EP2331443A2 - Procédé pour faire fonctionner une installation d'ascenseur, dispositif d'entrée d'appel, installation d'ascenseur comprenant un tel dispositif d'entrée d'appel et procédé pour équiper a posteriori une installation d'ascenseur d'un tel dispositif d'entrée d'appel - Google Patents

Procédé pour faire fonctionner une installation d'ascenseur, dispositif d'entrée d'appel, installation d'ascenseur comprenant un tel dispositif d'entrée d'appel et procédé pour équiper a posteriori une installation d'ascenseur d'un tel dispositif d'entrée d'appel

Info

Publication number
EP2331443A2
EP2331443A2 EP09783194A EP09783194A EP2331443A2 EP 2331443 A2 EP2331443 A2 EP 2331443A2 EP 09783194 A EP09783194 A EP 09783194A EP 09783194 A EP09783194 A EP 09783194A EP 2331443 A2 EP2331443 A2 EP 2331443A2
Authority
EP
European Patent Office
Prior art keywords
call
input device
signal
input
elevator
Prior art date
Legal status (The legal status 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 status listed.)
Granted
Application number
EP09783194A
Other languages
German (de)
English (en)
Other versions
EP2331443B1 (fr
Inventor
Lukas Finschi
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Inventio AG
Original Assignee
Inventio AG
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
Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=40343581&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=EP2331443(A2) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by Inventio AG filed Critical Inventio AG
Priority to PL09783194T priority Critical patent/PL2331443T3/pl
Priority to EP09783194.5A priority patent/EP2331443B1/fr
Publication of EP2331443A2 publication Critical patent/EP2331443A2/fr
Application granted granted Critical
Publication of EP2331443B1 publication Critical patent/EP2331443B1/fr
Revoked legal-status Critical Current
Anticipated expiration legal-status Critical

Links

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
    • B66B1/46Adaptations of switches or switchgear
    • 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
    • B66B1/3415Control system configuration and the data transmission or communication within the control system
    • B66B1/3423Control system configuration, i.e. lay-out
    • 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
    • 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
    • B66B1/3407Setting or modification of parameters of the control system
    • 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
    • B66B1/46Adaptations of switches or switchgear
    • B66B1/468Call registering systems

