WO2002003349A1 - Reseau modulaire et procede de traitement de donnees - Google Patents

Reseau modulaire et procede de traitement de donnees Download PDF

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Publication number
WO2002003349A1
WO2002003349A1 PCT/EP2001/007715 EP0107715W WO0203349A1 WO 2002003349 A1 WO2002003349 A1 WO 2002003349A1 EP 0107715 W EP0107715 W EP 0107715W WO 0203349 A1 WO0203349 A1 WO 0203349A1
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WO
WIPO (PCT)
Prior art keywords
module
data
network
modules
base
Prior art date
Application number
PCT/EP2001/007715
Other languages
German (de)
English (en)
Inventor
Daniel Groos
Original Assignee
Daniel Groos
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 Daniel Groos filed Critical Daniel Groos
Priority to AU2001279713A priority Critical patent/AU2001279713A1/en
Publication of WO2002003349A1 publication Critical patent/WO2002003349A1/fr

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Classifications

    • 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

Definitions

  • the present invention relates to a module network and a method for processing data according to the preamble of claim 1 and the preamble of claim 6.
  • the invention further relates to an expandable module network according to the preamble of claim 7, a method for expanding a module network according to the preamble of claim 9 and a module according to the preamble of claim 10.
  • data containing network internal data for example data for identifying individual modules or processing instructions for a data processing device of a module taken.
  • system data data for identifying individual modules or processing instructions for a data processing device of a module taken.
  • data are generally referred to as "system data”.
  • data is used in general, this use can encompass all the types of data mentioned and, as can then be seen from the respective context, relate to a specific type of data.
  • Integrated devices have also been proposed in this connection, which combine, for example, a bicycle tachometer and an altimeter.
  • a bicycle tachometer and an altimeter.
  • the functionality of such a device is limited to these two functions, an expansion of the functionality to include a further function is not possible.
  • DE 197 36 513 A1 discloses a method for configuring a measuring arrangement for physical, in particular thermal conditions on a measuring section with at least one locally distributed sensor.
  • the measuring arrangement consists of programmable modules with the minimum properties of capturing, editing, saving, displaying and reporting the measurement data.
  • the method is characterized in that the modules are initialized with parameter sets with which processing steps of the individual modules are functionally assigned to one another.
  • a patient monitoring device with a communication network is known from WO 94/13 198.
  • the communi- cation network collects and displays data received from a patient.
  • the device comprises a portable monitor which is connected to a number of data acquisition modules which in turn are coupled to sensors.
  • the monitor is connected to a docking station and is able to feed data into the network via the docking station.
  • the object of the invention is to create a system for processing data with which any or any number of data that can be expanded can be processed simultaneously and in a flexible manner to provide desired measured variables.
  • a module network for processing, in particular recording and / or monitoring and / or evaluating data that can be operated in a simple and flexible manner, in particular expandable is now provided.
  • the network according to the invention is characterized in that, in contrast to conventional systems, it can be expanded or supplemented in any way.
  • a health monitoring hereinafter also referred to as a health monitor
  • the module network according to the invention is characterized in that it is particularly "future-proof" since measurement variables that have not yet been considered can be easily integrated into an already existing system. It should be mentioned again that the reference to sports applications or fitness applications is given purely by way of example. Regarding terminology: In the following, the term “module” is used in such a way that it can include both the combination of a basic module with a function module and a basic module without an assigned function module.
  • Transmitter and / or receiver and / or transceiver and / or cable are expediently provided as communication modules.
  • communication modules can be used to provide a wireless or wired connection between the individual modules of the network.
  • display units in particular LCD monitors and / or keyboards and / or sensors and / or interfaces in external systems as function modules.
  • base modules can be assigned the corresponding functions in the desired manner.
  • display units can be used here, for example an acoustic display or speech display.
  • a first 's Bä ⁇ fismodul only with a sensor and a second base module with an LCD monitor.
  • data processing devices of the first and / or second base module can be displayed to the user on the LCD monitor.
  • the data or program memory of at least one first basic module is used to store data or programs that can be processed by a second basic module.
  • a central control function within the network it is possible, for example, to assign a central control function within the network to the second base module, since the at least one first base module initially stores data or processing instructions (system data), with this system data being transferred to the second base module if necessary.
  • the second base module is part of a module network, which is used to process or display a number of measured variables
  • a further sensor module ie here the combination of a further "first" base module with a sensor
