Device and method for monitoring an elevator system

US2020172373A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2020172373-A1
Application numberUS-201916702047-A
CountryUS
Kind codeA1
Filing dateDec 3, 2019
Priority dateDec 3, 2018
Publication dateJun 4, 2020
Grant date

How to read this patent

A practical reading order for non-experts. Skip the full description unless you need deep technical detail.

  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

    Who owns or filed the patent and who is credited as inventor.

  4. Key dates

    Filing, priority, publication, and grant dates set the timeline.

  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

    Prior art links and similar publications in this corpus.

Abstract

Official abstract text for this publication.

A method of calibrating a monitoring device ( 20 ) for monitoring movement of a movable component ( 2, 12, 19 ) of an elevator system ( 2 ) comprises detecting ( 120 ) a travel time (Δt k ) between a starting time (t k ) and a stopping time (t′ k ) as well as acceleration (a(t)) of at least one movement of the movable component ( 2, 12, 19 ); determining ( 130, 140 ) a travel distance of the movable component ( 2, 12, 19 ) by integrating the detected acceleration (a(t)) twice with respect to the detected travel time (Δt k ); correlating ( 150 ) the determined travel distance (s k ) with the detected travel time (Δt k ) to form a pair of travel time and travel distance; and storing ( 160 ) the pair of travel time and travel distance (Δt k ,s k ) as part of a travel profile ( 34 ).

First claim

Opening claim text (preview).