Definitions

  • the invention relates to a method for operating an elevator system according to the preamble of the independent claim.
  • EP1864933A1 shows an elevator with a call input device.
  • the car call input device has a touch screen with a wheelchair switch button.
  • the wheelchair switch button of the touchscreen is not EN81-70 compliant, as it can neither be felt by a relief of at least 0.8mm on the touchscreen, nor can it be switched by a force of 2.5N to 5.0N.
  • EP1598298A1 teaches fitting a wheelchair accessible push button on a touch screen.
  • An upper side of the disabled-friendly push button is clearly recognizable for the visually impaired by Braille characters with a relief height of at least 0.8 mm.
  • the invention relates to a method for an elevator installation with a call input device with at least one touch screen for inputting at least one call for an elevator installation.
  • the tactile screen has at least one functional identifier. Touching a functional identifier generates at least one input signal.
  • the call input device switches to at least one special input mode for a time-directed or location-related generation of a plurality of input signals.
  • touching at least one further functional identifier generates a further input signal.
  • the call input device assigns at least one call signal to the further input signal. This has the advantage that the passenger can generate a call signal by touching a further functional identifier of the call input device.
  • the call input device for continuously touching a functional identifier generates a plurality of location-oriented input signals or generates the call input device for touching a functional identifier with at least one specific pressure force of a plurality of location-oriented input signals or generates the call input device for a timely touching a functional identifier a plurality of location-oriented input signals or
  • the call input device generates a plurality of time-oriented input signals for simultaneously touching a plurality of functional identifiers, and generates the call input device for a plurality of position-sensitive input signals in a timely manner.
  • the calling input device generates a further input signal for contacting a plurality of further functional identifiers in the form of at least one geometric pattern; and the call input device assigns at least one call signal to the further input signal.
  • the passenger can thus draw a number such as "6" or "16" on the touch screen, which number is detected by the call input device as further input signals and as a call signal for a sixth or sixteenth destination floor is detected.
  • a letter "B" on the touch screen the passenger can disclose his or her disadvantage as to which character is recognized by the call input device as a first input signal, which places the call input device in the special input mode.
  • the call input device has at least one microphone; which microphone generates at least one analog voice signal for at least one spoken command.
  • the call input device assigns at least one input signal to the analog voice signal.
  • the call input device has at least one microphone; which microphone generates at least one analog voice signal for at least one spoken command.
  • the call input device assigns at least one input signal to the analog voice signal.
  • the call input device changes into at least one special input mode.
  • the call input device transmits the first input signal to at least one destination call control or elevator control.
  • the destination call control or the elevator control brings the elevator system for a received first input signal in at least one special operating mode.
  • touching at least one further functional identifier generates a further input signal.
  • the call input device assigns at least one call signal to the further input signal.
  • the call input device has at least one microphone; which microphone generates at least one further analog voice signal for at least one spoken command.
  • the call input device assigns at least one call signal to the further analog voice signal.
  • the call input device transmits the further input signal to the destination call control or the elevator control.
  • the destination call control or elevator control makes at least one call for a received call signal.
  • touching at least one first functional identifier brings the elevator installation into a specific operating mode for a predetermined period of five seconds to twenty seconds.
  • contacting at least a first functional identifier and touching at least one further functional identifier on one and the same call input device the elevator system in a special operating mode until the call made by touching the further functional identifier is fully served.
  • the first input signal indicates that a passenger can only move or orient within the building using at least one handicapped-specific aid.
  • the first input signal indicates that a passenger can only move or orient within the building using at least one handicap-specific resource; which handicap-specific aids is a wheelchair or a bedside table on rollers or a crutch or a hearing aid or a visual aid or a blind stick or a guide dog or an accompanying passenger.
  • the first input signal indicates that a passenger can only move in the building using at least one personal protection-specific aid.
  • the first input signal indicates that a passenger can only move in the building using at least one personal protection-specific aid; which personal protective equipment is a spatial protection zone or a temporal protection zone or a bodyguards.
  • the invention relates to a method for operating an elevator installation, wherein for a passenger with at least one handicap-specific aid at least one elevator door is closed or closed particularly slowly with a particularly great delay.
  • the invention relates to a method for operating an elevator installation, wherein for a passenger with at least one wheelchair-specific auxiliary device at least one elevator car is stopped with a particular accuracy in a floor.
