EP3009389A1 - Procédé de parametrage d'un ascenseur et ascenseur comportant une interface utilisateur destinée au parametrage - Google Patents

Procédé de parametrage d'un ascenseur et ascenseur comportant une interface utilisateur destinée au parametrage Download PDF

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Publication number
EP3009389A1
EP3009389A1 EP15189890.5A EP15189890A EP3009389A1 EP 3009389 A1 EP3009389 A1 EP 3009389A1 EP 15189890 A EP15189890 A EP 15189890A EP 3009389 A1 EP3009389 A1 EP 3009389A1
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EP
European Patent Office
Prior art keywords
parameterization
user interface
displayed
elevator
elevator installation
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
EP15189890.5A
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German (de)
English (en)
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EP3009389B2 (fr
EP3009389B1 (fr
Inventor
Dipl.-Ing. Lars Rudolf Kollmorgen
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.)
K-Solutions GmbH
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K-Solutions GmbH
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Application filed by K-Solutions GmbH filed Critical K-Solutions GmbH
Priority to PL15189890T priority Critical patent/PL3009389T5/pl
Publication of EP3009389A1 publication Critical patent/EP3009389A1/fr
Application granted granted Critical
Publication of EP3009389B1 publication Critical patent/EP3009389B1/fr
Publication of EP3009389B2 publication Critical patent/EP3009389B2/fr
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B5/00Applications of checking, fault-correcting, or safety devices in elevators
    • B66B5/0006Monitoring devices or performance analysers
    • B66B5/0018Devices monitoring the operating condition of the elevator system
    • B66B5/0025Devices monitoring the operating condition of the elevator system for maintenance or repair