  • a module network for processing at least one measurement variable that can be assigned to at least one person, in particular a user of a sports device or a medical device, a first module as a sensor unit for recording raw or sensor data on which the measurement variables are based, and a second module as a receiving unit for to form at least partial evaluation of the recorded data to obtain the at least one measured variable, a device for storing system data which can be evaluated by the second module and which can be assigned to the first module being provided in the first module. It is provided here that system data that can be evaluated by the second module (data for identifying the first module, processing instructions for the second module) are initially stored in the first module.
  • the data that can be evaluated by the second module which can include, for example, data for controlling the second module with regard to cooperation with the first module, can be stored on the side of the first module and can only be transferred to the second module if necessary.
  • second module central receiving unit
  • the communication or data transfer between the individual modules takes place wirelessly.
  • a wireless transmission avoids the need for cabling, which can hinder the freedom of movement of a user or patient, for example.
  • the first module has a transmitter and / or transceiver as a communication module and at least one sensor as a function module, the second module having a receiver and / or a transceiver as a communication module and an LCD monitor and / or a as a function module Keyboard.
  • the second module has a receiver and / or a transceiver as a communication module and an LCD monitor and / or a as a function module Keyboard.
  • At least one module expediently has a removable memory chip or a removable memory card and / or an updatable memory chip or an updatable memory card.
  • SIMM card An example of this is a SIMM card.
  • a removable storage device would make it possible, for example, to manage the data of a number of users in a simple manner.
  • his previous performance data could easily be transferred to a new module, which is also expediently designed with a removable or arbitrarily usable storage device ,
  • At least one module is designed in such a way that the received data, in particular the sensor data or processing instructions, can be permanently stored. Flash memory, EEPROMs and buffered RAM memory are particularly suitable as building blocks for this. Such programmability proves to be advantageous in particular in connection with the storage of software transferred from a first module to a second module.
  • permanent storability is understood to mean that a memory content stored in this way remains stored even after being decoupled from a corresponding current or voltage supply.
  • dynamic storability is understood to mean “storage” which, when disconnected from a power supply supply, for example a battery power supply, does not remain stored.
  • a module network Due to the permanent storability, it is possible, for example, to change the processing instructions during normal operation of a module network according to the invention, for example in the sense of a redistribution between the individual modules.
  • a module detects that its power supply (for example battery power supply) is weaker or falls below a certain level, it can at least partially transfer the processing instructions it has carried out or processed to another module. It is thus possible to optimize the power consumption of the individual modules with an individual power supply for the individual modules.
  • a programmability or reprogrammability of a module or a module network can be carried out during normal operation, for example as part of the determination and processing of performance data of an athlete.
  • This reprogrammability enables, for example, a distribution of the data processing and / or data storage occurring within the module network to the data processing devices or memory of the respective modules or base modules that is adapted to the respective computing and memory loads of the individual modules.
  • distribution and / or data storage can also be carried out as a function of specific tasks that the module network has to master.
  • This Transmission can be carried out automatically when the module network or modules recognize that a specific module configuration is present.
  • a module network according to the invention which has a certain number of modules or base modules, can be expanded in any manner with further base modules or modules according to a further aspect of the invention.
  • This aspect of the invention is realized in that the data processing device and / or the data and / or program memory of the at least one further base module with which an existing module network is to be expanded can be programmed in such a way that the at least one further base module for expanding the module network contains usable and / or necessary data and / or programs, in particular data and / or programs that can be processed by at least one further module of the existing module network, means for transmitting the data that can be used and / or required to expand the module network from the at least one further basic module at least one module of the existing module network is provided.
  • an existing module network with a further module to bring this into communication connection with the respective modules of the existing network.
  • the further module is then able to transfer usable or necessary data or programs (for example for system configuration) to the modules of the existing module network for its integration into the existing module network.
  • the further module can also contain update data for the further modules, as a result of which an existing module network can be updated in a simple manner, to a certain extent as a side effect, when an additional module is integrated. Since the transmission of the data or programs from the further module on the modules of the existing network, a manual update of the modules of the existing network is not necessary.