  • the invention relates to a method for operating an elevator installation, wherein a passenger with at least one handicapped-specific or at least one person-specific aid is allocated particularly much space in at least one elevator car. This has the advantage that the passenger with disadvantage has a lot of space for his handicap-specific tool or person-specific aid.
  • the invention relates to a method for operating an elevator installation, wherein a passenger is transported by at least one personal protection-specific aid of at least one elevator car from a call input floor directly into a destination floor.
  • At least one input signal is optically or acoustically confirmed on the touch screen or by at least one sound generator of the call input device by at least one acknowledgment signal.
  • a change of the elevator installation into the special operating mode is confirmed with the acknowledgment signal.
  • the acknowledgment signal is used to request at least one disadvantage of the passenger.
  • This has the advantage that a distinction is made for passengers with discrimination between different disadvantages and, in some cases, contradictory elevator-specific parameters are deliberately taken into account.
  • the acknowledgment signal is used to request at least one communication language desired by the passenger.
  • At least one aid is provided with the acknowledgment signal.
  • At least one direction of travel desired by the passenger is output with the acknowledgment signal.
  • a destination floor desired by the passenger is output with the acknowledgment signal.
  • the acknowledgment signal designates at least one elevator shaft from which a call will be served.
  • the acknowledgment signal designates at least one elevator car which will service the call.
  • at least one start or at least one duration of an opening / closing of an elevator door is output with the acknowledgment signal.
  • with the acknowledgment signal at least one
  • Arrival time of an elevator car issued on a start floor or on a destination floor Arrival time of an elevator car issued on a start floor or on a destination floor.
  • the passenger receives a variety of useful and helpful information from the call input device, which information facilitate the journey with the elevator system and make it pleasant.
  • one of a plurality of functional identifiers is selected depending on the time duration of touching at least one input area of the touch screen.
  • at least one acknowledgment signal is output when the input area of the touch screen is touched.
  • At the end of continuous contact with the input area of the touch screen at least one input signal is selected. From the call input device, the selected input signal is transmitted to the destination call control or the elevator control.
  • the invention relates to a call input device for carrying out the method with a processor and at least one touch screen for inputting at least one call for an elevator installation.
  • the tactile screen has at least one functional identifier. Touching a functional identifier generates at least one input signal.
  • the processor sets the call input device for a time-directed generation of a plurality of input signals in at least one special input mode.
  • At least one first functional designator is identified by a wheelchair user pictogram or at least one first functional designator is identified by a VIP logo.
  • At least one identifier is advantageously frictionally mounted or at least one identifier with at least one at least 0.8 mm high is provided in at least one input area of at least one first functional identifier on the touch screen Braille characters attached.
  • the invention relates to an elevator installation for carrying out the method, wherein the call input device transmits the first input signal to at least one destination call control or elevator control.
  • the destination call control or the elevator control brings the elevator installation for a received first input signal into at least one special operating mode.
  • the invention relates to a method for retrofitting an elevator installation with a call input device having at least one touch screen for inputting at least one call for an elevator installation.
  • At least one computer program means is loaded into at least one processor of the call input device and the call input device is used by the computer program means for time-directed generation of a plurality of Input signals changed in at least one special input mode.
  • the invention relates to a method for retrofitting an elevator installation with a call input device having at least one touch screen for inputting at least one call for an elevator installation.
  • At least one computer program means is loaded into at least one processor of the call input device, the computer program means monitors the generation of at least one input signal independently of at least one other loaded computer program means of the call input device and the call input device is controlled by the computer program means for a time-directional or Locally generated multiple input signals in at least one special input mode changed.
  • the invention relates to a method for retrofitting an elevator installation with a call input device having at least one touch screen for inputting at least one call for an elevator installation, wherein at least one identifier is non-positively connected or positively or cohesively attached to the call input device, such that the identifier identifies at least one first functional identifier.
  • the invention relates to a method for retrofitting an elevator installation with a call input device with at least one touch screen for inputting at least one call for an elevator installation, wherein at least one identifier is attached to the call input device in a force-fit or positive fit, such that the identifier has at least one first call functional identifier by at least one mounted on the identifier at least 0.8mm high Braille character.
