Claims
- 1. A system for assembling and disassembling a plurality of elongate mast sections adapted to be attached together in end-to-end configuration so as to form a unitary mast, the system comprising:
- a base defining a reference plane spaced a distance H.sub.e above the surface on which the base rests;
- lifting means attached to said base for moving said mast up and down along a vertical path having a length greater than the length of one of said plurality of sections, said lifting means comprising a lifting carriage which is releasably couplable with each of said plurality of mast sections and is adapted to move up and down along said vertical path;
- a plurality of guy lines each having first and second ends, said first ends of said guy lines being attached to said mast at a selected location thereon;
- a plurality of winch means, each for reeling in and feeding out a corresponding respective one of said plurality of guy lines, each of said plurality of winch means being attached to said second end of said corresponding respective one of said plurality of guy lines and being spaced (1) a distance D from said mast, as measured along a horizontal axis and (2) a distance E above or below a horizontal plane intersecting the surface on which said base rests, as measured along a vertical axis, each of said plurality of winch means being adapted to reel in or feed out a length of said corresponding respective one of said plurality of guy lines upon receipt of a first control signal which length depends upon information contained in said first control signal, each of said plurality of winch means being adapted to be anchored to a surface;
- first length sensor means coupled to said lifting means for providing a first output signal that is representative of the distance H.sub.c said lifting carriage is spaced from said reference plane, as measured along the length of said mast;
- a plurality of second length sensor means, each being coupled to a corresponding respective one of said plurality of winch means, each for providing a second output signal that is representative of the length L.sub.m of that portion of said corresponding respective one of said plurality of guy lines which has been unreeled from said one of said plurality of winch means; and
- computer means coupled to said first length sensor means, said plurality of second length sensor means, and said plurality of winch means for generating a unique first control signal for each of said plurality of winch means and for providing each of said unique first control signals to a corresponding respective one of said plurality of winch means, said unique first control signals being generated so as to contain information which causes each of said plurality of winch means to reel in and feed out said corresponding respective one of said plurality of guy lines such that said lengths of said plurality of guy lines unreeled from said plurality of winch means are those lengths which cause said mast to be supported in a substantially vertical position during the assembly or disassembly thereof.
- 2. A system according to claim 1 further comprising keypad means for use in providing values to said computer means (a) for said distances D and E for each of said plurality of winch means and (b) for said distance H.sub.e, further wherein said computer means is designed to generate said first control signal for each of said plurality of winch means based on information contained in said first and second output signals and based on the values for said distances D, E and H.sub.e.
- 3. A system according to claim 2 wherein said computer means comprises calculating means for calculating an optimal length L.sub.c of guy line to be unreeled from each of said plurality of winch means using trigonometric formulae, information contained in said first output signal and said second output signals, and the values for said distances D, E and H.sub.e, said optimal lengths L.sub.c being calculated so as to be equal to those lengths of guy line which when coupled between said selected location on said mast and respective ones of said plurality of winch means will act together so as to support said selected location directly vertically above the bottom of said mast whereby said mast is supported in a substantially vertical position.
- 4. A system according to claim 3, further wherein said calculating means is designed to subtract each of said optimal lengths L.sub.c from the length L.sub.m contained in the second output signal provided by the one of said plurality of second length sensor means coupled with the one of said plurality of winch means for which said each optimal length L.sub.c was calculated so as to provide a difference value, further wherein said computer means is designed to generate each of said first control signals provided to respective ones of said plurality of winch means based on the respective one of these difference values.
- 5. A system according to claim 1 wherein said lifting carriage is designed to slidably engage said elongate member so as to be movable along the length of said elongate member, said lifting means further comprising:
- an elongate member attached to said base so as to extend perpendicular to said reference plane; and
- motor means coupled to said lifting carriage for causing said lifting carriage to move up and down along the length of said elongate member.
- 6. A system according to claim 1 wherein each of said plurality of winch means comprises:
- a rotatable winch designed to reel in a corresponding respective one of said plurality of guy lines wound around said rotatable winch when the latter is rotated in a first direction and to feed out said corresponding respective one of said plurality of guy lines when said winch is rotated in a second direction;
- a reversible motor coupled to said winch for causing said winch to rotate in said first and second directions;
- a servo mechanism coupled to said motor for causing said motor to operate (a) for a period of time and (b) in either a forward or a reverse direction, based upon the information contained in said first control signal so as to cause said winch to reel in or feed out said corresponding respective one of said plurality of guy lines, said servo mechanism being coupled to said computer means so as to receive said first control signal.
- 7. A system according to claim 4 wherein said first length sensor means is designed so that said distance H.sub.c represented in said first output signal varies substantially instantaneously as said lifting carriage is caused to move up and down said elongate member.
