WO2002019045A2 - Verfahren und vorrichtung zur überwachung einer maschine - Google Patents
Verfahren und vorrichtung zur überwachung einer maschine Download PDFInfo
- Publication number
- WO2002019045A2 WO2002019045A2 PCT/DE2001/003142 DE0103142W WO0219045A2 WO 2002019045 A2 WO2002019045 A2 WO 2002019045A2 DE 0103142 W DE0103142 W DE 0103142W WO 0219045 A2 WO0219045 A2 WO 0219045A2
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- machine parts
- machine
- controlled
- current
- pole
- Prior art date
Links
Classifications
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B19/00—Programme-control systems
- G05B19/02—Programme-control systems electric
- G05B19/04—Programme control other than numerical control, i.e. in sequence controllers or logic controllers
- G05B19/042—Programme control other than numerical control, i.e. in sequence controllers or logic controllers using digital processors
- G05B19/0428—Safety, monitoring
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B19/00—Programme-control systems
- G05B19/02—Programme-control systems electric
- G05B19/04—Programme control other than numerical control, i.e. in sequence controllers or logic controllers
- G05B19/042—Programme control other than numerical control, i.e. in sequence controllers or logic controllers using digital processors
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B2219/00—Program-control systems
- G05B2219/20—Pc systems
- G05B2219/21—Pc I-O input output
- G05B2219/21006—Detect position switches, connect resistances, analog value gives position
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B2219/00—Program-control systems
- G05B2219/20—Pc systems
- G05B2219/21—Pc I-O input output
- G05B2219/21008—Read in analog values by microprocessor, potentiometer, resistor taps
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B2219/00—Program-control systems
- G05B2219/20—Pc systems
- G05B2219/21—Pc I-O input output
- G05B2219/21166—Output state, over resistance, coupled back to input to monitor output
-
- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P90/00—Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
- Y02P90/02—Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]
Definitions
- the invention relates to a method and a device for monitoring the movements of moving machine parts of a machine controlled by means of a control program.
- machines In many industrial areas, machines are used which are controlled by a program that is run in a controller of a programmable logic controller.
- a control program of this type specifies which actions are to be carried out by the machine at what time in the program run.
- the controller transmits commands to the actuators of the machine parts, which, for example, trigger a movement of the respective movable machine part at a specific point in time.
- Another task of the controller is to monitor the actions of the machine parts, in particular movements thereof, which it triggers by means of commands, in order to determine whether the actions of the machine parts provided in the program sequence have actually taken place.
- every action of a machine part actuates, for example, a feedback contact, the status of which is read in and further processed by the controller.
- a closed contact can mean, for example, "Action carried out”.
- each action to be performed by the machine parts is assigned a feedback to the controller, which is triggered by a separate feedback contact. This means that the controller must be trained to process at least as many responses as there are feedback contacts. This number can be considerable for a complex machine and the requirements for the input signal capacity of the controller are correspondingly high in this case.
- the invention is therefore based on the object of specifying a method and a device for monitoring the movements of movable machine parts of a machine controlled by means of a control program, which require a particularly low technical outlay.
- the method of the type mentioned initially consists of the following steps:
- the advantage of the above-mentioned method is in particular that it is possible to determine whether an error has occurred or not simply by comparing the current numbers of the controlled and the moving machine parts.
- the fault location can be limited to precisely those machine parts currently controlled by the control program. If one assumes that only a few machine parts of the machine are controlled and moved at the same time, a possible fault location is limited to these few machine parts that are controlled or moved at the same time.
- the controller simply inputs the number of machine parts currently in motion as the input signal. hold and compare with the number of machine parts currently controlled by him.
- a movement of a movable machine part actuates at least one electrical contact assigned to the respective machine part and the number of moving machine parts is determined from the actuations of the switch contacts.
- a two-pole connection is formed from one of the switch contacts and a resistor, the two-pole connection is made, and the current number of moving machine parts is determined from the current total resistance of the connected two-position connection.
- Each actuation of a switch contact changes the total resistance of the interconnected two-pole. This means that the current value of the total resistance of the interconnected bipoles is a measure of how many machine parts are currently in motion.
- the invention therefore leads to a device for monitoring the movements of moving machine parts of a machine controlled by means of a control program.
