Increased stability lifting gear
The present invention relates to lifting gear, more particularly a crane, such as a rotary tower crane and/or mobile crane, having a supporting structure, a determination device for determining a load state and/or an operating state of the supporting structure, and a control unit for controlling actuators of the lifting gear depending on the determined load state and/or operating state, wherein the actuators are allocated to the supporting structure for the active bracing and/or deformation of the supporting structure in a variable manner during lifting gear operation, and the control unit is configured to temporarily and variably brace and/or deform the supporting structure by means of the actuators depending on the detected load state and/or operating state in order to relieve the load on supporting structure parts which are subject to high load.
1 . A lifting gear comprising:
a rotary tower crane or a mobile crane comprising:
a supporting structure;
a determination device for determining a load state and/or an operating state of the supporting structure; and
a control unit for controlling actuators of the lifting gear in response to the determined load state and/or to the determined operating state,
wherein the controlling actuators are allocated to the supporting structure for the active bracing or deformation of the supporting structure in a variable manner during lifting gear operation, and wherein the control unit is configured to temporarily and variably brace or deform the supporting structure with the actuators in response to the detected load state and/or to the detected load state operating state such that to relieve load on supporting structure parts that are subject to high load, wherein the supporting structure comprises at least one boom, from which a load suspension is suspended, wherein the actuators are configured to variably brace or deform the boom during lifting gear operation, wherein a tower is suspended from the at least one boom, and wherein the actuators are configured to variably brace or deform the tower during lifting gear operation.
2 . The lifting gear of claim 1 , wherein the actuators are configured to variably lengthen or shorten longitudinal chords of the boom and/or of the tower during operation.
3 . The lifting gear of claim 1 , wherein the determination device is configured to identify the supporting structure parts subjected to compression during lifting gear operation and/or supporting structure components subjected to tension during lifting gear operation, and wherein the control unit is configured to shorten the supporting structure parts subjected to tension during lifting gear operation or lengthen the supporting structure parts subjected to compression during lifting gear operation with the actuators.
4 . The lifting gear of claim 1 , wherein the determination device is configured to determine a wind load acting on the supporting structure, wherein the control unit is configured to shorten at least one supporting structure portion arranged on a windward side or to lengthen at least one supporting structure portion arranged on a leeward side, depending on the determined wind load.
5 . The lifting gear of claim 4 , wherein the wind load comprises a wind speed and a wind direction.
6 . The lifting gear of claim 5 , wherein the control unit with the actuators variably lengthens a leeward lower chord of a boom and/or leeward corner bars of a tower depending on the determined wind load or variably shortens a windward lower chord of the boom and/or windward corner bars of the tower and/or a windward tensioning element depending on the determined wind load.
7 . The lifting gear of claim 6 , wherein the determination device comprises at least one wind speed sensor and at least one wind direction sensor for determining the wind speed, and wherein the control unit is configured to temporarily manipulate the supporting structure with the actuators in a variable manner depending on a detected wind speed and a detected wind direction.
8 . The lifting gear of claim 5 , wherein the determination device comprises at least one wind speed sensor and at least one wind direction sensor for determining the wind speed, and wherein the control unit is configured to temporarily manipulate the supporting structure with the actuators in a variable manner depending on a detected wind speed and a detected wind direction.
9 . The lifting gear of claim 1 , wherein the determination device comprises a sensor system for detecting deformations and/or loads of a boom and/or a tower, and wherein the control unit is configured to actively manipulate the supporting structure with the actuators depending on sensor signals of said sensor system during lifting gear operation.
10 . The lifting gear of claim 1 , wherein the determination device comprises a sensor system for determining at least one load and/or operating condition parameter from the following group of parameters: set-up condition, support geometry, ballasting, tower height, boom length, boom angle position, trolley position, maximum possible lifting load, maximum possible lifting speed, actual lifting load, actual lifting speed, lifting rope force and supporting structure deformations; and wherein the control unit is configured to actively manipulate the supporting structure during lifting gear operation with the actuators depending on the sensor signals of the sensor system.
11 . The lifting gear according to claim 1 , wherein the determination device comprises an estimation device for estimating at least one set-up condition and/or operating condition parameter on the basis of an existing set-up condition and/or load and/or operating condition data, and wherein the control unit is configured to actively manipulate the supporting structure with the actuators depending on the at least one estimated set-up condition and/or operating condition parameter.
12 . The lifting gear of claim 1 , wherein the determination device comprises a prediction device configured to predict a future load state and/or operating state on the basis of stored data on past lifting gear operations including past listing gear load and operating state data, wherein the control unit is configured to actively manipulate the supporting structure depending on the predicted load state and/or operating state with the actuators.
