EP1847499B1 - Procédé de réglage des agencements à étages d'un grand nombre d'unités de commandes d'une installation d'ascenseur - Google Patents

Procédé de réglage des agencements à étages d'un grand nombre d'unités de commandes d'une installation d'ascenseur Download PDF

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Publication number
EP1847499B1
EP1847499B1 EP07106075.0A EP07106075A EP1847499B1 EP 1847499 B1 EP1847499 B1 EP 1847499B1 EP 07106075 A EP07106075 A EP 07106075A EP 1847499 B1 EP1847499 B1 EP 1847499B1
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EP
European Patent Office
Prior art keywords
unit
floor
operating
operating unit
storey
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EP07106075.0A
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German (de)
English (en)
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EP1847499A2 (fr
EP1847499A3 (fr
Inventor
Erich Tschümperlin
Philippe Henneau
Peter Bärtschi
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Inventio AG
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Inventio AG
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Priority to EP07106075.0A priority Critical patent/EP1847499B1/fr
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Publication of EP1847499A3 publication Critical patent/EP1847499A3/fr
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B1/00Control systems of elevators in general
    • B66B1/34Details, e.g. call counting devices, data transmission from car to control system, devices giving information to the control system

Definitions

  • the present invention relates to a method for adjusting the floor assignments of a plurality of operating units of an elevator installation, wherein the operating units are distributed on a plurality of floors and the floors are approachable by an elevator car, which comprises a transmitting unit.
  • the elevator car during a so-called learning trip to all holding positions, that is, in all floors, moved to adjust the holding positions to the height levels of the respective floors.
  • the operating units distributed on the individual floors for example panels equipped with target call buttons, and their communication with the central control unit must be set or configured. In this case, it is necessary to define these operating panels, which are provided in the access area to the elevator installation of each floor, with regard to their position, that is to say the floor, and to assign them to the operating unit.
  • the US 6672429 B1 describes a method for serial data communication in an elevator system between a computer and I / O devices, operating units on the floors and in an elevator car and a selection unit.
  • the selection unit contains sensors that can detect the position of the elevator car (column 2, line 59 - column 3, line 31).
  • Each I / O device is identified by a 2-byte. The first byte indicates the function and the second byte the identity (column 3, line 58 - column 4, line 12). The two bytes are contained in the data packets sent between the computer and the I / O devices. With the help of a service tool, which is inserted in the serial data communication, the identities and functions of each I / O devices can be queried (column 4, lines 21 - 41).
  • the GB 1468061 describes a method for controlling a plurality of elevators in a building. This is done using a computer with a program.
  • the EP 0248997 A1 describes a method for controlling a group of elevators in a building. By means of a locking circuit is effected that in the presence of several cars on the main stop always only the doors of that elevator car are opened, which is assigned for the elevator ride, which was requested by an input to a Rufregistrierungs worn.
  • the US 6427807 B1 describes a method for configuring an I / O module connected to an elevator controller via a bus system and emitters and signalers connected thereto.
  • Each occupied port of the I / O modules is assigned a programmable port configuration module that provides the elevator controller with the required information regarding the nature and function of the emitter or signal transmitter connected to the corresponding port.
  • control panel normally consists of a print containing a call-entry panel and an indicator.
  • the tableau for the call input and the indicator are partly two different prints.
  • the control unit consists of two prints, both of which must be set.
  • the invention is therefore based on the object , a method for adjusting the floor assignments of a plurality of control units of a lift system in such a way that the floor assignments of the control units are easier to set.
  • a "control unit" in the context of the present invention comprises the panels provided with at least one user-operable switch in the access area of each floor to the elevator installation Use of the elevator system understood.
  • these are the usual destination call direction keys.
  • the elevator car is moved by means of automatic control by the central control unit in the floor.
  • an adjustment program can be made available that allows a start all floors for the purpose of assigning the individual control units.
  • the floors can also be approached by manual actuation of appropriate Zielrufschalter the elevator car.
  • the operating unit be activated by sending an activation signal from the transmitting unit to the operating unit.
  • this activation process can also be done manually by pressing the control unit.
  • the position data are additionally stored in the central control unit. Furthermore, it can be provided that in addition to the position data also data are transmitted, which characterize the access to the elevator car. This is true for elevator installations in which the elevator car has more than one car door. Each cabin door forms such an access.
  • the above steps a) to d) are repeated for all existing floors in each building. Likewise, the above steps are repeated on each floor for each access to the elevator car.
  • the Fig. 1 schematically shows a building 10 with an elevator system 20.
  • the elevator system 20 comprises a vertically movable elevator car 30 with two car doors 33, 34 and a control panel 32 with multiple destination callers.
