 100, converting the received data into a specific data format, and transmitting the data to the outside.
  • the first interface unit 210 is connected to at least one or more medical measurement devices (100 of FIG. 1) through a cable, and serves to receive measurement data measured by the medical measurement device with respect to the measurement object.
  • the medical measuring device may be implemented as, for example, a blood glucose meter or a blood pressure meter, and the measurement data may be blood sugar data or blood pressure data measured by the corresponding meter.
  • the first interface unit 210 may receive measurement data from the medical measurement device through a wired communication method or a wireless communication method. Accordingly, the first interface unit 210 may be provided with a data receiving plug for receiving the measurement data in a wired communication method that can be supported by the medical measurement device for transmitting the measurement data. In addition, the first interface unit 210 may include a wireless communication module for receiving measurement data in a wireless communication method that can be supported by a medical measurement device that transmits measurement data.
  • the wired communication method may be a method of connecting by serial, USB (Universal Serial Bus), line (Line), etc.
  • USB Universal Serial Bus
  • Line Line
  • Zigbee Zigbee
  • Bluetooth Bluetooth
  • a method of connecting with Binary CDMA may be applied.
  • the data receiving plug supporting the wired communication method may be implemented for the three types of serial, USB, and Line using Jacks or integration for all of these interfaces depending on the type of wired interface supported by the medical measuring device. have.
  • the conversion unit 220 generates a data frame of a first format for management by the relay device based on the measurement data received through the first interface unit 210 and stores the generated data frame of the first format in the measurement data management server. It converts into a data frame of the second format for (300 in Fig. 1), and functions to generate transmission data.
  • the second interface unit 230 transmits the transmission data generated by the conversion unit 220 to the measurement data management server in a wired / wireless communication manner so that the medical data management server can update the data for the measurement target. .
  • the second interface unit 230 may include a wireless communication module for transmitting the generated transmission data to the measurement data management server using a wireless communication method.
  • a wireless communication method for transmitting the generated transmission data to the measurement data management server using a wireless communication method.
  • CDMA, WCDMA, HSDPA, Wibro, WLAN, or the like may be applied as the wireless communication scheme.
  • the second interface unit 230 may transmit the generated transmission data to the measurement data management server using a wired communication method such as an internet protocol.
  • the controller 240 controls the overall operation of the relay device 200. That is, the controller 240 may control the operating software of the relay device 200.
  • control unit 240 is the first interface unit 210. It may serve to control each function of the converter 220 and the second interface 230.
  • the data frame of the first format for managing the measurement data in the relay device 200 may include transmission data type information, data full length information bytes, byte string full length information, invoke ID information, and selection event. It may include at least one of message type information, remaining selection data length information, object handle information, event information, result report information, result report data information, and measurement data period information.
  • the event information may include at least one of event time information, event type information, and event information length information.
  • the result report information may include at least one of result report request ID information, result report number information, result report data number information, and result report data length information.
  • the result report data information may include nth result report data type information, nth result report data length information, nth result report data numerical information, nth result report data measurement time information, nth result report additional data type information, The n th result report additional data length information, the n th result report additional data measurement time information, and the n th result report data additional information may be included.
  • n may mean the number of times the measurement object performs the measurement through the medical measurement device.
  • the transmission data type information, the data total length information byte, the byte string total length information, the invoke ID information, the selection event message type information, the remaining selection data length information, and the object handle information have a length of 2 bytes. Can be.
  • the measurement data period information may have a length of 8 bytes.
  • the event time information may have a length of 4 bytes
  • the event type information and the event information length information may have a length of 2 bytes.
  • result report request ID information may have a length of 2 bytes.
  • nth result report data type information nth result report data length information, nth result report data numeric information, nth result report additional data type information, nth result report additional data length information, and nth result report data added
  • the information has length information of 2 bytes, and the nth result report data measurement time information and the nth result report additional data measurement time information may have 8 bytes of length information.
  • the data frame of the second format for the measurement data management server may include at least one packet divided into a packet header portion and a data portion.
  • the report data may be generated based on the external medical device 100, and feature information about the report data and signaling information.
  • At least one of a target type, a cradle S / N, a target S / N, an RSSI, and a checksum may be recorded in the packet header part, and at least one of a measurement date, a measurement time, a measured value, and a checksum may be recorded in the data part.
  • the packet header portion may have a size of 29 bytes, and the data portion may have a size of 20 bytes.
  • FIG. 3 is a block diagram showing a configuration of a relay device according to another embodiment of the present invention.
  • the relay device 200 ′ may include a first interface unit 210, a converter 220, a second interface unit 230, a controller 240, and a storage unit ( 250, a display unit 260, and a power supply unit 270.
  • a first interface unit 210 may include a first interface unit 210, a converter 220, a second interface unit 230, a controller 240, and a storage unit ( 250, a display unit 260, and a power supply unit 270.