- a two-pole connection is formed from one of the switch contacts and a resistor, the two-pole connection is connected, and the current number of machine parts is determined from the current total resistance of the connected two-terminal connection.
- FIG. 1 shows a machine connected to a controller with movable machine parts which change the total resistance of a measuring circuit as a result of their movements
- FIG. 2 shows a machine in which the movable machine parts are designed as control armatures and the electrical switching contacts are designed as stop plates
- FIG. 3 shows the interconnection of two-pole connections formed from an electrical switching contact and an associated resistor
- the machine 1 according to FIG. 1 has a plurality of movable machine parts 3, 5, 7, ... n.
- An electrical switch contact S3, S5, S7, ... Sn is assigned to each movable machine part.
- a movement of a movable machine part 3, 5, 7, ... n actuates an electrical switch contact S3, S5, S7, ... Sn
- a two-pole Z is formed from an electrical switch contact and a resistor R.
- the two-pole Z are connected in parallel and connected to a voltage source 20.
- This measuring circuit formed in this way there is also a current measuring device I and a converter 22.
- the machine 1 is connected via connections 13 to a controller 10, which contains a control program 12 and is connected to a 7-display device 15. During the operation of the machine, the controller 10 continuously identifies the moving machine parts currently controlled by the control program.
- the number of moving machine parts is determined by the current in the measuring circuit, which consists of the parallel two-pole Z and the voltage source 20, through the
- Current measuring device I is measured and converted in converter 22 into a current measured value 25 which can be processed by the controller and which the controller reads.
- the current value of the current measured value 25 is a measure of how many machine parts are currently in motion.
- the current measured value of the current measured value 25 can only assume one of a finite number of discrete values, which are determined in each case by the current resistance values of the two-terminal poles Z connected to the measuring circuit.
- the controller 10 compares the number of moving machine parts that are currently being controlled and the number of moving machine parts that are determined by the current value of the current measured value 25. If these current numbers differ from one another, an error message and the currently identified controlled machine parts are output as possible sources of error on the display device 15.
- FIG. 2 shows an electrical machine which is designed as a circular knitting machine.
- the selection apparatus for selecting the needles is controlled by control anchors 30, which display rail parts, controlled.
- Each control armature 30 has two stop plates 35 and 37, respectively.
- the bearing shaft 32 of each control armature 30 is contacted, for example, by means of a sliding contact 33.
- Each sliding contact 33 is connected to a measuring device 40 via a resistor R via a connecting line 45.
- the 7 ⁇ nscherbleche 35, the stop will be 'detected by a control armature 30 are connected via a connecting line 47 with each other and connected to a voltage source 20th
- a controller 10 contains the control program for the circular knitting machine and is connected to the measuring device 40 via a connecting line 49.
- the control of the control armature . 30 by the controller 10 and the control means of the control armature are not shown in FIG. 2.
- a control armature 30 strikes an electrically contacted 7 mm stop plate 35, a current flows from the voltage source 20 via the measuring device 40 via the resistor R assigned to the control armature 30 in question through the connecting line 45, which current flows through the relevant sliding contact 33 to the the relevant control armature 30 is transmitted and from there flows back to the voltage source 20 via the connecting stop 7 in question 35 via the connecting line 47.
- the size of the current 50 in the measuring circuit described above is determined by how many control armatures 30 strike a contacted stop plate 35 at the same time and thus change the total resistance in the measuring circuit by adding or removing a parallel resistance R.
- the current 50 in the measuring circuit can therefore assume n + 1 different discrete values in every operating situation of the circular knitting machine. From a current value of the current 50 in the measuring circuit, it is thus possible to unambiguously strike the number of currently contacting a stop plate 35. the control anchor 30 can be determined.
- the value of the current 50 in the measuring circuit is converted into a value that can be processed by the controller 10 and transmitted to the controller 10 via the connecting line 49.
- the controller 10 identifies the control armatures 30 currently being driven on the basis of the control program running in it and determines their / number. The controller 10 compares this number of currently actuated control armatures with the number of currently moving control armatures, which is determined by the current value of the current 50 in the measuring circuit. If the two numbers differ from one another, the controller 10 outputs a fault message on a T-display device, not shown, and the identified currently controlled control armatures as possible sources of error.