  • a transmitting unit 35 is provided, which is in communication with a central control unit 40.
  • the central control unit 40 serves to control the elevator installation 20.
  • the building 10 has a first floor 11, a second floor 13, a third floor 15 and a fourth floor 17.
  • the elevator car 30 can be entered and left from two sides.
  • an operating unit 50 to 57 via which a user can request the elevator car 30 and / or make a destination call.
  • Each operating unit 50 to 57 comprises a memory unit 60 and a plurality of destination call buttons.
  • each operating unit 50 to 57 is in data communication with the central control unit 40.
  • the central control unit 40 is first set in a setting mode. First, the elevator car 30 is moved to the fourth floor 17 and the car door 34 is opened. A person of the assembly personnel enters the elevator car 30 and operates one of the destination call buttons of the control panel 32, so that the elevator car 30 is moved to the third floor 15. After the elevator car 30 has reached the third floor 15, the car door 34 and the access door 16b open. The person leaves the elevator car 30 and operates a key of the operating unit 54 to activate it. After establishing a data radio connection between the transmitting unit 35 and the operating unit 54, the transmitting unit 35 transmits position data to the operating unit 54 and / or to the central control unit 40.
  • the position data are stored in the transmitting unit 35 and / or the central control unit 40 or by the units 35, 40 determined.
  • the position data transmitted to the operating unit 54 include the indication of the floor number of the building 10 and the name of the access or access door 16b.
  • the position data is preferably stored in the storage unit 60 of the operation unit 54. In this way, in the subsequent operation of the elevator installation 20 upon delivery of a destination call via the operating unit 54 for the central control unit 40, it can be recognized on which floor and in the area of which access the person to be transported is located.
  • the person enters the elevator car 30 and operates a corresponding button of the control panel 32 to close the car door 34. Subsequently, the person actuates another button on the control panel 32 to open the left-side car door 33 and the access door 16a. After leaving the elevator car 30 in the left-side area of the floor 15, the person operates the control unit 55 to activate them. After establishing a data connection between the transmitting unit 35 and the operating unit 55, the transmitting unit 35 transmits the position data to the operating unit 55 in accordance with the above procedure.
  • the position data are stored in the memory unit 60 of the operating unit 55 and / or in the central control unit 40.
  • the second variant of the method according to the invention differs from the first variant essentially in that the setting process is carried out largely automatically. In this way, it is not necessary for a person of the assembly personnel to operate the individual operating units 50 to 57 and the operating panel 32 of the elevator car 30 during the "setting run” in order to transmit the position data and the method of the elevator car 30 between the individual floors 11. 13, 15, 17 to allow.
  • the transmission unit 35 comprises an RFID transmission part, which emits an activation signal within a predetermined range over a predetermined period of time.
  • the range is about 1 to 2 m.
  • all operating units 50 to 57 each comprise an RFID receiver part.
  • the RFID chip may be printed on the display / control unit, since an RFID chip only costs a few centimes, and the receiving unit is considerably more expensive.
  • the sent ID from the RFID chip must match the print address. This allows the indicator / operating unit to be addressed and configured selectively via the fieldbus after the RFID chip has been detected.
  • the rather more expensive transmitter is mounted on the cab, and can be removed after the learning trip if necessary.
  • the elevator car 30 is moved automatically from the uppermost floor 17 to the third floor 15 and automatically the corresponding car door 34 and access door 16b are opened.
  • the transmitting unit 35 is within the predetermined range of the operating unit 54, the operating unit 54 receives the activation signal emitted by the RFID transmitting portion, whereby the operating unit 54 is activated. Subsequently, the operating unit 54 transmits an acknowledgment signal to the transmitting unit 35.
  • the transmitting unit 35 transmits the position data to the operating unit 54 and / or to the central control unit 40. The position data are again stored in the memory unit 60 of the operating unit 54 and / or stored in the central control unit 40.
  • the access door 16b and car door 34 is automatically closed and the access door 16a and the car door 33 directed toward the other side of the floor 15 are automatically opened.
  • the activation signal emitted by the RFID transmission part of the transmission unit 35 is received by the RFID receiver part of the operation unit 55.
  • the position data are stored in the memory unit 60 of the control unit 55 and / or in the central control unit 40.
  • the access door 16a and car door 33 are automatically closed and the elevator car 30 moved to the floor 13.
  • the two above-described variants of the method according to the invention are characterized in particular by the fact that no manual actuation of conventionally existing switches of the operating units 50 to 57 is required for setting the floor assignments of the operating units 50 to 57.
  • this adjustment can be carried out with a preferably wireless data transmission by means of RFID technology.
  • the second embodiment of the method is characterized in particular by the fact that the RFID receiver parts are only temporarily attached to the control units 50 to 57 and can be removed after performing the adjustment and can be used for example for the configuration of another elevator installation in another building , The installer may need to perform manual interventions after learning to remove the transmitters from the indicators / controls.

