Controlling of lifting device
11339035 · 2022-05-24
Assignee
Inventors
Cpc classification
B66C17/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B66C13/40
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method and equipment for controlling a lifting device, wherein a main steering direction of the control device used by an operator is selected from at least two options; the impact of the control device on the directions of motion of the lifting device is changed according to the selected main steering direction; and the lifting device is controlled with a control device.
Claims
1. A method for controlling a lifting device, comprising: selecting a main steering direction of a control device used by an operator from only one of a first main steering direction and a second main steering direction, the second main steering direction being opposite to the first main steering direction, the first main steering direction and the second main steering direction being a longitudinal direction of movement of the lifting device; changing an impact of the control device on directions of motion of the lifting device to correspond to the selected main steering direction; and controlling the lifting device with the control device.
2. The method according to claim 1, wherein the lifting device is selected from a group consisting of the following: an industrial crane; a bridge crane; a jib; a gantry crane; and a semi-gantry crane.
3. The method according to claim 1, comprising presenting the selected main steering direction to the operator.
4. The method according to claim 3, comprising presenting the selected main steering direction with the control device.
5. The method according to claim 1, comprising selecting the main steering direction based on a command given by the operator.
6. The method according to claim 5, comprising detecting the command given by the operator from the use of a switch changing the main steering direction.
7. The method according to claim 1, comprising automatically selecting the main steering direction.
8. The method according to claim 7, comprising allowing to change the main steering direction only if the crane is stationary.
9. The method according to claim 1, comprising simultaneously controlling two or more lifting devices with the control device according to the selected main steering direction.
10. The method according to claim 1, further comprising, after selecting the main steering direction generating a mark visible to the operator in a direction of the selected main steering direction and generating a direction indicator on the control device that corresponds to the direction of the main steering direction.
11. A control system of a lifting device comprising: a control device; means for selecting a main steering direction of the control device used by an operator from only one of a first main steering direction and a second main steering direction, the second main steering direction being opposite to the first main steering direction, the first main steering direction and the second main steering direction being a longitudinal direction of movement of the lifting device; means for changing an impact of the control device on directions of motions of the lifting device to correspond to the selected main steering direction; and means for controlling the lifting device with the control device.
12. The control system of the lifting device according to claim 11, wherein the control system of the lifting device comprises means for achieving the method according to claim 2.
13. A lifting device system comprising: a lifting device; the lifting device system comprises the control system of the lifting device according to claim 11.
14. The lifting device system according to claim 13, wherein the lifting device system comprises two lifting devices wherein, in the lifting device system, the control system is adapted to be capable of simultaneously controlling said lifting devices according to the selected steering direction.
15. A non-transitory computer program product, wherein the non-transitory computer program product comprises program code, which when executed by a computer, causes the computer to: select a main steering direction of a control device used by an operator from only one of a first main steering direction and a second main steering direction, the second main steering direction being opposite to the first main steering direction, the first main steering direction and the second main steering direction being a longitudinal direction of movement of a lifting device; change an impact of the control device on directions of motion of the lifting device to correspond to the selected main steering direction; and control the lifting device with the control device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Some embodiments of the present disclosure will be described with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION
(8) In the following description, like reference signs denote like elements or steps. It should be noted that the figures presented are not to scale in their entirety, and that they mainly serve only an illustrative purpose.
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(10) The mark 140 of the first main steering direction, such as a directional signal indicated with a certain pattern, color and/or light, is in the front direction, i.e. approximately in the gaze direction, of the operator. The control device has a corresponding direction indicator 240 (
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(12) The lifting device may be a bridge crane including a main girder 132 and a trolley 134. The main girder 132 is adapted to run along rails 136, in
(13) When controlling from the floor level, it is common that the operator's front direction may turn in relation to the lift and the load.