- 8. A system according to claim 1 said assembly further comprising:
- a second plurality of guy lines having first and second ends, said first ends of said guy lines being attached to said mast at a second predetermined location that is spaced a distance H.sub.s from said selected location;
- a second plurality of winch means each for storing and for reeling in and feeding out a corresponding respective one of said second plurality of guy lines, each of said second plurality of winch means being attached to said second end of said corresponding respective one of said second plurality of guy lines and being spaced (1) a distance D from said mast, as measured along a horizontal axis and (2) a distance E above or below a horizontal plane intersecting the surface on which said base rests, as measured along a vertical axis, each of said second plurality of winch means being adapted to reel in or feed out a length of said corresponding respective one of said second plurality of guy lines upon receipt of a second control signal which length depends upon information contained in said second control signal, each of said second plurality of winch means being adapted to be anchored to a surface;
- a second plurality of second length sensor means, each being coupled to a corresponding respective one of said second plurality of winch means, each for providing a second output signal that is representative of the length L.sub.m of that portion of said corresponding respective one of said second plurality of guy lines which has been unreeled from said one of said second plurality of winch means;
- said computer means also being coupled to said second plurality of winch means, and said second plurality of second length sensor means, said computer means being designed to generate unique second control signals for each of said second plurality of winch means and to provide each of said second control signals to respective ones of said second plurality of winch means, said second control signals being generated so as to contain information which causes each of said second plurality of winch means to reel in and feed out said corresponding respective one of said second plurality of guy lines such that the lengths of said second plurality of guy lines unreeled from said second plurality of winch means are those lengths which cause said mast to be supported in a substantially vertical position during the assembly or disassembly thereof.
- 9. Apparatus for assembling or disassembling a plurality of elongate mast sections adapted to be attached together end-to-end so as to form a unitary mast, said apparatus comprising:
- a frame comprising a reference surface;
- a lifting carriage attached to said frame and couplable with at least one of said sections of said mast, said lifting carriage being adapted to move said mast up and down along a vertical path;
- a plurality of guy lines each having first and second ends, said first ends being attached to said mast at a selected position thereon;
- a plurality of winch assemblies each adapted to be anchored to a surface, each of said plurality of winch assemblies comprising a rotatable winch operable in either a forward or a reverse direction for feeding out or reeling in, respectively, a corresponding respective one of said plurality of guy lines, and a motor for causing said winch to rotate in either said forward direction or said reverse direction upon receipt of a control signal, wherein the direction in which each of said motors causes said corresponding respective one of said plurality of winches to rotate and the length of time said each of said motors causes said corresponding respective one of said plurality of winches to rotate in said forward direction or said reverse direction is based upon information contained in said control signal;
- a first length sensor coupled to said lifting carriage and designed to provide a first output signal (1) which is representative of the height said lifting carriage is positioned above said reference surface and (2) which varies continuously as said lifting carriage moves along said vertical path;
- a plurality of second length sensors each coupled to a corresponding respective one of said plurality of winch assemblies, each of said plurality of second length sensors being designed to provide a second output signal which is representative of the length of said corresponding respective one of said plurality of guy lines which has been unreeled from the one of said plurality of winch assemblies to which said each plurality of second length sensors is coupled; and
- a computer coupled to each of said motors of said plurality of winch assemblies, to said first length sensor, and to said plurality of second length sensors, for generating a unique one of said control signals for each of said motors based on information contained in said first output signal, said second output signals, the distance each of said winch assemblies is spaced horizontally and vertically from the surface on which said lifting carriage rests, the distance said reference is positioned above said surface on which said lifting carriage rests, and trigonometric formulae, said control signals being generated to contain information which when received by said motors will cause said motors to operate in either said forward or reverse directions and for periods of time so that the lengths of said plurality of guy lines unreeled from said plurality of winches are such that said plurality of guy lines acting together support said mast in a vertical position.
- 10. An apparatus for assembling and disassembling a plurality of elongate mast sections designed to be attached together in end-to-end configuration so as to form a unitary mast, the system comprising:
- lifting carriage means for raising or lowering a mast from the bottom end thereof;
- a plurality of winches for unreeling guy line attaching thereto and also attached to said mast based on information contained in control signals provided to said winches so that the lengths of guy line unreeled from said plurality of winches are such that said guy lines acting together cause said mast to be supported in a vertical position as said mast is raised, lowered or supported in an immobile state by said lifting carriage means; and
- computer means for generating a unique one of said control signals for each of said plurality of winches.
Government Interests
This invention was made with Government support under Contract No. DAAB07-83-C-K588 awarded by the U.S. Army. The Government has certain rights in this invention.
US Referenced Citations (9)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0296957 |
Dec 1988 |
EPX |