  • the storage unit 250 is a storage medium for storing various programs required for operating the relay device 200 ′, and may be implemented as a memory, a hard disk drive (HDD), or the like.
  • the storage unit may include a ROM for storing a program for performing an operation of the controller 250, a RAM for temporarily storing data according to an operation of the controller 250, and the like.
  • the electronic device may further include an electrically erasable and programmable ROM (EEROM) for storing various reference data.
  • EEROM electrically erasable and programmable ROM
  • the storage unit 250 may store measurement data received from the medical measurement device 100.
  • the measurement data received from the medical measurement device 100 may be classified according to a measurement date for each measurement object and stored in a lookup table format.
  • the storage unit 250 may convert the measurement data converted into a data frame of a first format for managing data in the relay device and a data frame of a second format for managing data in the measurement data management server. Measurement data can be stored.
  • the display unit 260 may display the presence or absence of transmission of measurement data and various operation states of the relay device 200 under the control of the controller 240.
  • the display unit 260 may include a liquid crystal display, a thin film transistor-liquid crystal display, an organic light-emitting diode, a flexible display, and a three-dimensional display.
  • the display may be implemented as at least one of 3D displays.
  • the display unit 140 may be implemented in the form of a touch screen forming a layer structure with the touch pad.
  • two or more display units 260 may exist according to the implementation form of the relay device 200 ′.
  • the power supply unit 270 may supply power to each functional block of the relay device 200 ′ under the control of the control unit 240.
  • FIG 4 is a view for explaining a configuration of a data receiving plug attachable to the relay device 200 according to an exemplary embodiment.
  • the data receiving plug supporting the wired communication method of the relay device 200 may be implemented in one single method regardless of the type of wired interface supported by the medical measurement device 100.
  • the data receiving plug of the relay device 200 is implemented as a 10-pin plug, it is implemented for integration to support all the serial, USB, and the line using the jack supported by the medical measurement device 100 Can be.
  • the wired interface provided in the relay device 200 is implemented with 10 pins, and each pin has power, ground, Serial + / USB Debug +, Serial- / USB Debug-, ground, USB + / Serial Debug +, and USB. It can be formed as-/ Serial Debug-, Ground, Line, Ground.
  • the relay device 200 integrates and supports the serial port, the USB port, and the jack port.
  • this is only an example. If the medical measurement device 100 supports other interfaces, the interface may be implemented accordingly.
  • 5 and 6 are diagrams illustrating a data frame format for a relay device according to an embodiment of the present invention.
  • the data frame format for managing measurement data in the relay device 200 includes transmission data type information, data full length information bytes, byte string full length information, invoke ID information, and selection event message. It may include at least one of type information, remaining selection data length information, object handle information, event information, result report information, result report data information, and measurement data period information.
  • the event information may include at least one of event time information, event type information, and event information length information.
  • the result report information may include at least one of result report request ID information, result report number information, result report data number information, and result report data length information.
  • the result report data information may include nth result report data type information, nth result report data length information, nth result report data numerical information, nth result report data measurement time information, nth result report additional data type information, The n th result report additional data length information, the n th result report additional data measurement time information, and the n th result report data additional information may be included.
  • the transmission data type information, the data total length information byte, the byte string total length information, the invoke ID information, the selection event message type information, the remaining selection data length information, and the object handle information have a length of 2 bytes. Can be.
  • the measurement data period information may have a length of 8 bytes.
  • the event time information may have a length of 4 bytes
  • the event type information and the event information length information may have a length of 2 bytes.
  • result report request ID information may have a length of 2 bytes.
  • nth result report data type information nth result report data length information, nth result report data numeric information, nth result report additional data type information, nth result report additional data length information, and nth result report data added
  • the information has length information of 2 bytes, and the nth result report data measurement time information and the nth result report additional data measurement time information may have 8 bytes of length information.
  • FIG. 7 is a diagram illustrating a data frame format for a measurement data management server according to an exemplary embodiment.
  • the data frame of the second format for the measurement data management server may include at least one packet divided into a packet header portion and a data portion.
  • the packet header portion may have a size of 29 bytes, and the data portion may have a size of 20 bytes.
  • FIG. 8 is a flowchart illustrating a method of operating a relay device according to an embodiment of the present invention.
  • a user ID (or social security number) is input through a user input unit (S610), and medical care data is received (S620).
  • the received data frame is analyzed (S630). Specifically, the received data frame may be parsed and processed into meaningful data.
  • step S640 If the user is registered as a result of the authentication in step S640 (S640: Y), the data is updated in a corresponding field for each user ID (S650).
  • step S640 if the user is not registered as a result of the authentication in step S640 (S640: N), an authentication failure message may be received (S670).
  • FIG. 9 is a sequence diagram illustrating a data transmission method between the medical measurement device 100 and the relay device 200 or 200 ′ according to an embodiment of the present invention.
  • the medical measurement device 100 transmits an association request message to the relay devices 200 and 200 ′ (S705), and the relay devices 200 and 200 ′ transmit the medical measurement device 100.