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(16) The control device further comprises a data transfer unit I/O 330 to transfer data with the control device and a lifting device or control means of a lifting device and to transfer data between the control device and smart glasses 610 shown in
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(19) The main steering direction can be selected based on a command given by the operator. The command given by the operator can be detected from the use of a switch changing the main steering direction. Detecting the command given by the operator may require passing a determined time threshold. E.g. changing the main steering direction may require that the operator holds down the switch 250 changing the main steering direction for at least the duration of the time threshold. In an embodiment of the present disclosure, a progressive status indicator showing how the time threshold is elapsing is presented to the operator.
(20) The selected main steering direction can be presented to the operator e.g. with the direction indicator 240. The selected main steering direction can be presented with the control device. The selected main steering direction can be presented with an indicator placed outside the lifting device. The indicator may comprise a mark attached to a wall or a structure, such as the mark of the main steering direction 140, 140′. The mark may be formed using at least one light, color coding, a pattern or a clearly distinguishable piece. The selected main steering direction can be displayed from the control device by projection to its surroundings as a pattern. The pattern can be projected onto a floor, a wall or dust in the room air. The selected main steering direction can be presented with smart glasses.
(21) The main steering direction may be selected automatically. The main steering direction can be selected automatically by using the orientation detection of the control device. The automatic orientation detection of the control device can function by using any of the following: a gyroscope, magnetometer, optical detection. The smart glasses can contain an image sensor, through which the main steering direction can be detected based on the field of view of the operator. The automatic selection of the main steering direction can only be implemented if the crane is stationary. The automatic selection of the main steering direction can be subjected to the operator's approval. On using the automatic selection of a main steering direction, a separate approval can be prompted from the operator after the main steering direction has been changed. The approval can be prompted also, if it is automatically detected from a change in the operator's front direction or in the orientation of the control device, that the main steering direction should be changed or the front direction or the orientation of the control device is at a transitional interval between two different main steering directions. The transitional interval can be e.g. a 10, 15 or 30 degree wide sector.
(22) The main steering direction can be selected from two opposite main steering directions. Using two opposite main steering directions the user interface elements of the longitudinal and lateral control can be retained in their positions.
(23) The control device may comprise one control unit receiving input from the operator. Optionally, the control device may comprise two different control units receiving input from the operator. Different control units can be associated with different main steering directions. Using different control units can prevent accidentally moving the lifting device in the wrong direction e.g. when automatically selecting the main steering direction.
(24) Optionally, the main steering direction can be selected from four different main steering directions.
(25) In the light of the aforementioned descriptions several advantageous technical effects appear. E.g. selecting the main steering direction yields the advantage, that when the operator is viewing a lift in his own front direction, the operator can always drive clearly away from himself (or towards himself). When big or extended pieces are lifted, a joint two hook lift is often used in the attachment, e.g. lifting a common loading member or with two hoists (tandem). The implementation of the two hoists can be done with one lifting device (e.g. two hoists in one bridge crane) or with a joint use of two lifting devices, e.g. a joint lift with two bridge cranes. The loading member can contain a rigid bar supporting two hooks, especially when the distance between the hooks is constant. This may occur e.g. in paper or steel industry when large, finished rolls and coils are lifted. In the maintenance, lifting rolls and rollers may be necessary when changing them. The same problem is encountered in the assembly of large bodies, e.g. lifting the wing of an airplane or turning it into a new orientation. The problem of the operator is the visual barrier created between the hooks by the large load, i.e. the attachment points of both hooks cannot be seen from one standpoint. To assure himself of the attachments, the operator should move to different sides of the load, which may change the front direction. For this problem, i.e. to demonstrate the reliable attachment of several attachments, mechanical indication devices or signaling means exists, but these do not always work and them being out of order do not prevent driving the crane.
(26) The foregoing description provides non-limiting examples of particular implementations and embodiments of the present disclosure. It is however clear to a person skilled in the art that the present disclosure is not restricted to details of the embodiments presented in the foregoing, but that it can be implemented in other equivalent ways.
(27) Some of the features of the afore-disclosed embodiments may be used to advantage without the corresponding use of other features. As such, the foregoing description shall be considered as merely illustrative of the principles of the present disclosure and not as limiting the invention. The scope of the present disclosure is only restricted by the appended patent claims.