Method and device for determining a mapping of a number of floors to be served by an elevator and for determining relative trip-dependent data of an elevator car
US-2021371233-A1 · Dec 2, 2021 · US
US2020172373A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2020172373-A1 |
| Application number | US-201916702047-A |
| Country | US |
| Kind code | A1 |
| Filing date | Dec 3, 2019 |
| Priority date | Dec 3, 2018 |
| Publication date | Jun 4, 2020 |
| Grant date | — |
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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 ).
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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
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