Novel photovoltaic-panel two-dimension-motion control system driven by single motor

A motor-driven, two-dimensional motion technology, applied in the direction of control using feedback, can solve the problems of increasing the power consumption and waste of the tracking device

Inactive Publication Date: 2014-06-11
XIAN ELITE ELECTRONICS IND
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  • Abstract
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  • Claims
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Problems solved by technology

[0002] With the improvement of people's solar energy utilization efficiency, the use of high-precision omni-directional tracking sun track tracking devices is becoming more and more common; generally, omni-directional sun tracking requires at least two motors to drive separately in two-dimensional directions; especially For a tracking mechanism that simultaneously tracks the solar hour angle and the solar declina

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  • Novel photovoltaic-panel two-dimension-motion control system driven by single motor

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specific Embodiment approach

[0013] As shown in the accompanying drawing, it shows an embodiment of the present invention. The photovoltaic panel two-dimensional motion control system driven by a single motor of the present invention includes a PLC (programmable logic controller) installed in the control box, and the PLC controls the sun Hour angle tracking mechanism, the sun hour angle tracking mechanism is a rotating mechanism parallel to the earth's rotation axis, a stepping motor is included in the sun hour angle tracking mechanism, the output shaft of the stepping motor is connected to a reducer, and the reducer is Worm gear reducer, the output shaft of the reducer is connected to the drive shaft parallel to the earth's rotation axis, and photovoltaic panels are installed on the drive shaft;

[0014] The end of the above-mentioned drive shaft is also equipped with a rotating nut pushing block for driving the rotating nut to rotate. The inner threaded hole of the rotating nut is engaged with a lifting ...

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Abstract

Disclosed is a novel photovoltaic-panel two-dimension-motion control system driven by a single motor. The system includes a PLC installed in a control box. The PLC controls a solar-hour-angle tracking mechanism. The solar-hour-angle tracking mechanism is a rotation mechanism which is parallel to the rotation axis of the earth. The solar-hour-angle tracking mechanism includes a stepping motor. An output shaft of the stepping motor is connected with a speed reducer. An output shaft of the speed reducer is connected with a driving shaft parallel to the rotation axis of the earth. A photovoltaic panel is installed on the driving shaft. A rotation nut push block used for driving a rotation nut to rotate is also installed at the end part of the driving shaft. A lifting screw is installed in an internal threaded hole of the rotation nut in an engaging manner. The top end of the lifting screw is installed at one side of the bottom part of the photovoltaic panel. The PLC is also connected with a coder in which the motion frequency of the stepping motor is stored. A power amplifier is connected between the coder and the stepping motor. In the photovoltaic-panel two-dimension-motion control system driven by the single motor, the rotation nut of the pitching mechanism is driven to rotate while the driving rotation is rotating so that the lifting screw supports the pitching of the photovoltaic panel in an ascending and descending manner.

Description

technical field [0001] The invention relates to a motion control system for controlling and driving a sun tracking device, in particular to a novel two-dimensional motion control system for a photovoltaic panel driven by a single motor. Background technique [0002] With the improvement of people's solar energy utilization efficiency, the use of high-precision omni-directional tracking sun track tracking devices is becoming more and more common; generally, omni-directional sun tracking requires at least two motors to drive separately in two-dimensional directions; especially For a tracking mechanism that simultaneously tracks the solar hour angle and the solar declination angle, at least one motor is required to track the solar hour angle, and the other motor is required to track the solar declination angle; but the variation range of the solar declination angle is Between ±23.5°, it only changes 0.26° every day. A separate motor is used to drive the tracking of the sun’s de...

Claims

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Application Information

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IPC IPC(8): G05D3/12
Inventor 黄柱曹春晓
Owner XIAN ELITE ELECTRONICS IND
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