SLEW DRIVE WITH INTEGRATED SENSORS AND TRANSDUCERS
20210013829 ยท 2021-01-14
Inventors
Cpc classification
F24S2030/19
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2019/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/02026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/039
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16H19/001
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/47
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F24S30/425
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S2030/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S2030/134
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H19/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S30/425
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A single axis slew driving system with integrated sensors and transducers including a housing defining a cavity, a rotor assembly rotatably mounted within the cavity supporting an axle with a gear plate affixed thereto and gear teeth positioned along a periphery thereof, a driving gear rotatably mounted in the housing meshing with the gear teeth, and a drive motor attached to the driving gear for rotation of the driving gear and one of: a thermocouple embedded in the housing to provide an indication of the temperature adjacent the driving gear; an absolute position sensing system including a movement tracking device mounted in the housing and extending into the cavity of the housing; limit switches mounted on the outer periphery of the housing; an integrated accelerometer and communication assembly; and an integrated torque routing solenoid mounted on an outer periphery of the housing.
Claims
1. A single axis slew driving system with integrated sensors and transducers comprising: A slew drive including a housing with a central portion defining a cavity, a rotor assembly rotatably mounted within the cavity and supporting an output axle, the rotor assembly including a gear plate affixed to the axle and including an arcuate set of gear teeth positioned along a periphery thereof, a driving gear rotatably mounted in the housing so as to mesh with the arcuate set of gear teeth on the gear plate in the cavity in the housing; and at least one of: a thermocouple embedded in the housing so as to extend within the cavity to provide an indication of the temperature adjacent the driving gear chamber at contact points of the driving gear and the arcuate set of gear teeth on the gear plate and external monitoring apparatus; an absolute position sensing system including a movement tracking device mounted in the housing and extending into the cavity of the housing and into communication with an outer surface of the rotatably positioned rotor assembly; limit switches mounted on the outer periphery of the housing, a first of the limit switches including an activating plunger with an end positioned to be depressed when the driving gear drives the gear plate clockwise to a first rotary limit and a second of the limit switches including an activating plunger with an end positioned to be depressed when the driving gear drives the gear plate counterclockwise to a second rotary limit, each limit switch including a body mounted on the outer periphery of the housing and an activating plunger positioned so that one end extends into the housing cavity to adjacent a rotor assembly outer periphery, the limit switches being further positioned so that the plunger of a first limit switch is depressed by an end gear tooth of the arcuate set of gear teeth when the driving gear rotates clockwise to a first limit and so that the plunger of a second limit switch is depressed by an end gear tooth of the arcuate set of gear teeth when the driving gear rotates counterclockwise to a second limit; an integrated accelerometer and communication assembly including an accelerometer coupled to a communications protocol, the assembly integrated directly onto one of the output axle or the gear plate directly measuring rotary movement and communicating the measurements to an external control system; and an integrated torque routing solenoid mounted on an outer periphery of the housing, the solenoid including an armature having an extended position and a withdrawn position, and in the extended position the armature extending through an opening in the housing and into an opening in the gear plate.
2. The single axis driving system with integrated sensors and transducers as claimed in claim 1 wherein the driving gear includes a worm gear rotatably mounted in a cylindrical cavity portion of the housing, and the thermocouple is embedded in the cylindrical cavity portion of the housing to provide an indication of the temperature adjacent the worm gear.
3. The single axis driving system with integrated sensors and transducers as claimed in claim 1 including the absolute position sensing system, the absolute position sensing system includes a movement tracking device using an optical laser system in conjunction with a computer.
4. (canceled)
5. (canceled)
6. The single axis driving system with integrated sensors and transducers as claimed in claim 1 further incorporated into a solar tracking system.
7. The single axis driving system with integrated sensors and transducers as claimed in claim 6 further including solar panels attached to the output axle for rotation therewith.
8. The single axis driving system with integrated sensors and transducers as claimed in claim 1 further including a drive motor mounted on the housing and attached to the driving gear for rotation of the driving gear, whereby the rotor assembly including the gear plate and attached output axle are rotated in response to rotation of the drive motor.