  • a computer program product comprises at least one computer program means which is suitable for implementing the method for operating an elevator installation by carrying out at least one method step if the computer program means is divided into at least one processor of at least one call input device or at least one destination call control device. at least one elevator control is loaded.
  • the computer-readable data memory comprises such a computer program product.
  • FIG. 1 shows a first embodiment of an elevator installation with a call input device according to FIGS. 3 to 8; 2 shows a second embodiment of an elevator installation with a call input device according to FIG.
  • FIG. 3 shows a view of a part of a first embodiment of a call input device with a functional identifier
  • Fig. 5 is a view of a part of a third
  • FIG. 6 shows a view of a part of the first exemplary embodiment of a call input device according to FIG. 3 with acknowledgment signal
  • FIG. 7 is a view of a part of the second embodiment of a call input device according to FIG.
  • FIG. 8 shows a view of a part of the third embodiment of a call input device according to FIG.
  • FIG. 1 and 2 show two embodiments of an elevator installation in a building.
  • the building has a larger number of floors Sl to S3, which are served by at least one elevator car 6, 6 '.
  • On each floor Sl to S3 can one
  • At least one elevator control 5, 5 ' has at least one processor and at least one computer-readable data memory. From the computer-readable data memory, at least one computer program means is loaded into the processor and executed. The computer program means controls the elevator drive 10, 10 'and the door drive 9, 9'. At least one adapter for at least one bus system 2 'or at least one adapter for at least one signal line 14, 14' and at least one electrical power supply are arranged in at least one housing of the elevator control 5, 5 '.
  • At least one call input device 1, 1 ' is arranged near a storey door 11, 11' or in an elevator car 6.
  • the call input device 1, 1 ' is mounted on a building wall in the floor door area or is isolated in the floor door area of the floors Sl to S3.
  • the call input device 1, 1 ' are at least one adapter for a bus system 2, 2', arranged at least one input / output device in the form of a touch screen 13, at least one sounder 15, at least one microphone 18 and at least one electrical power supply.
  • the call input device 1, 1 ' has at least one processor and at least one computer-readable data memory. From the computer-readable data memory, at least one computer program means is loaded into the processor and executed. In the processor of the call input device 1, 1 ', a plurality of computer program means can be loaded, which operate independently of each other or together with each other.
  • the computer program means controls the adapter or touch screen 13 or the sound generator 15 or the microphone 18.
  • At least one destination call controller 4 has at least one processor, at least one computer-readable data memory, at least one adapter for a bus system 2 and at least one electrical power supply.
  • the destination call control 4 is an independent electronic unit in at least one separate housing, which is placed, for example, in the floor S3.
  • the destination call control 4 can also be an electronic insert, for example in the form of a printed circuit board, which circuit board is arranged in the housing of a call input device 1, 1 'or an elevator control 5, 5'.
  • the call input device 1, 1 'and the destination call control 4 or the elevator control 5, 5' communicate bidirectionally via a bus system 2, 2 'such as a Universal Serial Bus (USB), Local Operating Network (LON), Modbus, Ethernet, etc
  • a bus system 2, 2 ' such as a Universal Serial Bus (USB), Local Operating Network (LON), Modbus, Ethernet, etc
  • USB Universal Serial Bus
  • LON Local Operating Network
  • Modbus Ethernet
  • each floor S1 to S3 is two
  • a call input device 1 is communicatively connected to a lift control 5 via a bus system 2 'per floor S1 to S3.
  • Each communication participant has an address an adapter in the bus system 2, 2 'uniquely identifiable.
  • the destination call control 4 and the elevator control 5, 5 ' communicate bidirectionally via a signal line 14, 14'.
  • the destination call control 4 is communicatively connected via a respective signal line 14, 14 'to an elevator control 5, 5'.
  • the communication participants at the ends of the permanently activated signal lines 14, 14 ' are uniquely identifiable.
  • the call input device 1, 1 transmits in the
  • the call input device 1 in the bus system 2 'transmits a call made by the passenger as a floor call or as a car call to the elevator control 5.
  • a floor call is made first one
  • Elevator car 6 process on the floor of the call input device 1. Only after the passenger has entered the elevator car 6, a car call is placed on a destination floor on a call input device 1 of the elevator car 6 and the elevator car 6 is moved to this destination floor. In the case of a destination call, a designation of a desired destination floor already takes place when the call is entered, so that no more cabin calls are necessary. Thus, the destination call controller 4 already knows the destination floor in the call input and can therefore optimize not only the approach of the call input floor but also that of the destination floor. The destination call control 4 determines at least one cheapest call allocation for a destination call.
  • the cheapest call allocation refers to a journey with at least one elevator car 6, 6 'from a start floor to a destination floor with the shortest possible waiting time or the shortest possible destination time.
  • the start floor does not have to be with the Incoming call floor match.
  • the destination floor does not have to match the destination floor desired by the passenger according to the destination call.
  • the touch screen 13 is of rectangular or circularly symmetrical diameter.
