Claims
- 1. A control system for a liftcrane having mechanical subsystems powered by an engine and connected thereto by a closed loop hydraulic system having individual closed hydraulic loops associated with the mechanical subsystems, comprising:
- a first mechanical subsystem powered by the engine and connected thereto by a first closed hydraulic loop,
- a first set of controls for outputting signals for operation of said first mechanical subsystem.
- a first sensor operable to sense the pressure in the closed hydraulic loop and for outputting signals indicative thereof,
- a mode selector for providing an operator with a selection of alternative modes of liftcrane mechanical subsystem operation and adapted to output a signal representative of said selection and wherein at least two of the alternative modes of liftcrane mechanical subsystem operation are fully operational modes; and
- a programmable controller connected to said set of controls, said first sensor, and said mode selector, said programmable controller adapted to run a routine operable to output signals to said first mechanical subsystem for the operation thereof based upon the signals output by said set of controls, said first sensor, and said mode selector.
- 2. The control system of claim 1 further comprising:
- a second sensor operable to sense the position or speed of said first mechanical subsystem, said second sensor also connected and operable to provide an output to said controller indicative of the position or speed of said first mechanical subsystem, and further in which said programmable controller is adapted to run a routine operable to output signals to said first mechanical subsystem for the operation thereof based upon the outputs of said set of controls and said second sensor.
- 3. The control system of claim 2 further comprising:
- a second mechanical subsystem powered by the engine and connected thereto by a second closed hydraulic loop,
- a second set of controls connected and adapted to operate said second mechanical subsystem.
- 4. The control system of claim 3 further comprising:
- a third sensor adapted and operable to sense operation of said second set of controls, said third sensor also connected and operable to provide an output to said programmable controller indicative of the status of operation of said second subsystem.
- 5. The control system of claim 1 further comprising:
- a remote control panel connected and adapted to output signals to said programmable controller for operation of said mechanical subsystem.
- 6. The control system of claim 5 further comprising:
- a third mechanical subsystem powered by the engine and connected thereto by a third closed hydraulic, said third mechanical subsystem connected to and adapted to be operated by said remote control panel.
- 7. The control system of claim 1 further comprising:
- a display connected to said programmable controller, said display adapted to indicate to an operator of the liftcrane the status of operation of the mechanical subsystem.
- 8. A control system for operation of liftcrane having mechanical subsystems powered by a engine, each mechanical subsystem connected thereto by an individual closed hydraulic loop, comprising:
- a first mechanical subsystem powered by the engine and connected thereto by a closed hydraulic loop,
- a first set of controls for outputting signals for operation of said first mechanical subsystem,
- a first sensor operable to sense the pressure in the closed hydraulic loop connected to said first mechanical subsystem and to provide an output signal indicative thereof, and
- a programmable controller connected to said first set of controls, said first sensor, and said first mechanical subsystem,
- a mode selector for selecting a desired mode of operation of the first mechanical subsystem, and
- an operating routine adapted to run on said programmable controller, said operating routine comprising:
- first information corresponding to a range of possible signals that can be received from said first set of controls, and
- at least two sets of second information each set corresponding to a range of possible operations of said first mechanical subsystem, said first information being related to each of said sets of second information, and further wherein one of said sets of second information is related to the first information based upon an input from the mode selector,
- whereby said first mechanical subsystem can be operated in accordance with an operating routine run on said programmable controller based upon the output signals of said first set of controls and said first sensor.
- 9. The control system of claim 8 further comprising:
- a second mechanical subsystem powered by the engine and connected thereto by a closed hydraulic loop,
- a second sensor operable to sense at least one of the position and speed of the second mechanical subsystem, said second sensor also connected and operable to provide an output to said programmable controller indicative of the at least one of position and speed of said second mechanical subsystem,
- and further in which said programmable controller is connected to said second mechanical subsystem, whereby said second mechanical subsystem can be operated in accordance with an operating routine run on said programmable controller based upon the output signals of said controls and said second sensor.
- 10. The improved control system of claim 9 further comprising:
- an operating routine stored in a memory of said programmable controller, said operating routine comprising executable instructions for the control and operation of mechanical subsystems of the liftcrane based upon inputs from said controls and sensors.
- 11. An improved control system for a liftcrane having a plurality of mechanical subsystems powered by an engine and each connected thereto by an individual closed hydraulic loop, the system comprising:
- a set of controls for outputting signals for operation of the mechanical subsystems of the liftcrane,
- a set of sensors operable to sense the pressure in at least some of the closed hydraulic loops and for outputting signals indicative thereof,
- a mode selector for providing an operator with a selection of alternative modes of liftcrane mechanical subsystem operation and adapted to output a signal representative of said selection and wherein at last two of the alternative modes of liftcrane mechanical subsystem operation are fully operational modes; and
- a programmable controller connected to said set of controls, said mode selector, and said set of sensors, said programmable controller adapted to run a routine operable to output signals to the mechanical subsystems for the control thereof based upon the signals output by said set of controls, said mode selector, and said first set of sensors.
- 12. The system of claim 11 further comprising:
- a diverting valve interconnecting at least two of said closed hydraulic loops, said diverting valve connected to said programmable controller whereby upon operation of said controls under control of said programmable controller hydraulic pressure can be diverted between closed hydraulic loops.
- 13. An improved method for controlling operation of a liftcrane having and engine and mechanical subsystems each powered by a closed hydraulic loop driven by the engine, comprising the steps of:
- lifting a load with a hoist and a boom;
- applying a brake to the hoist to prevent the load from slipping,
- sensing with a sensor associated with the hoist the application of the brake to the hoist;
- storing data in a memory indicative of the pressure sensed by the sensor associated with the hoist at the time when the brake is applied to said hoist;
- applying pressure to the hoist equal to the pressure indicated by the data stored in the memory; and
- releasing the brake.