Landscapes

  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Elevator Control (AREA)
  • Lift-Guide Devices, And Elevator Ropes And Cables (AREA)

Claims (7)

  1. Procédé, dans le cadre du montage et de l'installation d'une installation d'ascenseur, pour régler les affectations d'un grand nombre d'unités de commande (50-57) d'une installation d'ascenseur (20) à des étages, étant précisé que les unités de commande (50-57) sont réparties sur un grand nombre d'étages (11, 13, 15, 17) et que les étages (11, 13, 15, 17) sont aptes à être atteints par une cabine d'ascenseur (30), que ladite cabine d'ascenseur (30) comprend une unité émettrice (35), et que le procédé comprend les étapes suivantes :
    a) déplacement de la cabine d'ascenseur (30) jusqu'à un étage (11, 13, 15, 17) prédéfini ;
    b) activation de l'unité de commande (50-57) attribuée à l'étage (11, 13, 15, 17) atteint;
    c) transmission, par l'unité émettrice (35) à l'unité de commande (50-57), de données de position qui décrivent l'étage (11, 13, 15, 17) où se trouve l'unité de commande (50-57) et
    d) mise en mémoire des données de position dans une unité de mémoire (60) de l'unité de commande (50-57) et/ou dans l'unité de commande centrale (40).
  2. Procédé selon la revendication 1, caractérisé en ce que la cabine d'ascenseur (30) est déplacée jusqu'à l'étage (11, 13, 15, 17) à l'aide d'une commande automatique par l'unité de commande centrale (40).
  3. Procédé selon l'une des revendications 1 ou 2, caractérisé en ce que l'unité de commande (50-57) est activée par l'envoi, par l'unité d'émission (35) à l'unité de commande (50-57), d'un signal d'activation.
  4. Procédé selon l'une des revendications 1 à 3, caractérisé en ce que les données de position sont mises en mémoire dans une unité de mémoire (60) de l'unité de commande (50-57) et dans l'unité de commande centrale (40).
  5. Procédé selon l'une des revendications 1 à 4, caractérisé en ce que des données qui identifient l'accès à la cabine d'ascenseur (30) de l'étage (11, 13, 15, 17) sont également transmises en supplément.
  6. Procédé selon l'une des revendications 1 à 5, caractérisé en ce que les étapes a) à d) sont répétées pour tous les étages (11, 13, 15, 17).
  7. Procédé selon l'une des revendications 1 à 6, caractérisé en ce que les étapes a) à d) sont répétées à chaque étage (11, 13, 15, 17) pour chaque accès à la cabine d'ascenseur (30).
EP07106075.0A 2006-04-20 2007-04-12 Procédé de réglage des agencements à étages d'un grand nombre d'unités de commandes d'une installation d'ascenseur Active EP1847499B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP07106075.0A EP1847499B1 (fr) 2006-04-20 2007-04-12 Procédé de réglage des agencements à étages d'un grand nombre d'unités de commandes d'une installation d'ascenseur

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP06112859 2006-04-20
EP07106075.0A EP1847499B1 (fr) 2006-04-20 2007-04-12 Procédé de réglage des agencements à étages d'un grand nombre d'unités de commandes d'une installation d'ascenseur

Publications (3)

Publication Number Publication Date
EP1847499A2 EP1847499A2 (fr) 2007-10-24
EP1847499A3 EP1847499A3 (fr) 2009-06-17
EP1847499B1 true EP1847499B1 (fr) 2015-06-10

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EP07106075.0A Active EP1847499B1 (fr) 2006-04-20 2007-04-12 Procédé de réglage des agencements à étages d'un grand nombre d'unités de commandes d'une installation d'ascenseur

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Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3083471A1 (fr) * 2013-12-20 2016-10-26 Inventio AG Configuration d'unités de commande d'une installation d'ascenseur

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BR7401817D0 (pt) * 1973-03-12 1974-11-05 Western Electric Co Processo de controle do movimento de uma pluralidade de cabinas de elevadores, e processamento para elevadores
JPS598621B2 (ja) * 1976-07-30 1984-02-25 株式会社日立製作所 並設エレベ−タ制御装置
CH622226A5 (fr) * 1977-07-29 1981-03-31 Inventio Ag
CH656598A5 (de) * 1982-08-18 1986-07-15 Inventio Ag Schaltungseinrichtung mit leitungsmatrix zur signaluebertragung in aufzugsanlagen.
EP0248997B1 (fr) * 1986-06-10 1990-07-18 Inventio Ag Dispositif de commande de la répartition des cabines à un palier principal pour un groupe d'ascenseurs
SG116410A1 (en) * 1999-11-11 2005-11-28 Inventio Ag Method of configuring elevator controls.
US6672429B1 (en) * 2000-03-10 2004-01-06 Thyssen Elevator Capital Corp. Encoding system for communicating with elevator I/O devices

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EP1847499A2 (fr) 2007-10-24
EP1847499A3 (fr) 2009-06-17

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