  • the touch screen 13 has, for example, a diameter of 5 cm and a thickness of 2 to 10 mm.
  • Display is for example made of glass or impact-resistant plastic such as polyurethane, polypropylene, polyethylene, etc.
  • a front of Tastles 13 is for example made of glass or impact-resistant plastic such as polyurethane, polypropylene, polyethylene.
  • the front of the touch screen 13 is for a
  • an electric field applied to the display is changed when the touch screen is touched.
  • This electrical field change can also be detected by at least one sensor as an input signal with two-dimensional spatial resolution via a location coordinate.
  • Tast processes 13 a light beam interrupted.
  • the position of the light beam interruption is determined by at least one sensor as Input signal with two-dimensional spatial resolution can be detected via a location coordinate.
  • a surface acoustic wave touch screen 13 touching the touch screen 13, horizontal and vertical ultrasonic waves are reflected.
  • This ultrasonic wave reflection can also be detected by at least one sensor as an input signal with two-dimensional spatial resolution via a location coordinate.
  • the microphone 18 receives at least one command spoken by the passenger and for this purpose generates at least one analog voice signal.
  • the command is a number or a letter or a word.
  • the analog voice signals are decomposed into frequency sequences and digitized by at least one analog-to-digital converter. From digitized speech signals, at least one frequency spectrum is generated by Fourier transformation. The frequency spectrum is compared with at least one reference spectrum. Each reference spectrum is assigned at least one input signal. Reference spectrum and input signal are stored in the computer-readable data memory of the call input device 1, 1 '. A reference spectrum which is similar to the frequency spectrum is selected and the input signal assigned to the reference spectrum is read out. In this way, the computer program means of the call input device 1, 1 'speech recognition of a command is performed.
  • the passenger pronounces at least one number or sequence of numbers consisting of numbers “0" to "9" for the floor input.
  • the passenger pronounces at least one location identifier such as “lobby", “library”, etc., or at least one name identifier such as “family Schmidt", “company Meier”, etc.
  • the passenger issues at least one function identifier such as "Help", “Alarm”, “Disadvantage”, “Disability”, “VIP” (Very Important Person), and so forth.
  • At least one first analog voice signal is stored as the first input signal.
  • a function identifier such as "Disadvantage", “Disability”, "VIP” is identified as the first input signal.
  • At least one more analog voice signal is stored marked as another input signal.
  • a number or sequence of numbers such as "1", “3” or a location identifier such as "lobby", "library” is marked as another input signal.
  • the visible to the passenger surface of the touch screen 13 has at least one functional identifier 16, 16 '.
  • the functional identifiers 16, 16 ' are pictograms or alphanumeric character strings.
  • Each luminous element can be controlled by the computer program means and the number, size, color and shape of the functional designators 16, 16 'are freely programmable.
  • the functional identifier 16, 16 ' may also be an "empty area" of the touch screen 13, i. a uniform area of the touch screen 13, which is currently not specially marked. According to FIG.
  • a first functional identifier 16 is arranged at a lower edge region of the touch screen 13, and twelve further functional identifiers 16 'are arranged above in a middle region of the touch screen 13.
  • two first functional identifiers 16 are arranged on left and right upper corner regions of the touch screen 13, and two further functional identifiers 16 'are arranged in a center region of the touch screen 13.
  • a first functional identifier 16 is at an upper one
  • Edge region of the touch screen 13 arranged and twelve further functional identifier 16 'are arranged underneath in a central region of the touch screen 13.
  • the first functional identifier 16 may be specially marked.
  • the first functional identifier 16 is identified by a wheelchair user icon.
  • the first one is Functional identifier 16 marked by a VIP logo.
  • the further functional identifiers 16 are, for example, numbers "0" to "9" for floor input and a "bell character" for an alarm or at least one location identifier such as "lobby", "library”, etc. or at least one Name identifiers such as "Family Schmidt", “Company Meier”, etc.
  • an input signal is generated.
  • the call input device 1, 1 ' changes into at least one special input mode.
  • 16 'several location-oriented input signals are generated. For example, a passenger touches a functional one
  • a passenger touches a functional identifier 16, 16 'on the touch screen 13 with a compressive force of 2.5N to 5.0N.
  • a plurality of time-related input signals are generated.
  • a passenger according to FIG. 4 simultaneously touches the two first functional identifiers 16 on the touch screen 13.
  • the passenger places a palm on the touch screen 13 and thus touches several functional identifiers 16, 16 'simultaneously.
  • the passenger touches the entire touch screen 13 and thus touches several functional identifiers 16, 16 'simultaneously.
  • a passenger touches a functional identifier 16, 16 'on the touch screen 13 several times within a few seconds, preferably three times within three
  • Seconds preferably five times within five seconds.
  • the timely touching can also be done with a certain rhythm or with a certain rhythmic design.
  • the passenger can use a recognition tune, a Morse string, and so on.
  • 16 'several location-oriented input signals are generated.
  • a passenger touches a series of functional identifiers 16, 16 'on the touch screen 13 according to at least one geometric pattern.
  • the geometric pattern is a number or a letter or a straight line or a curved line or a multiple line.