  • the module has means for its assignment to a defined module network and / or means for determining further modules available within the defined module network.
  • a number of modules, which are at least partially designed with sensor devices, are assigned to a user of a sports device or a medical device.
  • the affiliation to this module network can be defined, for example, by means of appropriate software coding. If this existing module network is to be expanded by a further module, for example a module to which a further sensor function is assigned, the modules of the existing module network are brought into communication connection (wired or wireless) with the module to be added.
  • the respective identification codes or codes of the modules of the existing module network are transmitted to the further module, so that the latter can recognize the identification code of the modules and generate a corresponding identification code for itself.
  • This measure makes it possible to prevent modules from influencing different networks, which are assigned to different people, for example.
  • FIG. 1 shows a schematic diagram for the construction of the modules used in the module network according to the invention
  • FIG. 2 shows a block diagram for the schematic representation of essential components of a preferred embodiment of the module network according to the invention.
  • FIG. 1 shows a schematic diagram to explain the module structure of the modules used in the module network according to the invention.
  • Each module initially has a base module, designated 100, which has a communication module 101 for internal data transfer and a data processing device 102 with a dynamic and / or permanent data and program memory 103.
  • a transmitter, a receiver, a transceiver or transceiver or a cable are particularly suitable as communication modules.
  • each module used in the module network according to the invention has a base module.
  • a basic module To assign special functions within the module network, it is possible to supplement a basic module with at least one function block 105.
  • radio tion modules may be mentioned in particular an LCD monitor, a keyboard, a sensor, or an interface in an external system.
  • a first base module expediently has at least one transmitter or cable as a communication module, and at least one sensor as a function module.
  • the arithmetic processing of the recorded sensor data can be distributed as desired between the two modules, each of which is designed with a data processing device 102.
  • a first module which has at least one sensor as a function module and at least one transmitter as a communication module, is referred to below as a sensor unit
  • a second module which has at least one LCD monitor as a function module and at least one receiver as a communication module, is referred to as a receiving unit becomes.
  • the embodiment of the module network according to the invention shown in FIG. 2 has at least one sensor unit, which is denoted overall by 1, and a receiving unit, which is denoted overall by 4.
  • the sensor unit has a sensor element 1 a, a data and program memory 1 b, a data processing device, in particular a controller 1 c and a transmitting and / or receiving device, hereinafter referred to as transceiver 1d. It is conceivable to use a pure transmitter instead of the transceiver ld, as will be explained further below.
  • Another sensor unit is denoted overall by 2, and, analogously to sensor unit 1, has a sensor element 2a, a program memory 2b, a data processing device, in particular a controller 2c and a transceiver ld.
  • the receiving unit 4 has a transceiver 5, wherein a pure receiver can be used instead of the transceiver 5 in certain embodiments.
  • the sensor unit 1 and the receiving unit 4 are able to communicate with one another wirelessly, as is illustrated by means of the connecting line 10, which is shown partly in broken lines.
  • the connecting line 10 which is shown partly in broken lines.
  • Sensor unit 2 and receiving unit 4 also communicate wirelessly with one another, as illustrated by the dashed connecting line 10 ′.
  • the transceivers 1d and 2d of the sensor units 1 and 2 are also able to communicate with one another wirelessly, as illustrated by the dashed line 10 ′′.
  • the three modules shown are capable of, depending on requirements, for example depending on the specific tasks to be solved by the module network to exchange stresses, data functions and programs with one another in the most efficient way possible.
  • the transceiver 5 is connected to a controller (data processing device) 6 via data lines 11 and 12, respectively.
  • the data line 11 serves for the transmission of data received from the transceiver 5 to the controller 6, while a switch-on or switch-off command can be given by the controller 6 to the transceiver 5 via the data line 12.
  • the controller 6 is preferably designed as a flash controller and fulfills i.a. the functions of providing a communication protocol between individual components of the system and the control of the transceiver 5.
  • the controller can be operated using buttons 9, preferably menu-driven.
  • it is used to send evaluated or processed data to a display controller or monitor controller 7. It is of course possible to integrate the controller 6 and the controller 7 or to design them as a uniform data processing device.
  • the separate or integrated controllers provide an updatable processing unit with dynamic or permanent data or program memory.
  • a data and program memory ⁇ a is also provided, which is operatively connected to the data processing device.
  • the display controller (or the integrated data processing device 6, 7) in turn controls an LCD 8, and also carries out decoding of the data obtained and, if appropriate, multiplexing.
  • a multiplexing of the data received by the display controller 7 proves to be expedient in particular when a plurality of sensor units 1 which cooperate with the transceiver 5 are provided.