9. A single axis slew driving system with integrated sensors and transducers comprising: a housing with a central portion defining a cavity; a rotor assembly rotatably mounted within the cavity and supporting an output axle, the rotor assembly including a gear plate affixed to the axle and including an arcuate set of gear teeth positioned along a periphery thereof; a driving gear rotatably mounted in the housing so as to mesh with the arcuate set of gear teeth on the gear plate in the cavity in the housing; and at least one of: a thermocouple embedded in the housing so as to extend within the cavity to provide an indication of the temperature adjacent the driving gear chamber at contact points of the driving gear and the arcuate set of gear teeth on the gear plate and external monitoring apparatus; an absolute position sensing system including a movement tracking device mounted in the housing and extending into the cavity of the housing and into communication with an outer surface of the rotatably positioned rotor assembly; limit switches mounted on the outer periphery of the housing, a first of the limit switches including an activating plunger with an end positioned to be depressed when the driving gear drives the gear plate clockwise to a first rotary limit and a second of the limit switches including an activating plunger with an end positioned to be depressed when the driving gear drives the gear plate counterclockwise to a second rotary limit, each limit switch including a body mounted on the outer periphery of the housing and an activating plunger positioned so that one end extends into the housing cavity to adjacent a rotor assembly outer periphery, the limit switches being further positioned so that the plunger of a first limit switch is depressed by an end gear tooth of the arcuate set of gear teeth when the driving gear rotates clockwise to a first limit and so that the plunger of a second limit switch is depressed by an end gear tooth of the arcuate set of gear teeth when the driving gear rotates counterclockwise to a second limit; an integrated accelerometer and communication assembly including an accelerometer coupled to a communications protocol, the assembly integrated directly onto one of the output axle or the gear plate directly measuring rotary movement and communicating the measurements to an external control system; and an integrated torque routing solenoid mounted on an outer periphery of the housing, the solenoid including an armature having an extended position and a withdrawn position, and in the extended position the armature extending through an opening in the housing and into an opening in the gear plate.
10. The single axis driving system with integrated sensors and transducers as claimed in claim 9 wherein the driving gear includes a worm gear rotatably mounted in a cylindrical cavity portion of the housing, and the thermocouple is embedded in the cylindrical cavity portion of the housing to provide an indication of the temperature adjacent the worm gear.
11. The single axis driving system with integrated sensors and transducers as claimed in claim 9 including the absolute position sensing system, the absolute position sensing system includes a movement tracking device using an optical laser system in conjunction with a computer.
12. (canceled)
13. (canceled)
14. The single axis driving system with integrated sensors and transducers as claimed in claim 9 further incorporated into a solar tracking system.
15. The single axis driving system with integrated sensors and transducers as claimed in claim 9 further including a drive motor mounted on the housing and attached to the driving gear for rotation of the driving gear, whereby the rotor assembly including the gear plate and attached output axle are rotated in response to rotation of the drive motor.