Definitions

  • the present invention relates to a method for parameterizing an elevator installation, information being displayed and input via a user interface, which is connected to a control of the elevator installation, in order to set a desired function of the elevator installation. Furthermore, the invention relates to an elevator system with a controller and a handset with a user interface for inputting information for parameterizing the elevator system.
  • Elevator systems are known from the prior art, which have one or more elevator cars. Elevators are for the purpose of carrying people and / or loads in a building from one stop on one floor to another stop on another floor. To make this possible technically, the elevator system has a large number of technical components such as drive, elevator car, cabin doors and landing doors. In order to enable the interaction of all technical components, the elevator system also has a controller.
  • a fitter In order to achieve a desired operating behavior of the elevator system (functions such as approaching the floors), a fitter must the lift system parameters. Parameterization means that the installer sets the desired function of the technical components of the elevator installation. For example, the functioning of the positioning system must be adjusted so that the stops are approached flush. Under a fitter here should be understood any kind of person who makes adjustments to the elevator system and not only served for the purpose of transport. This can be, for example, a system installer, a control installer or a service technician.
  • the control system has a user interface. Under a user interface is here to understand any input / output means, such as a screen with keyboard or a touch screen. Information is then displayed on this user interface and entered by the fitter to set a desired function of the elevator installation. Information means any type of value that describes or influences the behavior of the elevator system (for example, number of floors served, legal requirements to be met, etc.).
  • the parameterization of the technical components is carried out according to the prior art according to the technical structure of the elevator installation. For example, the exact function of the drive or doors is set. For cross-component tasks, such as the optimization of the energy consumption of the entire elevator system, the installer must therefore independently navigate in a variety of component menus, and make there settings. For example, in one drive menu he has to reduce the speed of the elevator car and optimize the standby consumption of the system in another menu in order to implement his actual task "optimizing the energy consumption of the elevator system".
  • the fitter must therefore set the desired function for each individual component in a vendor-specific menu structure in order to be able to solve his actual overall task. He must therefore navigate through a variety of menus and submenus and know the menu structure of the controller exactly to be able to implement the desired task. Depending on the parameterization task, between five and eight different menus and submenus often come into play, which sometimes have to be set in combination with tables. The fitter easily loses the orientation and overview in this activity, so that he has an optimal implementation the task is difficult. In this respect, fitters relatively often contact the hotline of the manufacturer to obtain appropriate assistance, or the elevator system is not parameterized ideal. This can lead to performance or loss of function.
  • the invention is therefore based on the task of facilitating the parameterization of the fitter and thereby faster and easier to achieve optimum function of the elevator system.
  • this object is achieved in that the method for parameterizing the elevator installation has the following steps:
  • possible parameterization tasks of a user are displayed on the user interface.
  • a specific parameterization task is selected.
  • a function menu relating to the parameterization task is displayed by the controller, which has input fields for information to be entered and output fields which display information about the state of the system.
  • a fourth step information to be entered in the function menu is entered into the input fields, adjustments can be made to the components of the elevator installation, and information about the current state of the installation is displayed via the output fields 32a-e.
  • the settings made are stored in the controller so that the elevator system subsequently performs the desired functions during operation.
  • the inventive method is based on the knowledge that you can completely solve the previous type of parameterization by no longer from the technical component to the function, but vice versa, working from function to component. As a result, the knowledge of the menu structure is no longer necessary.
  • the above-described, highly complicated, previous parameterization is greatly facilitated for the fitter, thereby achieving faster and easier optimal functioning of the elevator.
  • a parameterization task is to be understood here as meaning that the installer is to optimize the elevator installation in such a way that it consumes as little energy as possible, transports a maximum number of passengers in minimum time, or carries out the desired function in the event of a fire.
  • the parameterization method according to the invention eliminates the confusing and complicated parameterization steps which are necessary according to the prior art. Rather, the installer simply selects the desired parameterization task and can then make all the settings that are necessary for this task in a single corresponding function menu.
  • this function menu also displays information about the current state of the lift system
  • the installer also has immediate feedback on how his settings affect the system. For example, it can immediately recognize which terminals of the controller are occupied or which voltage is present without changing the menu.
  • a function menu for parameterizing the performance of the elevator in case of fire is displayed.
  • At least one function menu preferably referred to as a "door table”
  • the door function includes at least one of the steps, "Select floor”, “Select door side”, “Select applicable door type”, “Select door coupling”.
  • the fitter When configuring the elevator system, the fitter must in fact set for each floor which doors should be actuated. This succeeds effectively with this function menu. First, the floor is selected. If the elevator has several doors on several sides, then the corresponding door side and the appropriate door type are selected. If several doors are to be opened at the same time (for example, to allow a passage), the door coupling can also be set.
  • the display of the user interface can be advantageous for the display of the user interface to use a handset which is spatially separated from the elevator and its control and which is wirelessly connected to the control.
  • Such a handset has the advantage that the fitter can move freely in and around the elevator system and is not tied to the position of the controller.
  • a handset e.g. a type of tablet computer with touch screen or any other input / output means can be used.
  • multi-floor information is displayed in such a way that it relates to the vertical section of the elevator installation, preferably displaying several floors. This offers the fitter a good overview.