13 . The lifting gear of claim 1 , wherein the determination device is configured to identify supporting structure parts with lower load capacity reserve and/or stability reserve and supporting structure parts with comparatively higher load capacity reserve and/or stability reserve, wherein the control unit is configured to actively brace or deform the supporting structure depending on the identified supporting structure parts with lower and/or comparatively higher load capacity reserve and/or stability reserve with the actuators so the load capacity reserves and/or stability reserves of the supporting structure parts are made uniform and/or supporting structure parts with lower load capacity reserve and/or stability reserve are relieved and/or supporting structure parts with comparatively higher load capacity reserve and/or stability reserve are loaded.
14 . A lifting gear comprising:
a rotary tower crane or a mobile crane comprising:
a supporting structure;
a determination device for determining a load state and/or an operating state of the supporting structure; and
a control unit for controlling actuators of the lifting gear in response to the determined load state and/or to the determined operating state,
wherein the controlling actuators are allocated to the supporting structure for the active bracing or deformation of the supporting structure in a variable manner during lifting gear operation, and wherein the control unit is configured to temporarily and variably brace or deform the supporting structure with the actuators in response to the detected load state and/or to the detected load state operating state such that to relieve load on supporting structure parts that are subject to high load, wherein the determination device is configured to determine a wind load acting on the supporting structure, wherein the control unit is configured to shorten at least one supporting structure portion arranged on a windward side or to lengthen at least one supporting structure portion arranged on a leeward side, depending on the determined wind load, wherein the wind load comprises a wind speed and a wind direction, wherein the control unit with the actuators variably lengthens a leeward lower chord of a boom and/or leeward corner bars of a tower depending on the determined wind load or variably shortens a windward lower chord of the boom and/or windward corner bars of the tower and/or a windward tensioning element depending on the determined wind load.
15 . A lifting gear comprising:
a rotary tower crane or a mobile crane comprising:
a supporting structure;
a determination device for determining a load state and/or an operating state of the supporting structure; and
a control unit for controlling actuators of the lifting gear in response to the determined load state and/or to the determined operating state,
wherein the controlling actuators are allocated to the supporting structure for the active bracing or deformation of the supporting structure in a variable manner during lifting gear operation, and wherein the control unit is configured to temporarily and variably brace or deform the supporting structure with the actuators in response to the detected load state and/or to the detected load state operating state such that to relieve load on supporting structure parts that are subject to high load, wherein the determination device comprises an estimation device for estimating at least one set-up condition and/or operating condition parameter on the basis of an existing set-up condition and/or load and/or operating condition data, and wherein the control unit is configured to actively manipulate the supporting structure with the actuators depending on the at least one estimated set-up condition and/or operating condition parameter.
16 . A lifting gear comprising:
a rotary tower crane or a mobile crane comprising:
a supporting structure;
a determination device for determining a load state and/or an operating state of the supporting structure; and
a control unit for controlling actuators of the lifting gear in response to the determined load state and/or to the determined operating state,
wherein the controlling actuators are allocated to the supporting structure for the active bracing or deformation of the supporting structure in a variable manner during lifting gear operation, and wherein the control unit is configured to temporarily and variably brace or deform the supporting structure with the actuators in response to the detected load state and/or to the detected load state operating state such that to relieve load on supporting structure parts that are subject to high load, wherein the determination device comprises a prediction device configured to predict a future load state and/or operating state on the basis of stored data on past lifting gear operations including past listing gear load and operating state data, wherein the control unit is configured to actively manipulate the supporting structure depending on the predicted load state and/or operating state with the actuators.
17 . A lifting gear comprising:
a rotary tower crane or a mobile crane comprising:
a supporting structure;
a determination device for determining a load state and/or an operating state of the supporting structure; and
a control unit for controlling actuators of the lifting gear in response to the determined load state and/or to the determined operating state,
wherein the controlling actuators are allocated to the supporting structure for the active bracing or deformation of the supporting structure in a variable manner during lifting gear operation, and wherein the control unit is configured to temporarily and variably brace or deform the supporting structure with the actuators in response to the detected load state and/or to the detected load state operating state such that to relieve load on supporting structure parts that are subject to high load, wherein the determination device is configured to identify supporting structure parts with lower load capacity reserve and/or stability reserve and supporting structure parts with comparatively higher load capacity reserve and/or stability reserve, wherein the control unit is configured to actively brace or deform the supporting structure depending on the identified supporting structure parts with lower and/or comparatively higher load capacity reserve and/or stability reserve with the actuators so the load capacity reserves and/or stability reserves of the supporting structure parts are made uniform and/or supporting structure parts with lower load capacity reserve and/or stability reserve are relieved and/or supporting structure parts with comparatively higher load capacity reserve and/or stability reserve are loaded.