Patent classifications
A01B71/02
Driver assistance system for controlling a combination of agricultural vehicles
A driver assistance system for controlling a combination of agricultural vehicles including a towing vehicle designed as a tractor and a mounted device, wherein the driver assistance system generates control parameters for the towing vehicle and/or for the mounted device. The driver assistance system has an input/output unit for the dialog with the user. The driver assistance system is formed by a rule interpreter which generates the control parameters by executing the rules of a set of rules, and the driver assistance system has a linking module which receives at least two sets of rules from different data sources and generates, on the basis of the received sets of rules and according to a linkage specification, the set of rules to be executed by the rule interpreter.
Driver assistance system for controlling a combination of agricultural vehicles
A driver assistance system for controlling a combination of agricultural vehicles including a towing vehicle designed as a tractor and a mounted device, wherein the driver assistance system generates control parameters for the towing vehicle and/or for the mounted device. The driver assistance system has an input/output unit for the dialog with the user. The driver assistance system is formed by a rule interpreter which generates the control parameters by executing the rules of a set of rules, and the driver assistance system has a linking module which receives at least two sets of rules from different data sources and generates, on the basis of the received sets of rules and according to a linkage specification, the set of rules to be executed by the rule interpreter.
Transmission apparatus of agricultural working automobile
The present invention relates to a transmission apparatus of an agricultural working automobile, the transmission apparatus comprising: a first gear-shifting part for performing gear-shifting to adjust the speed of an agricultural working automobile; and a second gear-shifting part for performing gear-shifting to adjust the speed of the agricultural working automobile, wherein the second gear-shifting part comprises a sub-gear-shifting drive mechanism for performing gear-shifting, using one operation selected from among an operation transferred through a first power transmission path from the first gear-shifting part and an operation transferred through a second power transmission path from the first gear-shifting part.
Transmission apparatus of agricultural working automobile
The present invention relates to a transmission apparatus of an agricultural working automobile, the transmission apparatus comprising: a first gear-shifting part for performing gear-shifting to adjust the speed of an agricultural working automobile; and a second gear-shifting part for performing gear-shifting to adjust the speed of the agricultural working automobile, wherein the second gear-shifting part comprises a sub-gear-shifting drive mechanism for performing gear-shifting, using one operation selected from among an operation transferred through a first power transmission path from the first gear-shifting part and an operation transferred through a second power transmission path from the first gear-shifting part.
System and method for monitoring shank float
A shank assembly for an agricultural tillage implement including a support arm, a shank connected to the support arm, a point connected to the shank, and a float monitoring system. The float monitoring system includes a first sensor for sensing a home position, a second sensor connected to the support arm and configured for sensing an angular position of the support arm relative to the frame of the agricultural tillage implement, and an electronic control unit operably connected to the first sensor and the second sensor. The electronic control unit is configured for comparing the home position and the angular position of the support arm and determining a float of the shank as the shank is towed in a forward direction of travel.
System and method for monitoring shank float
A shank assembly for an agricultural tillage implement including a support arm, a shank connected to the support arm, a point connected to the shank, and a float monitoring system. The float monitoring system includes a first sensor for sensing a home position, a second sensor connected to the support arm and configured for sensing an angular position of the support arm relative to the frame of the agricultural tillage implement, and an electronic control unit operably connected to the first sensor and the second sensor. The electronic control unit is configured for comparing the home position and the angular position of the support arm and determining a float of the shank as the shank is towed in a forward direction of travel.
AGRICULTURAL ASSISTANCE SYSTEM
An agricultural assistance system including a driver assistance system for controlling one or both of a prime mover and an attachment of an agricultural combination is disclosed. The agricultural assistance system generates control parameters for one or both of the prime mover and the attachment, has a rule interpreter that generates the control parameters by processing rules from sets of rules, and has a rule generator that provides a plurality of sets of rules. The agricultural assistance system executes the rule interpreter as needed on control hardware that is part of one or both of the prime mover or the attachment, and on control hardware that is disposed remote from the combination. The agricultural assistance system has a coordination module for this which, independent of the site at which the rule interpreter is run, coordinates the rule interpreter with the control generator and the driver assistance system.
TRACTOR AND METHOD FOR OPERATING A TRACTOR
A tractor with at least one lifting mechanism that has an upper link and lower links and actuators associated therewith, at least one attachment adapted to the lifting mechanism, and a driver assistance system is disclosed. The driver assistance system optimizes the operation of the tractor and has a computing unit, a memory unit and at least one input interface. The computing unit processes information generated by machine-internal sensor systems, external information, and information that may be saved in the memory unit. The tractor and/or the at least one attachment include a control device for controlling and regulating the tractor and the attachment. The driver assistance system comprises an automatic lifting mechanism that is configured to function based on characteristics, and to optimize adjustment of at least one work parameter of the tractor depending on selectable regulation strategies and/or optimization target variables saved in the memory unit.
TRACTOR AND METHOD FOR OPERATING A TRACTOR
A tractor with at least one lifting mechanism that has an upper link and lower links and actuators associated therewith, at least one attachment adapted to the lifting mechanism, and a driver assistance system is disclosed. The driver assistance system optimizes the operation of the tractor and has a computing unit, a memory unit and at least one input interface. The computing unit processes information generated by machine-internal sensor systems, external information, and information that may be saved in the memory unit. The tractor and/or the at least one attachment include a control device for controlling and regulating the tractor and the attachment. The driver assistance system comprises an automatic lifting mechanism that is configured to function based on characteristics, and to optimize adjustment of at least one work parameter of the tractor depending on selectable regulation strategies and/or optimization target variables saved in the memory unit.
Apparatus, method and computer-readable medium for controlling a machine using a mobile communication device
Embodiments relate to apparatuses, methods and computer programs for controlling a machine. The apparatus is suitable for a mobile communication device for providing a sensor input signal to a machine control entity to control a machine. The apparatus comprises one or more sensor modules for providing first user input sensor data and second user input sensor data. The apparatus further comprises a control module configured to determine the sensor input signal based on the first user input sensor data and the second user input sensor data. The control module is further configured to provide the sensor input signal for sensor data processing to the machine control entity to control at least one of a force transmission interface of the machine for an external component and an engine of the machine via an interface.