16. A single axis slew driving system with integrated sensors and transducers comprising: a housing with a central portion defining a cavity; a rotor assembly rotatably mounted within the cavity and supporting an output axle, the rotor assembly including a gear plate affixed to the axle and including an arcuate set of gear teeth positioned along a periphery thereof; a worm gear rotatably mounted in a cylindrical cavity portion of the housing so as to mesh with the arcuate set of gear teeth on the gear plate in the cavity in the housing; and at least one of: a thermocouple embedded in the housing so as to extend within the cavity to provide an indication of the temperature adjacent the worm gear chamber at contact points of the worm gear and the arcuate set of gear teeth on the gear plate and external monitoring apparatus; an absolute position sensing system including a movement tracking device mounted in the housing and extending into the cavity of the housing and into communication with an outer surface of the rotatably positioned rotor assembly; limit switches mounted on the outer periphery of the housing, a first of the limit switches including an activating plunger with an end positioned to be depressed when the driving gear drives the gear plate clockwise to a first rotary limit and a second of the limit switches including an activating plunger with an end positioned to be depressed when the driving gear drives the gear plate counterclockwise to a second rotary limit, each limit switch including a body mounted on the outer periphery of the housing and an activating plunger positioned so that one end extends into the housing cavity to adjacent a rotor assembly outer periphery, the limit switches being further positioned so that the plunger of a first limit switch is depressed by an end gear tooth of the arcuate set of gear teeth when the driving gear rotates clockwise to a first limit and so that the plunger of a second limit switch is depressed by another end gear tooth of the arcuate set of gear teeth when the driving gear rotates counterclockwise to a second limit; an integrated accelerometer and communication assembly including an accelerometer coupled to a communications protocol, the assembly integrated directly onto one of the output axle or the gear plate directly measuring rotary movement and communicating the measurements to an external control system; and an integrated torque routing solenoid mounted on an outer periphery of the housing, the solenoid including an armature having an extended position and a withdrawn position, and in the extended position the armature extending through an opening in the housing and into an opening in the gear plate.
17. The single axis driving system with integrated sensors and transducers as claimed in claim 16 further including a thermocouple embedded in the cylindrical cavity portion of the housing to provide an indication of the temperature adjacent the worm gear.
18. The single axis driving system with integrated sensors and transducers as claimed in claim 16 including the absolute position sensing system, the absolute position sensing system including a movement tracking device using an optical laser system in conjunction with a computer.
19. (canceled)
20. (canceled)
21. The single axis driving system with integrated sensors and transducers as claimed in claim 16 further incorporated into a solar tracking system.
22. The single axis driving system with integrated sensors and transducers as claimed in claim 21 further including solar panels attached to the output axle for rotation therewith.
23. The single axis driving system with integrated sensors and transducers as claimed in claim 16 further including a drive motor mounted on the housing and attached to the worm gear for rotation of the worm gear, whereby the rotor assembly including the gear plate and attached output axle are rotated in response to rotation of the drive motor.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Specific objects and advantages of the invention will become readily apparent to those skilled in the art from the following detailed description of a preferred embodiment thereof, taken in conjunction with the drawings in which:
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DETAILED DESCRIPTION OF THE DRAWINGS
[0021] Turning to
[0022] Turning now to
[0023] In addition to the slew drive described above, the present single axis slew driving system with integrated sensors and transducers includes one or more of a thermocouple, an absolute position sensing system, limit switches, integrated accelerometer and communication assemblies, and an integrated torque routing solenoid. Generally, the integrated sensors and transducers included will depend upon the specific application of the slew drive and the operating conditions. For example in the instance in which the slew drive is used to drive solar panels in a solar tracking system, all of the various additions might be included. Each of the additions is described in more detail below in conjunction with a specific embodiment of a slew drive.
[0024] A thermocouple 50 is embedded in worm chamber 48 so as to extend within the chamber and provide an indication of the temperature of grease within worm chamber 48 near the contact points of the worm and the gear teeth. An electrical line 52 extends from thermocouple 50 to an external monitoring station (not shown).
[0025] Turning to
[0026] Turning to
[0027] Turning to
[0028] Turning now to
[0029] Turning now to
[0030] Thus, the present invention discloses and provides a new and improved slew drive with integrated sensors and transducers. While there are many application for the present slew drive, a specific application of the slew drive is illustrated as a solar tracker slew drive that is inexpensive, and easy and efficient to operate. Thus, the present invention discloses and provides a new and improved solar tracker slew drive with integrated sensors and transducers that is inexpensive, and easy and efficient to operate. The new and improved solar tracker slew drive with integrated sensors and transducers is simpler to incorporate into a solar panel assembly and is able to withstand higher external forces without substantially changing the structure.
[0031] Various changes and modifications to the embodiments herein chosen for purposes of illustration will readily occur to those skilled in the art. To the extent that such modifications and variations do not depart from the spirit of the invention, they are intended to be included within the scope thereof which is assessed only by a fair interpretation of the following claims.