What is claimed is: 1 . A method of calibrating a monitoring device ( 20 ) for monitoring movement of a movable component ( 2 , 12 , 19 ) of an elevator system ( 2 ) configured for traveling between a plurality of floors ( 8 a , 8 b , 8 c ), wherein the method comprises: detecting a travel time (Δt k ) between a starting time (t k ) and a stopping time (t′ k ) as well as acceleration (a(t)) of at least one movement of the movable component ( 2 , 12 , 19 ); determining a travel distance of the movable component ( 2 , 12 , 19 ) by integrating the detected acceleration (a(t)) twice with respect to the detected travel time (Δt k ); correlating the determined travel distance (s k ) with the detected travel time (Δt k ) to form a pair of travel time and travel distance; storing the pair of travel time and travel distance (Δt k ,s k ) as part of a travel profile ( 34 ). 2 . The method according to claim 1 , wherein the method further includes correlating the determined travel time (Δt k ) with a pair of floors ( 8 a , 8 b , 8 c ) including a starting floor ( 8 a , 8 b , 8 c ) and a stopping floor ( 8 a , 8 b , 8 c ) of the movable component ( 2 , 12 , 19 ). 3 . The method according to claim 1 , wherein the method further includes determining a position (z k , z′ k ) of the movable component ( 2 , 12 , 19 ) at the starting time (t k ) and/or at the stopping time (t′ k ), and storing the determined position (z k , z′ k ) together with the pair of travel time and travel distance (Δt k ,s k ). 4 . The method according to claim 1 , wherein the method includes moving the movable component ( 2 , 12 , 19 ) between all pairs of floors ( 8 a , 8 b , 8 c ) of the elevator system ( 2 ) and determining and storing the travel times (Δt k ) and travel distances (s k ) for every pair of floors ( 8 a , 8 b , 8 c ). 5 . A method of determining a travel distance of a movable component ( 2 , 12 , 19 ) of an elevator system ( 2 ), the method comprising: determining that a movable component ( 2 , 12 , 19 ) of an elevator system ( 2 ) is moving; determining a travel time (Δt k ) of the movable component ( 2 , 12 , 19 ); and determining the travel distance (s k ) of the movable component ( 2 , 12 , 19 ) and/or the number of floors ( 8 a , 8 b , 8 c ) the movable component ( 2 , 12 , 19 ) has passed based on the travel time (Δt k ) in combination with a travel profile ( 34 ) correlating the travel time (Δt k ) with a travel distance (s k ) and/or with the number of floors ( 8 a , 8 b , 8 c ) the movable component ( 2 , 12 , 19 ) has passed, wherein the travel profile ( 34 ) in particular is a travel profile ( 34 ) generated by the method according to claim 1 . 6 . The method according to claim 5 , wherein the method includes summing up the absolute values of the determined travel distances (s k ) of the movable component ( 2 , 12 , 19 ) and/or the number of floors ( 8 a , 8 b , 8 c ) the movable component ( 2 , 12 , 19 ) has passed over a plurality of movements of the movable component ( 2 , 12 , 19 ) thereby generating a total travel distance (s total ) of the movable component ( 2 , 12 , 19 ). 7 . A method of determining a position of a movable component ( 2 , 12 , 19 ) of an elevator system ( 2 ), wherein the method comprises: determining a starting position (z k ) of the movable component ( 2 , 12 , 19 ); determining a direction of movement of the movable component ( 2 , 12 , 19 ); determining a travel distance (s k ) of the movable component ( 2 , 12 , 19 ) and/or the number of floors ( 8 a , 8 b , 8 c ) the movable component ( 2 , 12 , 19 ) has passed employing the method according to claim 4 ; determining a current position (z k+1 ) of the movable component ( 2 , 12 , 19 ) by adding or subtracting the determined travel distance (s k ) and/or the number of floors ( 8 a , 8 b , 8 c ) the movable component ( 2 , 12 , 19 ) has passed to/from the starting position (z k ); wherein the method in particular includes setting the current position (z k+1 ) of the movable component ( 2 , 12 , 19 ) as a new starting position, after the movement of the movable component ( 2 , 12 , 19 ) has been stopped. 8 . The method according to claim 1 , wherein the movable component ( 2 , 12 , 19 ) is an elevator car ( 6 ), a counterweight ( 19 ), or an elevator car door ( 12 ). 9 . A monitoring device ( 20 ) for monitoring movement of a movable component ( 2 , 12 , 19 ) of an elevator system ( 2 ) configured for traveling between a plurality of floors ( 8 a , 8 b , 8 c ), wherein the monitoring device ( 20 ) comprises: a travel sensor ( 24 ) including an acceleration sensor ( 22 ) configured for detecting acceleration (a(t)) of the movable component ( 2 , 12 , 19 ) and providing a corresponding acceleration signal; a memory ( 28 ); and a controller ( 26 ) configured for determining a travel time (Δt k ) of the movable component ( 2 , 12 , 19 ) and generating a corresponding travel time signal; determining a travel distance (s k ) of the moving component by integrating the detected acceleration (a(t)) twice with respect to the detected travel time (Δt k ); correlating the determined travel distance (s k ) with the detected travel time (Δt k ) forming a pair of travel time and travel distance (Δt k ,s k ); and storing the pair of travel time and travel distance (Δt k ,s k ) as part of a travel profile ( 34 ) in the memory ( 28 ). 10 . The monitoring device ( 20 ) according to claim 9 , wherein the controller ( 26 ) is further configured for correlating the determined travel time (Δt k ) with a pair of floors ( 8 a , 8 b , 8 c ) including a starting floor ( 8 a , 8 b , 8 c ) and a stopping floor ( 8 a , 8 b , 8 c ) of the movable component ( 2 , 12 , 19 ). 11 . The monitoring device ( 20 ) according to claim 9 , wherein the controller ( 26 ) is further configured for: receiving a travel time signal from the travel sensor ( 24 ); and determining the travel distance (s k ) of the movable component ( 2 , 12 , 19 ) and/or the number of floors ( 8 a , 8 b , 8 c ) the movable component ( 2 , 12 , 19 ) has passed based on the travel time signal (Δt k ) in combination with the travel profile ( 34 ) stored in the memory ( 28 ). 12 . The monitoring device ( 20 ) according to any claim 9 , wherein the monitoring device ( 20 ) further configured for determining a starting position (z k ) of the movable component ( 10 , 12 , 19 ), and storing the pair of travel time and travel distance (Δt k ,s k ) together with the starting position (z k ). 13 . A monitoring device ( 20 ) for monitoring movement of a movable component ( 2 , 12 , 19 ) of an elevator system ( 2 ) configured for traveling between a plurality of floors ( 8 a , 8 b , 8 c ), wherein the monitoring device ( 20 ) comprises: a travel sensor ( 24 ) configured for detecting a travel time of the movable component ( 2 , 12 , 19 ) and providing a corresponding travel time signal; a memory ( 28 ) storing a travel profile ( 34 ), in particular a travel profile ( 34 ) generated by a method according to claim 1 , wherein the travel profile ( 34 ) comprises a plurality of pairs of travel time and travel distance (Δt k ,s k ) respectively correlating a travel time (Δt k ) with a travel distance (s k ) of the movable component ( 2 , 12 , 19 ) and/or with the number of floors ( 8 a , 8 b , 8 c ) the movable component ( 2 , 12 , 19 ) has passed; and a controller ( 26 ) configured for: receiving the travel

Assignees

Inventors

Classifications

  • B66B5/0018Primary

    Devices monitoring the operating condition of the elevator system · CPC title

  • Door or gate operation (of general application E05F) · CPC title

  • Position or motion detectors or driving means for the detector (B66B1/40, B66B1/50 take precedence; length measuring G01B; speed measuring G01P) · CPC title

  • Performance analysers · CPC title

  • B66B1/3407Primary

    Setting or modification of parameters of the control system · CPC title

Patent family

Related publications grouped by family.

External sources

Frequently asked questions

Answers are generated from the same data shown on this page.

What does patent US2020172373A1 cover?
A method of calibrating a monitoring device ( 20 ) for monitoring movement of a movable component ( 2, 12, 19 ) of an elevator system ( 2 ) comprises detecting ( 120 ) a travel time (Δt k ) between a starting time (t k ) and a stopping time (t′ k ) as well as acceleration (a(t)) of at least one movement of the movable component ( 2, 12, 19 ); determining ( 130, 140 ) a travel distance of the mo…
Who is the assignee on this patent?
Otis Elevator Co
What technology area does this patent fall under?
Primary CPC classification B66B5/0018. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Thu Jun 04 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).