  • an association response message is transmitted.
  • the medical measuring device 100 transmits the configuration information (dev-config-id, config-object-list) to the relay device 200 or 200 '(S715), and the relay device 200 or 200' is medical.
  • the configuration information transmission response (accep-config) is transmitted to the measurement device 100 (S720), and MDS attribute information is requested (S725).
  • the medical measurement device 100 transmits an MDS attribute information response to the relay device 200 or 200 ′ (S730), and reports a measurement result event (event-info) (S735).
  • the relay devices 200 and 200 ′ transmit the measurement result event response to the medical measurement device 100 (S740).
  • the medical measurement device 100 transmits an association release request message to the relay devices 200 and 200 '(S745), and the relay device 200 and 200' transmits the medical measurement device 100 to the relay device 200 and 200 '.
  • an association release response message is transmitted.
  • FIG. 10 is a sequence diagram illustrating a data transmission method between the relay device 200 or 200 ′ and the medical data management server 300 according to an exemplary embodiment.
  • the relay device 200 makes a connection request (S810) to the measurement data management server 300 and transmits a head packet (S820).
  • the measurement data management server 300 transmits an "OK" message when the head packet is normally received, and a "NO” message when a check sum error occurs.
  • the relay device 200 or 200 ′ When the relay device 200 or 200 ′ receives the “OK” message, the relay device 200 or 200 ′ transmits a data packet (S840).
  • the measurement data management server 300 may transmit the number of received data packets to the relay device 200 or 200 ′ (S850).
  • the relay device 200 or 200 ′ may transmit a “Close” message to the measurement data management server 300.
  • the relay device according to an embodiment of the present invention can be implemented by various methods.
  • the measurement data measured for the measurement object is received by the medical measurement device through a cable connected to at least one medical measurement device.
  • a data frame of a first format for management by the relay device is generated based on the measurement data, and the data frame of the first format is converted into a data frame of a second format for the medical data management server to transmit the data. Can be generated.
  • RAM random access memory
  • ROM read only memory
  • EPROM erasable programmable ROM
  • EPROM electronically erasable and programmable ROM
  • registers hard disks, removable disks, memory cards, USB It may be stored in various types of recording media readable by the terminal, such as a memory, a CD-ROM, and the like.
  • the program can be installed so that the above-described operating method can be executed in the apparatus to which such recording medium is connected or mounted.
  • the data frame of the first format converted by the relay device 200 includes information having a specific length, but this is only an example. That is, the length of the information included in the data frame of the first format may be changed according to the measurement object and the measurement data.
  • the packet header portion constituting the data frame of the second format converted by the relay device 200 has a size of 29 bytes and the data portion has a size of 20 bytes.
  • this is only an example, and their data size may also be changed according to the measurement target and the measurement data.
  • a medical measuring device such as a blood glucose meter or a blood pressure meter and transmitting the measurement data to a remote server or a rights center. You can do it.

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Abstract

La présente invention concerne un dispositif de relais. Le dispositif de relais comprend : une première unité d'interface qui est reliée à au moins un dispositif de mesure médical au moyen d'un câble pour recevoir les données mesurées à partir du dispositif de mesure médical qui mesure une cible de mesure ; une unité de conversion qui génère une trame de données d'un premier type de format devant être gérée par l'intermédiaire du dispositif de relais sur la base des données mesurées, et génère des données de transmission en convertissant la trame de données d'un premier type de format en une trame de données d'un second type de format pour un serveur de gestion de données mesurées ; et une seconde unité d'interface qui transmet les données de transmission au serveur de gestion de données mesurées au moyen d'une communication filaire/sans fil de manière à permettre au serveur de données de gestion mesurées de mettre à jour les données pour la cible de mesure, les données de transmission pouvant comporter les données de rapport composées sur la base des données mesurées, des informations de propriétés pour les données de rapport, et des informations de signalisation.
PCT/KR2010/009628 2010-12-17 2010-12-31 Dispositif de relais et procédé de gestion de données mesurées utilisant ce dernier WO2012081764A1 (fr)

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CN103593963B (zh) * 2013-11-17 2016-08-17 三峡大学 一种锚杆或锚索应力测量数据远程传输装置
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JP2005333269A (ja) * 2004-05-18 2005-12-02 Sharp Corp 測定データ通信装置、健康情報通信装置、情報取得装置、健康情報収集装置、測定データ通信システム、測定データ通信装置の制御方法、情報取得装置の制御方法、測定データ通信装置の制御プログラム、および記録媒体
KR200371531Y1 (ko) * 2004-07-05 2005-01-03 주식회사 유메스 유에스비를 이용한 의료용 멀티모듈 인터페이스 및저장장치
JP2008033834A (ja) * 2006-07-31 2008-02-14 Sharp Corp 生体情報測定装置、管理装置、および生体情報通信システム

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