  • the number is, for example, a "6" or a "22" or a "0", etc.
  • the call input device 1, 1 'recognizes this number "6” or "22” or "0” and assigns the recognized number "6” or "22” or “0” to a call signal to a sixth or twenty-second or zeroth destination floor to.
  • the letter is for example an "A” or a “C”, or a “garage” or an “office”, etc.
  • the call input device 1, 1 'recognizes this letter “A” or “C” or “ Garage “or” office “and assigns the recognized letter” A “or” C “or” garage “or” office "a call signal to a corresponding destination floor.
  • the straight line is, for example, a straight line directed “upwards” or “downwards” on the touchscreen 13 or a diagonal over the touchscreen 13 or a semicircle or a circle on the touchscreen 13.
  • the call input device 1, 1 'recognizes it straight line and assign her a function.
  • the call input device 1, 1 ' assigns a call signal in "uplink direction” to a "upwards” straight line or assigns the call input device 1, 1' a "downwards” straight line to a call signal in "downlink direction.
  • the passenger skirts through a menu with several functional identifiers 16, 16 '. With an upward straight line, the passenger rolls in an upward direction through the menu or with a downward straight line, the passenger rolls upwards through the menu.
  • the multiple line is generated, for example, by timely touching one or more fingers of the passenger on the touch screen 13. For example, the passenger simultaneously touches the tactile screen with the index finger and the ring finger and then moves the fingertips of these two fingers relative to each other while maintaining the touch on the touch screen 13.
  • the multiple line is, for example, a multiple line extending from a center into two or three extremities or a multiple line meeting at a center of several extremities.
  • the call input device 1, 1 ' recognizes this multiple line and assigns it a function.
  • the passenger skirts through a menu with a plurality of functional identifiers 16, 16 '. With a multi-line extending from a center into multiple extremities, the passenger opens a menu; with a multi-limb multi-extremity line in a center, the passenger closes a menu.
  • the call input device 1, 1 ' changes in assignment of at least one first input signal in at least one special input mode.
  • the passenger speaks a command "Disadvantage" in the microphone 18.
  • the microphone 18 generates for the command an analog voice signal which analog voice signal from the call input device 1, 1 ', a first input signal "disadvantage" is assigned.
  • time-directed generation of multiple input signals can be combined.
  • a Passenger put a palm on the touch screen 13 and touches so several functional identifier 16, 16 'simultaneously for several seconds.
  • a first input signal is generated.
  • a first input signal is generated.
  • the call input device 1, 1 transmits the first input signal to the destination call control 4 or elevator control 5, 5'.
  • the destination call control 4 or elevator control 5, 5 brings the elevator installation for a received first input signal into at least one special operating mode.
  • the elevator installation is activated by touching the first functional identifier 16 or by assigning a first input signal "disadvantage" for a predetermined period of time of five
  • Seconds to twenty seconds put into a special operating mode.
  • another input signal is generated.
  • a destination floor is desired by the passenger, which destination floor corresponds to the floor S3.
  • a further input signal is generated.
  • the passenger speaks the command "3" into the microphone 18.
  • the microphone 18 generates for the command "3" an analog voice signal to which analog voice signal from the call input device 1, 1 'is assigned a further input signal "3" and for which further Input signal "3" another input signal is generated.
  • the call input device 1, 1 transmits the call signal to the destination call control 4 or elevator control 5, 5'.
  • the destination call control 4 or the elevator control 5, 5 makes at least one call for the transmitted call signal.
  • the destination call controller 4 or the elevator control 5, 5 ' makes a call on the destination floor desired by the passenger.
  • the first input signal indicates in binary whether the passenger is handicapped or not or whether the passenger is at risk for safety or not.
  • the type of disability such as walking disability, visual impairment, hearing impairment, etc.
  • the disability can be a physical disability or an intellectual disability. So can the Only move or orient the passenger in the building using at least one disability-specific aid.
  • a handicap-specific aid is, for example, a wheelchair, a bedside table on wheels, a crutch, a hearing aid, a visual aid, a cane, a guide dog, etc.
  • a severely handicapped passenger can only move with the help of at least one accompanying passenger.
  • an accompanying passenger pushes the wheelchair of the severely disabled passenger to make a call for the severely disabled passenger.
  • a person-specific aid is, for example, a spatial protection zone or a temporal protection zone or a bodyguard.
  • a spatial protection zone or a temporal protection zone with as few other passengers in the elevator car 6, 6 'generated.
  • further passengers can be transported at earlier or later times by the elevator car 6, 6 '.
  • an acutely security-endangered passenger is accompanied by at least one bodyguard in the elevator car 6, 6 '.
  • the call input device 1, 1 'or the elevator door 11, 11', 12, 12 'or the elevator car 6, 6' is actuated as follows:
  • the elevator door 11, 11 ', 12, 12' is closed with a particularly great delay and it is closed particularly slowly. While in the normal operating mode, an elevator door 11, 11 ', 12, 12' closes after a delay of two to twenty seconds and the elevator door 11, 11 ', 12, 12' for the Closing process takes about two seconds, the delay and the closing process for a passenger with handicapped-specific aids are 10% to 50% more.