- 14. An improved method for performing clamshell work with a liftcrane having an engine and mechanical subsystems each powered by a closed hydraulic loop driven by the engine, comprising the steps of:
- supporting a the load in a clamshell with a first line connected to a hoist drum;
- sensing the pressure in a first closed hydraulic loop connected to a first pump associated with the hoist drum,
- outputting a signal indicative of the pressure sensed in the first closed hydraulic loop to a programmable controller, and
- commanding with the programmable controller a second pump associated with a second hoist drum to maintain a force on a second line connected to the clamshell said force related to the pressure sensed in the first closed hydraulic loop.
- 15. The method of claim 14 in which the said force commanded in the second line is related to the pressure sensed in the first closed hydraulic loop in a manner that the tension in the second line is less than the tension in the first line.
- 16. An improved method for performing swing operation in a liftcrane having an engine and mechanical subsystems each powered by a closed hydraulic loop driven by the engine, comprising the steps of:
- outputting a signal from a control handle to a programmable controller to indicate the desired operation of the swing in a first mode;
- sensing the pressures in a first hydraulic line associated with the swing motor with a first pressure sensor and in a second hydraulic line associated with the swing motor with a second pressure sensor, the first and second hydraulic lines forming a closed hydraulic loop connected to a pump driven by the engine;
- outputting signals to a programmable controller from the first and second pressure sensors; and
- outputting a signal from the programmable controller to the pump to operate the swing based upon a comparison of the signals received from the first pressure sensor, the second pressure sensor, and the control handle.
- 17. The method of claim 15 further comprising the steps of:
- outputting a signal from a control handle to a programmable controller to indicate the desired operation of the swing in a second mode; and
- outputting a signal from the programmable controller to the pump to operate the swing based upon the signal received from the control handle.
- 18. An improved method for controlling operation of a liftcrane having an engine and a hose powered by a closed hydraulic loop driven by the engine, comprising the steps of:
- lifting a load with the hoist;
- applying a brake to the hoist to prevent the load from slipping,
- storing data in a computer memory indicative of the pressure in the closed hydraulic loop that powers the hoist when the brake is applied to said hoist;
- applying pressure to the hoist at least equal to the pressure indicated by the data stored in the computer memory; and
- releasing the brake.
- 19. The method of claim 18 further comprising the steps of:
- after the step of applying a brake to the hoist, sensing with a sensor associated with the closed hydraulic loop that powers the hoist the pressure in the closed hydraulic loop at the time of the application of the brake to the hoist, and
- storing data in the computer memory indicative of the pressure sensed.
- 20. A method of operating a liftcrane having a mechanical subsystem powered by an engine and connected thereto by a closed hydraulic loop, controls in an operator's cab for outputting signals for operation of said mechanical subsystem, a sensor operable to sense the pressure in the closed hydraulic loop and for outputting signals indicative thereof, and a programmable controller connected to said controls and said sensor, said programmable controller adapted to run a routine operable to output signals from said controller to said first mechanical subsystem for the operation thereof based upon the signals output by said controls and said sensor, the method comprising the steps of:
- operating the controls to produce signals indicative of the desired liftcrane subsystem operation;
- outputting said signals to the programmable controller;
- running an operating routine on said programmable controller, said operating routine having:
- first information corresponding to a range of possible signals that can be received from said controls, and
- at least two sets of second information corresponding to a range of possible operation of said liftcrane subsystem,
- said first information being related to each of said sets of second information,
- relating said first information with said second information,
- outputting a signal from said programmable controller to said mechanical subsystem representative of said second information, and
- operating said mechanical subsystem based upon said signal output from said programmable controller.
- 21. The method of claim 20 in which said liftcrane further comprises a mode selection control operable by the liftcrane operator, and the method further comprises the steps of:
- selecting a mode of operation with said mode selector;
- outputting a signal from said mode selector to said programmable controller indicative of the mode selected;
- said operating routine further comprising:
- more than one possible second information corresponding to said first information, and
- third information corresponding to a range of possible modes, said third information providing for selection of one of said possible second information to relate to said first information.
- 22. The method of claim 20 in which said liftcrane further comprises multiple mechanical subsystems each connected to the engine by a closed hydraulic loop, and a diverting valve interconnecting at least two of said closed hydraulic loops, and the method further comprises the steps of:
- operating said controls to effect a desired operation of one of said mechanical subsystems,
- outputting a signal from said programmable controller to operate said diverting valve to divert pressure from a closed hydraulic loop associated with another of said mechanical subsystems to a closed hydraulic loop associated with the one mechanical subsystem, whereby the one mechanical subsystem can be powered by the closed hydraulic loops associated with both the one and the other mechanical subsystem.
- 23. The method of claim 20 in which said multiple mechanical subsystems include a hoist and a boom and in which the desired liftcrane operation is to move a load horizontally at a desired height, the method further comprising the steps of:
- operating said controls to produce a signal to indicate operation of the hoist to lift a load to the desired height;
- outputting a signal from said programmable controller to operate said hoist to lift the load to the desired height;
- operating said controls to produce a signal to indicate operation of said hoist and said boom together to move the load horizontally at the given height;
- calculating with said programmable controller operation of said boom and said hoist together to move the load horizontally at the given height;
- outputting from said programmable controller signals to said boom and to said hoist to operate each to move the load horizontally at the given height.
REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of U.S. Ser. No. 07/418,879, filed on Oct. 10, 1989 U.S. Pat. No. 5,189,605.
US Referenced Citations (16)
Foreign Referenced Citations (6)
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Date |
Country |
0076485A1 |
Apr 1983 |
EPX |
0253657A2 |
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EPX |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
418879 |
Oct 1989 |
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