  • Communication " on controller 6 and display controller 7 via a serial unidirectional tional protocol spi proves to be advantageous.
  • the controllers 6, 7 together with the transceiver 5 constitute a basic module, the LCD 8 and the keyboard 9 forming function modules, resulting in a module as a whole.
  • the controller 6 as a flash controller, it should be noted that an operating voltage of 2.7 to 3.6 V is expedient to ensure trouble-free programming / deletion of a corresponding flash memory, while an operating voltage of 1 during normal operation , 8 to 3.6 V is sufficient.
  • a flash memory can be reprogrammed even when a battery voltage of 3 volts is used, so that no mains connection is necessary if such a flash controller or flash memory is provided.
  • the controller 6 also provides a real time clock (real time clock) even when the LCD 8 is turned off.
  • the LCD 8, which is controlled by the monitor controller 7, has a dot matrix area designed in accordance with the specifications or requirements of the system.
  • the system shown in the figure will now be further explained with the aid of a concrete example for further illustration: It is assumed that the system initially has only one sensor unit 1, for example a sensor unit with a bicycle tachometer function, and a receiving unit 4.
  • the sensor unit 1 and the receiving unit 4 It is first necessary for the sensor unit 1 and the receiving unit 4 to recognize that they are communicating with one another in order to provide a system according to the invention should.
  • a corresponding identification code is therefore first transmitted, for example, between the transceivers 1d and 5.
  • the sensor unit 1 transmits the software necessary for evaluating the data it sends to the receiving unit 4, which permanently stores the received data in the memory 6a of the controller 6.
  • the receiving unit 4 After the necessary transmission of a software necessary or suitable for the operation of the sensor unit 1 to the controller 6, it is possible to display bicycle tachometer functions, such as speed or distance traveled, on the LCD screen 8.
  • the operational readiness of the individual components is first determined.
  • a data transmission scheme is agreed which optimizes the transmission parameters and, for example, also the energy consumption of the system.
  • the system is expediently battery-operated (when using, for example, 3 volt button cells), the service life of the battery used can be effectively extended.
  • the flexibility of the system according to the invention comes into play, for example, when the user wants to integrate the further sensor unit 2 into the system at a later point in time, for example in a continuation of the above example a bicycle cadence sensor or a heart rate monitor.
  • the second sensor unit 2 (cadence meter) transmits the software required for evaluating its signals to the receiving unit 4.
  • This software is also advantageously stored in the memory area 6a of the controller 6.
  • the receiving unit 4 can now, depending on the need, selectively or simultaneously, access the software of both sensor units 1 and interpret and display their data. Sensor units 1 and 2 can also communicate directly with one another.
  • the operational readiness of the individual components is first determined again.
  • the data transfer is optimized by means of the controller 6.
  • the first sensor unit 1 (bicycle tachometer) and the second sensor unit 2 z. B. (cadence counter) both communicate with the receiving unit 4 and with each other.
  • the first sensor unit 1 (bicycle tachometer) and the second sensor unit 2 z. B. (cadence counter) both communicate with the receiving unit 4 and with each other.
  • a PC interface can be used, for example, to store data from individual sensor units or cumulative data or make processed information of the receiving unit 4 available in a PC.
  • the PC interface can also be used to reprogram the software of the individual sensors in order, for example, to integrate an updated or improved software version into the system without incorporating a new sensor unit (update function).
  • GPS module can be used to implement navigation applications as well as applications relating to distance, speed and altitude measurement. Other data can also be recorded and evaluated with such a GPS module.
  • GSM Global System for Mobile communications
  • controller functions in one or a number of the sensor units, so that the receiving unit 4 only has to be carried out with a display function.
  • the receiving unit 4 it is conceivable to distribute the "intelligence" of the system to the individual components or modules in any way.
  • sensor units for determining a heart rate within the framework of a module network according to the invention or pulse rate, a cadence, a temperature, a humidity, an air pressure etc. conceivable.
  • a lap counter which is conceivable, for example, for athletics applications, in a network according to the invention is also possible.
  • the system presented according to the invention can be used in particular in connection with sports which are not yet known or have not yet been considered by a user, for example trend sports, since appropriate sensors can be developed or purchased for new sports if required, which are combined with an already existing one System can be used.
  • modules can be combined in one housing. It is also conceivable, for example, to combine several base modules in one housing and to place the function modules, for example sensors, assigned to the respective base modules outside the common housing.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Molecular Biology (AREA)
  • Biophysics (AREA)
  • Pathology (AREA)
  • Biomedical Technology (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Medical Informatics (AREA)
  • Physics & Mathematics (AREA)
  • Surgery (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Arrangements For Transmission Of Measured Signals (AREA)