  • the change of the presentation of multi-floor information to floor-related information is preferably triggered by turning the handset by about 90 °.
  • At least one function menu may display and activate a "favorites symbol", thereby associating this function menu with a favorites menu. This allows the installer to put together his personal favorites menu. This makes even faster parameterization of the lift possible.
  • At least one function menu may display a "help" symbol and to activate it by activating a menu explanation.
  • Such an aid symbol can greatly facilitate the work of the fitter. For example, frequently asked questions can be listed there.
  • the fitter gets a quick help and at the same time does not have to use the cost-intensive resources of a hotline.
  • the fitter is prevented from making the wrong adjustments, because, for example, menus or information are unclear to him, but he nevertheless makes adjustments without asking the hotline.
  • the psychological hurdle to call a menu explanation is much lower than calling a hotline. This further improves the quality of the parameterization.
  • a "split-screen" symbol is displayed on the user interface and the user interface is optically split into two sub-operating units to be operated independently of each other by activating the symbol.
  • This split-screen function offers the advantage that the installer has two operator interfaces that can be operated independently of each other, which allows him even greater flexibility in the parameterization.
  • the possible parameterization tasks (30, 40) are displayed on the user interface (24) structured according to topic areas. Especially with a high number of parameterization tasks, the fitter is thus facilitated to find the required parameterization task. For example, topics such as “Info and Diagnosis”, “Settings”, “Driving commands provide “,””user”,”commissioning and testing", “plant optimization” or "elevator group”.
  • main topics mentioned allow an intuitive parameterization of the elevator system, as the fitter, who is to carry out a parameterization task, can easily assign this parameterization task quickly and clearly to one of the mentioned key topics.
  • the object is achieved by an elevator installation with a controller and a mobile unit having a user interface for inputting information for parameterizing the elevator installation, wherein the elevator installation has at least one data memory and one computing unit which are configured in such a way that the above-described method uses a can be executed on the data store stored data processing program.
  • the controller is a computer on whose arithmetic unit a data processing program runs, which sends output values as control signals to the technical components of the elevator installation. This controls the elevator components in the desired manner (e.g., frequency converters, doors, signals). In addition, the controller receives signals from sensors of the elevator installation (for example light barrier). Only through the interplay of control, actuators (e.g., motor) and sensors (e.g., photocell) does the desired function of the elevator system be achieved.
  • actuators e.g., motor
  • sensors e.g., photocell
  • the user interface can be any input and output means, for example a touch screen or a screen with a keyboard.
  • the user interface is connected via a cable or a wireless connection with the control of the elevator system
  • the arithmetic unit of the controller acts as a web server and the user interface as a web interface using a standard browser, on a control panel, preferably a handset represented so that the parameterization process can be performed.
  • Such a structure has the advantage that as a control panel any technical device can be used on which a standard browser is running. For example, it is also possible to use a normal smartphone with a screen for parameterizing the elevator installation. Thanks to the wireless connection, the installer can also move freely in and around the lift system and check, for example, parallel to the parameterization on the control panel directly at special locations, whether the technical components then also execute the set tasks.
  • FIG. 1 an elevator installation 1 with an elevator control 2 is shown.
  • Fig. 1 is intended only to provide an overview that shows that a variety of technical components such as landing doors, elevator car doors, elevator car, drive, etc. are controlled by the elevator system controller 2.
  • Fig. 2 shows a detailed view of the elevator control 2 from Fig. 1 , with a connected handset 23 for parameterization of the elevator system 1.
  • the elevator control 2 is wirelessly connected by means of WLAN 22 to the handset 23.
  • the controller 21 is connected to the technical components (drive, doors, etc.) of the elevator installation 1 in order to control them.
  • the controller 21 is arranged in the present case in a cabinet. she can However, be attached to any other suitable location of the elevator system.
  • the controller 21 is here a computer with a data memory and a computing unit to record data, store, process and output.
  • the handset 23 is in the present case a portable minicomputer whose front consists of a touch-sensitive screen (touchscreen), which forms a user interface 24. By means of this touch screen, the input and input of information from / to the handset 23 and then from / to the controller 21. By means of the user interface 24 of the handset 23 performs a fitter the parameterization of the elevator system 1.
  • a touch-sensitive screen touchscreen
  • Fig. 3 shown activates the fitter to first the user interface 24 of the control panel.
  • parameterization tasks 30, 40 are displayed on the user interface 24.
  • these are, for example, the parameterization task "Fire Mode Operation” 30 and the parameterization task "Door Table” 40.
  • the installer first selects the parameterization task "Fire Mode Operation” 30 in order to parameterize the fire behavior of the elevator installation 1.
  • the function menu "Fire Mode Operation” 31 will then be displayed, as shown, for example, in Fig. 4 is shown.
  • This function menu has input fields (31a - 31d) for information to be entered and output fields (32a - 32e) which display information about the state of the elevator installation 1.
  • input in the input field 31a is via which standard the activation of the fire mode operation takes place and, for example, displayed in the output field 32e, whether a fire detector is connected to the terminal of the controller 21.
  • the fitter can also make adjustments to the components of the elevator installation. For example, a fire alarm could be connected to the terminals of the controller 21.
  • the installer receives in the function menu 31, e.g. in the output field 31e, immediately from the controller 21, the feedback that the fire detector has been successfully connected.
  • the function menu "door table” 41 is shown.
  • the fitter can set the correct function of all doors of the elevator system. For this he selects, for example, in the input field 41a, the floor to be set. He then selects the required door page for this floor in the input field 41b. He then selects the desired door type in the input fields 41c-41e, as well as the door coupling required in the input fields 41f-41h. If necessary, the installer repeats the above steps for the remaining floors. By pressing the "Save and Return" input field 25, the inputs are then stored in the controller and leave the function menu 41 again.

