Patent classifications
A01G25/09
TRAILER, LABELING SYSTEM, CONTROL SYSTEM, AND PROGRAM FOR FIELD IMPLEMENTATION OF COMPUTERIZED HOLE SELECTION FOR LAYFLAT IRRIGATION PIPE
A system for installing and labeling lay flat irrigation pipe in flooded rice and furrow irrigated fields, and a trailer for laying a roll of pipe in an irrigated field. The trailer includes a flexible hitch assembly positioned at a first end of the trailer, wherein the hitch assembly couples the trailer to a vehicle. The trailer also includes a distribution assembly positioned at a second end of the trailer, wherein the distribution assembly includes a spindle and wherein the distribution assembly couples the roll of pipe to the trailer; and a gooseneck frame including a first end coupled to the hitch assembly and a second end coupled to the distribution assembly, with an upper member between the first end and the second end of the gooseneck, wherein the upper member of the gooseneck is elevated relative to the hitch assembly. The trailer may also include offset tandem wheels with a furrow assembly to facilitate the creation of a furrow ditch and for traversing flood irrigated levees for the purposes of installing lay-flat polyethylene pipe for irrigation. The trailer may also include an adjustable telescoping hitch to adjust to various vehicle hitch heights. The system includes a labeling system for indicating the punch size needed along the pipeline during installation. A computerized hole selection plan is developed and transferred to a microprocessor device, where sensors or a global positioning system is co-locate the device so the punch label can be applied along the pipe during installation.
TRAILER, LABELING SYSTEM, CONTROL SYSTEM, AND PROGRAM FOR FIELD IMPLEMENTATION OF COMPUTERIZED HOLE SELECTION FOR LAYFLAT IRRIGATION PIPE
A system for installing and labeling lay flat irrigation pipe in flooded rice and furrow irrigated fields, and a trailer for laying a roll of pipe in an irrigated field. The trailer includes a flexible hitch assembly positioned at a first end of the trailer, wherein the hitch assembly couples the trailer to a vehicle. The trailer also includes a distribution assembly positioned at a second end of the trailer, wherein the distribution assembly includes a spindle and wherein the distribution assembly couples the roll of pipe to the trailer; and a gooseneck frame including a first end coupled to the hitch assembly and a second end coupled to the distribution assembly, with an upper member between the first end and the second end of the gooseneck, wherein the upper member of the gooseneck is elevated relative to the hitch assembly. The trailer may also include offset tandem wheels with a furrow assembly to facilitate the creation of a furrow ditch and for traversing flood irrigated levees for the purposes of installing lay-flat polyethylene pipe for irrigation. The trailer may also include an adjustable telescoping hitch to adjust to various vehicle hitch heights. The system includes a labeling system for indicating the punch size needed along the pipeline during installation. A computerized hole selection plan is developed and transferred to a microprocessor device, where sensors or a global positioning system is co-locate the device so the punch label can be applied along the pipe during installation.
Irrigation System With Position-Based Predictive Analytics
An irrigation system with a variable-speed drive assembly compares electric power data of a motor as a function of the location of the motor against stored historical electric power data for the motor to determine acceptable electric power data thresholds for purposes of diagnosing and predicting pending functionality complications of the variable-speed drive assembly.
Device for applying liquid and/or solid active substances and method for controlling a device of this type
A device for spreading liquid and/or solid active agents comprises a carrier vehicle, at least one pivotable boom, and sensors for detecting an angular velocity and/or an angular position of the boom. A control unit processes output signals of the sensors to control signals for an actuator to adjust the boom. The actuator produces an actuating connection between the carrier vehicle and the pivotable boom, and has one active pressure side, which is engageable by fluidic actuating pressure, for each of the two adjustment directions of the boom. An approximately equal pressure prevails on the active pressure sides of two actuators operating in opposition or of a double-acting actuator, respectively, when the boom is stationary or moves only slightly in relation to the carrier vehicle. A defined differential pressure is adjustable between the active pressure sides of the two actuators or of a double-acting actuator, when the boom is shifted.
Device for applying liquid and/or solid active substances and method for controlling a device of this type
A device for spreading liquid and/or solid active agents comprises a carrier vehicle, at least one pivotable boom, and sensors for detecting an angular velocity and/or an angular position of the boom. A control unit processes output signals of the sensors to control signals for an actuator to adjust the boom. The actuator produces an actuating connection between the carrier vehicle and the pivotable boom, and has one active pressure side, which is engageable by fluidic actuating pressure, for each of the two adjustment directions of the boom. An approximately equal pressure prevails on the active pressure sides of two actuators operating in opposition or of a double-acting actuator, respectively, when the boom is stationary or moves only slightly in relation to the carrier vehicle. A defined differential pressure is adjustable between the active pressure sides of the two actuators or of a double-acting actuator, when the boom is shifted.
AIMABLE SPRINKLER
An aimable sprinkler is disclosed. The sprinkler can be mounting on an end of a traveling sprinkler system that moves in a linear direction or one that rotates about a center pivot tower. The sprinkler can include a base for connecting to the traveling sprinkler system and a turret coupled to the base so as to move in both yaw and pitch directions relative to the base. The sprinkler aims at discrete points within an irrigation area to achieve an even distribution of water.
AIMABLE SPRINKLER
An aimable sprinkler is disclosed. The sprinkler can be mounting on an end of a traveling sprinkler system that moves in a linear direction or one that rotates about a center pivot tower. The sprinkler can include a base for connecting to the traveling sprinkler system and a turret coupled to the base so as to move in both yaw and pitch directions relative to the base. The sprinkler aims at discrete points within an irrigation area to achieve an even distribution of water.
Irrigation system having terrain compensation
A control system for an irrigation system is disclosed that is configured to prevent a substantial positional change of the irrigation system while the system is traversing a substantially non-flat terrain, or surface. In an implementation, an irrigation system includes multiple interconnected spans that are supported by multiple tower structures. Each tower structure includes a drive unit for driving a tower structure at a selected speed. The irrigation system also includes a position-determining module configured to determine an actual position of the main section assembly. The irrigation system also includes a control device configured to determine an actual position of the main section assembly, compare the actual position with a desired position of the main section assembly, and to determine that the main section assembly is traversing a substantially non-flat surface.
Irrigation system having terrain compensation
A control system for an irrigation system is disclosed that is configured to prevent a substantial positional change of the irrigation system while the system is traversing a substantially non-flat terrain, or surface. In an implementation, an irrigation system includes multiple interconnected spans that are supported by multiple tower structures. Each tower structure includes a drive unit for driving a tower structure at a selected speed. The irrigation system also includes a position-determining module configured to determine an actual position of the main section assembly. The irrigation system also includes a control device configured to determine an actual position of the main section assembly, compare the actual position with a desired position of the main section assembly, and to determine that the main section assembly is traversing a substantially non-flat surface.
IRRIGATION SYSTEM WITH VARIABLE GEAR RATIO TRANSMISSIONS
A center-pivot irrigation system having mobile towers interconnected by spans actuatable about a center-pivot, constant speed motors for each of the mobile towers, and variable gear ratio transmissions each driven by one of the constant speed motors and each driving one of the mobile towers. The irrigation system may also include a control system sending command signals to the variable gear ratio transmissions, independently increasing or decreasing a speed of the mobile towers via the variable gear ratio transmissions. The irrigation system may also include a sensors for providing alignment information regarding the spans to the control system. The control system may independently command the transmissions to speed up or slow down one of the mobile towers relative to alignment information received from the sensors.