1. Technical Field
The present disclosure relates to a solar power system.
2. Description of the Related Art
Traditional solar power systems convert solar energy into electric power. The solar power system employs a rechargeable battery for storing the converted electric power, and providing the electric power to loads. However, the rechargeable batteries are usually lead-acid batteries, which will contaminate the environment. Therefore, there is room for improvement within the art.
The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the disclosure. Moreover, in the drawing, like reference numerals designate corresponding parts throughout the several views.
The solar panel 20 is configured for converting solar energy into direct current power. The electric power detecting device 30 is configured for detecting the direct current power converted by the solar panel 20. When the direct current power converted by the solar panel 20 is increased to exceed a predetermined value, the electric power detecting device 30 enables a connection between the solar panel 20 and the electric current control unit 40. As a result the electric current control unit 40 enables the direct current power converted by the solar panel 20 to flow through the direct current motor 50 and power the direct current motor 50 to rotate. The predetermined value is a value of electric power which is consumed by pulling the weight 70 to be at a predetermined height by the elevator mechanism 60. The elevator mechanism 60 is mechanically connected to the direct current motor 50, and configured for pulling the weight 70 to be at the predetermined height driven by the direct current motor 50. When the weight 70 is at the predetermined height, the electric current control unit 40 disables the solar panel 20 to further provide direct current power to the direct current motor 50, which results in the direct current motor 50 stopping.
The controller 98 includes a timing unit 93. The controller 98 is further configured for controlling the close mechanism 95 to move away from the through hole 92 to open the through hole 92 when a time value calculated by the timing unit 93 is equal to a predetermined time value, such as pm 7 o'clock. Thereby, the weight 70 drops because of gravity. The elevator mechanism 60 is urged to rotate by the dropping weight 70, and the direct current motor 50 is urged to rotate by the rotating elevator mechanism 60 to generate electric power to provide to the load 80.
The elevator mechanism 60 includes a gear box 62, a coiling block 64, and a rope 66. The gear box 62 is connected to the direct current motor 50 via a coupling 65. The coiling block 64 is mounted on an output shaft 68 of the gear box 62. The rope 66 is wound on the coiling block 64 with an end mounted on the coiling block 64 and the other end connected to the weight 70. The direct current motor 50 drives the gear box 62 to rotate by the direct current power, urging the coiling block 64 to rotate. The rope 66 is wound on the coiling block 64 to pull the weight 70. During the process of the weight 70 drops, the rope 66 is dragged by the dropping weight 70 to urge the gear box 62 to rotate. The direct current motor 50 is urged to rotate by the rotating gear box 62, which results in generating electric power to provide to the load 80. The gear box 62 may include a gear. In the embodiment, the gear box 62 is a transmission mechanism including a plurality of gears, and the rope is a wire rope. In alternative embodiment, the rope is a hemp rope.
It is understood that the present disclosure may be embodied in other forms without departing from the spirit thereof. Thus, the present examples and embodiments are to be considered in all respects as illustrative and not restrictive, and the disclosure is not to be limited to the details given herein.
Number | Date | Country | Kind |
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201210129049.8 | Apr 2012 | CN | national |