  • the elevator car 6, 6 ' is designed with particular accuracy in the
  • the height difference between a floor of the elevator car 6, 6 'and a threshold of the landing door 11, 11' can be more than 10mm, for a passenger with handicapped-specific aid according to EN81-70 a maximum height difference between the ground Elevator cabin 6, 6 'and the threshold of the landing door 11, 11' of +/- 10mm prescribed.
  • a passenger with handicapped-specific or personal safety-specific aids is assigned a particularly large amount of space in an elevator car 6, 6 '. While in the normal
  • Operating mode can accommodate a lift cage 6, 6 'of 450kg payload up to six passengers, this elevator car 6, 6' of 450kg payload is assigned to a single passenger with handicapped specific or personal protection specific aid.
  • an elevator car 6, 6 'of 630 kg payload which can accommodate up to eight passengers in the normal mode of operation, is assigned a passenger with disability-specific aid as well as an accompanying passenger or a security-endangered passenger and a bodyguard.
  • a passenger with personal protection-specific aids is transported by the elevator car 6, 6 'from the call input floor directly into the destination floor. While the elevator car 6, 6 'inserts one or more intermediate stops or transfer stops in the normal operating mode, a passenger with personal protective equipment is transported from the call input storey into the desired destination storey without intermediate stops or transfer stops.
  • each input signal is optically or acoustically confirmed by at least one acknowledgment signal 17. The passenger thus receives an optical or acoustic acknowledgment of the touch of a functional identifier 16, 16 'of the touch screen 13.
  • the acknowledgment signal 17 on the touch screen 13 is a pictogram or alphanumeric strings and is characterized by at least one light element such as a liquid crystal display (LCD ), Light Emitting Display (LED), Organic Light Emitting Display (OLED), etc. are generated. Each luminous element can be controlled by the computer program means and the number, size, color and shape of the acknowledgment signal 17 on the touch screen 13 are freely programmable. According to FIGS. 6 to 8, a plurality of acknowledgment signals 17 are arranged in a central region of the touch screen 13.
  • the acknowledgment signal 17 by the sounder 15 is, for example, a tone sequence or a melody or a synthetic speech output.
  • Each acknowledgment signal 17 unambiguously acknowledges an input signal correlated with a functional identifier 16, 16 '.
  • the acknowledgment signal can also be output on another output device of the elevator installation spatially separated from the call input device 1, 1 '.
  • another output device is, for example, a cabin level indicator above the landing door 11, 11 'or a floor display within the elevator car 6, 6'.
  • Several acknowledgment signals 17 can be output on the touchscreen 13 or sounder 15:
  • the passenger is on the touch screen 13 as acknowledgment signal 17 a wheelchair user pictogram and output by the sound generator 15, a sound of 600Hz, for example.
  • alphanumeric strings are also possible, in the special operating mode, to output larger or harsher or more high-contrast alphanumeric character strings on the touch screen 13.
  • alphanumeric strings also have a
  • the passenger is on the touch screen 13 as acknowledgment signal 17 a passenger icon and output by the sounder 15, a sound of 400Hz, for example.
  • the passenger is on the touch screen 13 as an acknowledgment signal 17 an "OK" and output by the sounder 15, a sound of 500Hz, for example.
  • At least one help text is output on the touch screen 13 as an acknowledgment signal 17, or at least one synthetic help response is output by the sound generator 15 as an acknowledgment signal 17.
  • At least one help text is output on the touch screen 13 as an acknowledgment signal 17, or at least one synthetic help response is output by the sound generator 15 as an acknowledgment signal 17.
  • Passenger is displayed on the touch screen 13 as an acknowledgment signal 17 an "up” and “down” directed arrow.
  • the arrow or the background of the arrow can blink.
  • For a direction of travel "up” the passenger is given by the sounder 15 a high tone of 550Hz, for example, for a direction “down” the passenger is given by the sounder 15, a low tone of 450Hz for example.
  • the passenger For a destination floor desired by the passenger, which destination floor corresponds to the floor S3, the passenger is given a "3" as an acknowledgment signal 17 on the touch screen 13 and a tone sequence of, for example, three tones of 490 Hz, 500 Hz and 510 Hz by the sound generator 15.
  • the elevator shaft S4, S4 'of the elevator car 6, 6' operating the call of the passenger is displayed on the touch screen 13 as an acknowledgment signal 17 in the form of a letter "B" and by a tone of 400 Hz of the sound generator 15.
  • the letter "B" or the background may blink.
  • the elevator car 6, 6 ' which will serve the call. If a plurality of elevator cars 6, 6 'operate in an elevator shaft S4, S4', for example an upper and a lower elevator car 6, 6 'of a double-decker elevator, the elevator car 6, 6' operating on the touch screen 13 will serve as the passenger's call Acknowledgment signal 17 in the form of a letter "2" and output by a melody. The letter "2" or the background can blink. The passenger is communicated to board the second elevator car 6, 6 '.
  • At least one input area of the touch screen 13 is repeatedly occupied, so that the passenger can select one of a plurality of functional identifiers 16, 16 'over the time duration of touching the input area of the touch screen 13. With continuous contact of the input area of the touch screen 13, a plurality of input signals are generated. At the end of the touch, the last generated input signal is selected.
  • Call input device 1, 1 transmits only the selected further input signal to the destination call control 4 or elevator control 5, 5'.