- the number of possible sources of error can be reduced, for example, by using several of the above. Measuring circuits and assigns one measuring circuit to a group - for example a row - of control anchors.
- the possible sources of error are thus limited to the control anchors within this group of control anchors which are currently controlled by the controller 10.
- FIG. 3 shows the interconnection of two-pole Z to a measuring circuit.
- Each two-pole Z is formed from the parallel connection of an electrical switching contact S1, S2, S3, ... Sn and an electrical resistor R.
- the individual two-pole Z are connected together in a series connection.
- Each actuation of an electrical switching contact S1, S2, S3, ... Sn by a respectively assigned machine part changes the total resistance of the series connection from the individual two-pole Z.
- the current which is from the Voltage source 20 is supplied via the series resistor Rv to the interconnection of the two-pole Z, depending on how many of the electrical switch contacts S1, S2, S3, ... Sn are actuated. This current is registered by the current measuring device I and is therefore a measure of the number of machine parts currently in motion.
- the electrical switching contacts Sl, S2, S3, ... Sn can be designed either as opening or as closing contacts.
- each two-pole Z consists of the interconnection of an electrical switch contact, which is assigned to a movable machine part, and a resistor R.
- a current value of the total resistance Rzz of the two-pole ZZ is a measure of how many moving machine parts are currently moved.
- bipolar ZZ In addition to the interconnection of the single bipoles Z to form a bipolar ZZ, a different type of interconnection of the bipoles Z is also conceivable. For example, two-port or four-port or even general multi-port can be formed from the single two-pole Z. A current value of the resistance between two connections of such a multi-gate is then a measure of how many moving machine parts are currently moved. The interconnection of two-pole Z to a multi-port is not shown in FIG 4.
Landscapes
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Engineering & Computer Science (AREA)
- Automation & Control Theory (AREA)
- Programmable Controllers (AREA)
- Testing And Monitoring For Control Systems (AREA)
- Measurement Of Resistance Or Impedance (AREA)
- Control Of Electric Motors In General (AREA)
- General Factory Administration (AREA)
Abstract
Description
Claims
Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2002523103A JP2004507828A (ja) | 2000-08-28 | 2001-08-16 | 機械の監視方法および装置 |
KR10-2003-7003019A KR20030029890A (ko) | 2000-08-28 | 2001-08-16 | 기계의 모니터링을 위한 방법 및 장치 |
EP01962648A EP1314071A2 (de) | 2000-08-28 | 2001-08-16 | Verfahren und vorrichtung zur überwachung einer maschine |
US10/377,894 US20030225548A1 (en) | 2000-08-28 | 2003-02-28 | Method and device for monitoring a machine |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE10042227A DE10042227A1 (de) | 2000-08-28 | 2000-08-28 | Verfahren und Vorrichtung zur Überwachung einer Maschine |
DE10042227.6 | 2000-08-28 |
Related Child Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US10/377,894 Continuation US20030225548A1 (en) | 2000-08-28 | 2003-02-28 | Method and device for monitoring a machine |
Publications (2)
Publication Number | Publication Date |
---|---|
WO2002019045A2 true WO2002019045A2 (de) | 2002-03-07 |
WO2002019045A3 WO2002019045A3 (de) | 2002-08-15 |
Family
ID=7654059
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/DE2001/003142 WO2002019045A2 (de) | 2000-08-28 | 2001-08-16 | Verfahren und vorrichtung zur überwachung einer maschine |
Country Status (6)
Country | Link |
---|---|
US (1) | US20030225548A1 (de) |
EP (1) | EP1314071A2 (de) |
JP (1) | JP2004507828A (de) |
KR (1) | KR20030029890A (de) |
DE (1) | DE10042227A1 (de) |