Landscapes

  • Indicating And Signalling Devices For Elevators (AREA)
  • Elevator Control (AREA)
EP15189890.5A 2014-10-15 2015-10-15 Procédé de parametrage d'un ascenseur et ascenseur comportant une interface utilisateur destinée au parametrage Active EP3009389B2 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL15189890T PL3009389T5 (pl) 2014-10-15 2015-10-15 Sposób parametryzacji układu dźwigowego oraz układ dźwigowy z interfejsem użytkownika do parametryzacji

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102014114928.9A DE102014114928A1 (de) 2014-10-15 2014-10-15 Verfahren zum Parametrieren einer Aufzugsanlage und Aufzugsanlage mit einer Bedienoberfläche zur Parametrierung

Publications (3)

Publication Number Publication Date
EP3009389A1 true EP3009389A1 (fr) 2016-04-20
EP3009389B1 EP3009389B1 (fr) 2018-12-05
EP3009389B2 EP3009389B2 (fr) 2022-02-23

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EP (1) EP3009389B2 (fr)
DE (1) DE102014114928A1 (fr)
ES (1) ES2713023T5 (fr)
PL (1) PL3009389T5 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106276457A (zh) * 2016-08-19 2017-01-04 安徽奥里奥克科技股份有限公司 电梯数据管理的方法

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10232275A1 (de) * 2002-04-10 2003-10-30 Takao Suzuki Fahrstuhlsystem und Steuerverfahren hierfür
CN103466401A (zh) * 2013-09-06 2013-12-25 苏州汇川技术有限公司 电梯参数设置系统、方法及智能手机

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Publication number Priority date Publication date Assignee Title
DE50307297D1 (de) * 2003-08-25 2007-06-28 Inventio Ag Verfahren zur Überprüfung einer Aufzugsanlage und Aufzugsanlage
CN201961916U (zh) 2011-02-23 2011-09-07 无锡市展鹏科技有限公司 手持操作器
KR101433363B1 (ko) 2011-07-15 2014-09-04 (주)에이치피엔알티 휴대용 단말을 이용한 승강기 원격관리시스템 및 승강기 유지보수용 휴대용 단말
CN103166401B (zh) 2013-03-01 2016-03-09 武汉华创新源电气有限公司 一种电动轮自卸车用牵引电动机
KR101335929B1 (ko) 2013-06-14 2013-12-04 현대엘리베이터주식회사 모바일 앱을 이용한 엘리베이터의 고장 처리 원격보수 시스템

Patent Citations (2)

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DE10232275A1 (de) * 2002-04-10 2003-10-30 Takao Suzuki Fahrstuhlsystem und Steuerverfahren hierfür
CN103466401A (zh) * 2013-09-06 2013-12-25 苏州汇川技术有限公司 电梯参数设置系统、方法及智能手机

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106276457A (zh) * 2016-08-19 2017-01-04 安徽奥里奥克科技股份有限公司 电梯数据管理的方法

Also Published As

Publication number Publication date
EP3009389B2 (fr) 2022-02-23
ES2713023T5 (es) 2022-04-28
EP3009389B1 (fr) 2018-12-05
PL3009389T3 (pl) 2019-09-30
ES2713023T3 (es) 2019-05-17
DE102014114928A1 (de) 2016-04-21
PL3009389T5 (pl) 2022-04-19

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