Landscapes

  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Elevator Control (AREA)
  • Indicating And Signalling Devices For Elevators (AREA)

Abstract

L'invention concerne un procédé pour faire fonctionner une installation d'ascenseur à l'aide d'un dispositif d'entrée d'appel (1, 1') comprenant au moins un écran tactile (13) pour l'entrée d'au moins un appel destiné à l'installation d'ascenseur. L'écran tactile (13) présente au moins un identificateur de fonction (16, 16'). Le fait de toucher un identificateur de fonction (16, 16') génère au moins un signal d'entrée. Le dispositif d'entrée d'appel (1, 1') passe dans au moins un mode d'entrée spécial pour une génération orientée temps ou lieu de plusieurs signaux d'entrée.
EP09783194.5A 2008-09-19 2009-09-18 Dispositif d'entrée d'appel et procédé pour faire fonctionner une installation d'ascenseur Revoked EP2331443B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PL09783194T PL2331443T3 (pl) 2008-09-19 2009-09-18 Urządzenie do wprowadzania przywołania i sposób eksploatowania urządzenia dźwigowego
EP09783194.5A EP2331443B1 (fr) 2008-09-19 2009-09-18 Dispositif d'entrée d'appel et procédé pour faire fonctionner une installation d'ascenseur

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
US9830108P 2008-09-19 2008-09-19
EP08164718 2008-09-19
EP09783194.5A EP2331443B1 (fr) 2008-09-19 2009-09-18 Dispositif d'entrée d'appel et procédé pour faire fonctionner une installation d'ascenseur
PCT/EP2009/062139 WO2010031850A2 (fr) 2008-09-19 2009-09-18 Procédé pour faire fonctionner une installation d'ascenseur, dispositif d'entrée d'appel, installation d'ascenseur comprenant un tel dispositif d'entrée d'appel et procédé pour équiper a posteriori une installation d'ascenseur d'un tel dispositif d'entrée d'appel

Publications (2)

Publication Number Publication Date
EP2331443A2 true EP2331443A2 (fr) 2011-06-15
EP2331443B1 EP2331443B1 (fr) 2013-05-15

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EP09783194.5A Revoked EP2331443B1 (fr) 2008-09-19 2009-09-18 Dispositif d'entrée d'appel et procédé pour faire fonctionner une installation d'ascenseur

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US (2) US8763762B2 (fr)
EP (1) EP2331443B1 (fr)
KR (2) KR20170030662A (fr)
CN (1) CN102216186B (fr)
AU (1) AU2009294573B2 (fr)
BR (1) BRPI0918532A2 (fr)
ES (1) ES2424790T3 (fr)
HK (1) HK1158601A1 (fr)
PL (1) PL2331443T3 (fr)
WO (1) WO2010031850A2 (fr)
ZA (1) ZA201102075B (fr)

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US8763762B2 (en) 2014-07-01
KR20170030662A (ko) 2017-03-17
HK1158601A1 (en) 2012-07-20
ES2424790T3 (es) 2013-10-08
AU2009294573B2 (en) 2016-03-03
AU2009294573A1 (en) 2010-03-25
WO2010031850A3 (fr) 2010-08-05
KR20110059883A (ko) 2011-06-07
CN102216186A (zh) 2011-10-12
US9718641B2 (en) 2017-08-01
BRPI0918532A2 (pt) 2015-12-08
CN102216186B (zh) 2014-03-26
WO2010031850A2 (fr) 2010-03-25
EP2331443B1 (fr) 2013-05-15
US20120103729A1 (en) 2012-05-03
ZA201102075B (en) 2012-06-27
PL2331443T3 (pl) 2013-10-31
US20150041254A1 (en) 2015-02-12

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