Abstract

Réseau modulaire destiné au traitement, en particulier à la détection, et/ou au contrôle et/ou à l'évaluation d'au moins une grandeur à mesurer associée à au moins une personne, notamment un utilisateur d'un appareil de sport ou d'un appareil médical,, comprenant au moins deux modules de base présentant chacun une unité de communication pour le transfert de données à l'intérieur du réseau, et un dispositif de traitement de données doté d'une mémoire dynamique ou permanente de données et/ou à programme, au moins un module de base étant connecté à une unité fonctionnelle au moyen de laquelle au moins une fonction est associée au module de base, dans le cadre du réseau modulaire, caractérisé en ce qu'il comporte des moyens destinés à la répartition, au choix, ou automatique, en particulier modifiable, d'un traitement de données et/ou d'une mémorisation de données à effectuer dans le cadre du réseau modulaire, cette répartition se faisant sur les dispositifs de traitement de données, cas échéant, les mémoires de données et/ou de programmation de chaque module de base.
PCT/EP2001/007715 2000-07-06 2001-07-05 Reseau modulaire et procede de traitement de donnees WO2002003349A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU2001279713A AU2001279713A1 (en) 2000-07-06 2001-07-05 Module network and method for processing data

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE2000132943 DE10032943C2 (de) 2000-07-06 2000-07-06 Modulnetzwerk
DE10032943.8 2000-07-06

Publications (1)

Publication Number Publication Date
WO2002003349A1 true WO2002003349A1 (fr) 2002-01-10

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DE (1) DE10032943C2 (fr)
WO (1) WO2002003349A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102008014076A1 (de) * 2008-03-13 2009-09-17 Pacific Hospital Supply Co., Ltd. Integrierte Vorrichtung für ein medizinisches Alarmsystem
WO2011150916A3 (fr) * 2010-05-31 2012-01-26 Seca Ag Équipement d'analyse modulaire

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1987005727A1 (fr) * 1986-03-18 1987-09-24 Physio Decisions, Inc. Systeme d'information pour exerciseur
EP0710465A1 (fr) * 1994-10-20 1996-05-08 Hewlett-Packard Company ContrÔle d'un système de surveillance d'un patient
WO1997040745A1 (fr) * 1996-04-30 1997-11-06 Caballe Jean Louis Systeme de collecte et de traitement d'informations biometriques
US5687717A (en) * 1996-08-06 1997-11-18 Tremont Medical, Inc. Patient monitoring system with chassis mounted or remotely operable modules and portable computer
EP0866316A1 (fr) * 1997-03-18 1998-09-23 Endevco Corporation Système capteur intelligent avec bus de réseau
US6002996A (en) * 1997-11-26 1999-12-14 The Johns Hopkins University Networked sensor system

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5375604A (en) * 1992-12-11 1994-12-27 Siemens Medical Electronics, Inc. Transportable modular patient monitor
SE9402683L (sv) * 1994-08-11 1995-10-09 Kvaser Consultant Ab Förfarande och anordning vid modul anslutbar till seriellt och digitalt nätverksystem
DE19736513A1 (de) * 1997-08-22 1999-03-11 Felten & Guilleaume Energie Verfahren und Anordnung zur Konfigurierung einer Meßanordnung

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1987005727A1 (fr) * 1986-03-18 1987-09-24 Physio Decisions, Inc. Systeme d'information pour exerciseur
EP0710465A1 (fr) * 1994-10-20 1996-05-08 Hewlett-Packard Company ContrÔle d'un système de surveillance d'un patient
WO1997040745A1 (fr) * 1996-04-30 1997-11-06 Caballe Jean Louis Systeme de collecte et de traitement d'informations biometriques
US5687717A (en) * 1996-08-06 1997-11-18 Tremont Medical, Inc. Patient monitoring system with chassis mounted or remotely operable modules and portable computer
EP0866316A1 (fr) * 1997-03-18 1998-09-23 Endevco Corporation Système capteur intelligent avec bus de réseau
US6002996A (en) * 1997-11-26 1999-12-14 The Johns Hopkins University Networked sensor system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102008014076A1 (de) * 2008-03-13 2009-09-17 Pacific Hospital Supply Co., Ltd. Integrierte Vorrichtung für ein medizinisches Alarmsystem
WO2011150916A3 (fr) * 2010-05-31 2012-01-26 Seca Ag Équipement d'analyse modulaire
CN103298395A (zh) * 2010-05-31 2013-09-11 塞卡股份公司 用于模块化分析处理的装置

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Publication number Publication date
DE10032943A1 (de) 2002-04-25
DE10032943C2 (de) 2003-11-20
AU2001279713A1 (en) 2002-01-14

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