WO (1) | WO2002019045A2 (de) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP3333376A1 (de) * | 2016-12-08 | 2018-06-13 | Siemens Aktiengesellschaft | Elektrischer steuerkreis für einen turbinenmotor |
Families Citing this family (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE102010056006B4 (de) * | 2010-12-23 | 2019-05-09 | Volkswagen Ag | Verfahren zur Überwachung eines Leitungsnetzes für ein Fahrzeug sowie entsprechende Überwachungsvorrichtung und Fahrzeug |
US9325450B2 (en) | 2014-05-21 | 2016-04-26 | Stmicroelectronics S.R.L. | Method and system for processing digital data, corresponding apparatus and computer program product |
DE102019109539A1 (de) * | 2019-04-11 | 2020-10-15 | Phoenix Contact Gmbh & Co. Kg | Messsystem |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE2800810A1 (de) * | 1978-01-10 | 1979-07-12 | Erni Elektroapp | Verfahren zum einrichten und ueberwachen des betriebes von werkzeugmaschinen sowie auf eine vorrichtung zur durchfuehrung des verfahrens |
FR2558278A1 (fr) * | 1984-01-18 | 1985-07-19 | Floch Joseph | Detection de la position des organes mobiles en boucle, constituee d'un seul cable qui relie plusieurs capteurs |
FR2653279A1 (fr) * | 1989-10-13 | 1991-04-19 | Jaeger | Dispositif de codage d'informations notamment pour commutateur de vehicules automobiles. |
Family Cites Families (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3232079A (en) * | 1962-12-24 | 1966-02-01 | Southern Mill Equipment Corp | Circular knitting machine |
US3750565A (en) * | 1972-01-10 | 1973-08-07 | Pitney Bowes Inc | Print-setting apparatus |
US5245331A (en) * | 1991-02-22 | 1993-09-14 | Allen-Bradley Company, Inc. | Multiple adapter response detection circuit |
FR2689257B1 (fr) * | 1992-03-31 | 1996-12-13 | Valeo Electronique | Emetteur de commandes, recepteur adapte et systeme de commande pour dispositif d'essuyage de vehicules |
FR2708525B1 (fr) * | 1993-08-04 | 1995-10-20 | Sagem | Procédé de commande de la tête ligne d'un appareil d'impression thermique et appareil d'impression thermique pour la mise en Óoeuvre du procédé. |
US5754451A (en) * | 1996-02-29 | 1998-05-19 | Raytheon Company | Preventative maintenance and diagonstic system |
US6106088A (en) * | 1997-10-01 | 2000-08-22 | Xerox Corporation | Printhead assembly with integral lifetime monitoring system |
-
2000
- 2000-08-28 DE DE10042227A patent/DE10042227A1/de not_active Ceased
-
2001
- 2001-08-16 WO PCT/DE2001/003142 patent/WO2002019045A2/de not_active Application Discontinuation
- 2001-08-16 KR KR10-2003-7003019A patent/KR20030029890A/ko not_active Application Discontinuation
- 2001-08-16 JP JP2002523103A patent/JP2004507828A/ja not_active Withdrawn
- 2001-08-16 EP EP01962648A patent/EP1314071A2/de not_active Withdrawn
-
2003
- 2003-02-28 US US10/377,894 patent/US20030225548A1/en not_active Abandoned
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE2800810A1 (de) * | 1978-01-10 | 1979-07-12 | Erni Elektroapp | Verfahren zum einrichten und ueberwachen des betriebes von werkzeugmaschinen sowie auf eine vorrichtung zur durchfuehrung des verfahrens |
FR2558278A1 (fr) * | 1984-01-18 | 1985-07-19 | Floch Joseph | Detection de la position des organes mobiles en boucle, constituee d'un seul cable qui relie plusieurs capteurs |
FR2653279A1 (fr) * | 1989-10-13 | 1991-04-19 | Jaeger | Dispositif de codage d'informations notamment pour commutateur de vehicules automobiles. |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP3333376A1 (de) * | 2016-12-08 | 2018-06-13 | Siemens Aktiengesellschaft | Elektrischer steuerkreis für einen turbinenmotor |
WO2018103903A1 (en) * | 2016-12-08 | 2018-06-14 | Siemens Aktiengesellschaft | Electric control circuit for a turbine engine |
Also Published As
Publication number | Publication date |
---|---|
JP2004507828A (ja) | 2004-03-11 |
US20030225548A1 (en) | 2003-12-04 |
EP1314071A2 (de) | 2003-05-28 |
WO2002019045A3 (de) | 2002-08-15 |
DE10042227A1 (de) | 2002-03-28 |
KR20030029890A (ko) | 2003-04-16 |
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